Disclosure: E. Meenaghan: None. Z. Joseph: None. S. Wasserman: None. M. Slattery: None. J. Rosenblum: None. R.J. Keane: None. K.T. Eddy: None. H. Lee: None. Anorexia nervosa is complicated by low bone density (BMD) and increased fracture risk, but no pharmacologic approaches have increased BMD >6% on average nor normalized BMD in a significant number of women. The aim of this pilot study was to determine whether off-label administration of romosozumab, a humanized monoclonal antibody that targets sclerostin and addresses both the low bone formation and high bone resorption observed in anorexia nervosa, would increase BMD in women with this disorder. We conducted a 12-month, randomized, placebo-controlled study of 30 ambulatory women with low-weight or atypical (normal-weight) anorexia nervosa, ages 20-60 y, with low BMD (Z-score <-1.0) at the spine, hip, and/or radius. Participants were randomized 2:1 to 12 months of romosozumab (210 mg subcutaneously q4 weeks) (n=20) or placebo (n=10). All participants received calcium 1000 mg and vitamin D 800 IU daily. The primary outcome measure was % change in postero-anterior (PA) lumbar spine BMD by dual-energy x-ray absorptiometry (DXA). Secondary outcome measures included % change in lateral spine, total hip, femoral neck, and total radius BMD, the bone formation marker procollagen type I N-terminal propeptide (P1NP), and the bone resorption marker C-terminal telopeptide (CTX). Estrogen status was defined as “estrogen replete” if eumenorrheic or on exogenous estrogen, “estrogen non-replete” if amenorrheic not secondary to contraception, or “unknown.” Statistical analysis was performed using a linear random effects model using 0, 6 and 12-month data. At baseline, mean age [34 ± 13 [romosozumab (ROMO)] vs 27 ± 6 y [placebo (PBO)] (mean ± SD)], BMI (19.2 ± 2.2 vs 18.8 ± 1.2 kg/m2), and BMD (PA spine Z-score -1.6 ± 0.9 vs -2.0 ± 0.6) were similar between groups. Ninety percent (n=27/30) of subjects had PA lumbar spine BMD Z-score < -1. At 12 months, PA lumbar spine BMD increased in the ROMO vs PBO group (p<0.0001), with a mean increase of 12.4 ± 4.2% in the ROMO group vs a decrease of 0.3 ± 3.7% in the PBO group. In the ROMO group, mean PA lumbar spine BMD Z-score was -0.4 ± 0.9 at 12 months, and the percent of subjects with PA lumbar spine BMD Z-score ≤ -1.0 decreased to 16% (n=3/19) from 85% (n=17/20). Lateral lumbar spine (16.1 ± 6.4 vs -0.5 ± 4.6%, p<0.0001), total hip (4.1 ± 3.7 vs 1.1 ± 2.6%, p=0.005), and femoral neck (4.1 ± 3.7 vs -0.4 ± 4.5%, p=0.003), but not radius, BMD also increased in the ROMO vs PBO group. Neither baseline BMD, age, estrogen status, nor change in BMI predicted change in BMD at any site. At 3 months, serum P1NP (78 ± 135% vs -5 ± 31%, p=0.01) increased in the ROMO vs PBO group; there was no change in serum P1NP over 6 or 12 months, nor in CTX at any timepoint. Romosozumab was well tolerated. In conclusion, in this pilot, randomized, placebo-controlled study, 12 months of therapy with romosozumab markedly increased spine and hip BMD in women with anorexia nervosa, increasing BMD Z-score to >-1 in a significant number of women. Presentation: Saturday, July 12, 2025
OBJECTIVEAnorexia nervosa is associated with low bone mineral density (BMD) and deficits in bone microarchitecture and strength. Low BMD is common in atypical anorexia nervosa, in which criteria for anorexia nervosa are met except for low weight. We investigated whether women with atypical anorexia nervosa have deficits in bone microarchitecture and estimated strength at the peripheral skeleton.METHODMeasures of BMD and microarchitecture were obtained in 28 women with atypical anorexia nervosa and 27 controls, aged 21-46 years.RESULTSMean tibial volumetric BMD, cortical thickness, and failure load were lower, and radial trabecular number and separation impaired, in atypical anorexia nervosa versus controls (p < .05). Adjusting for weight, deficits in tibial cortical bone variables persisted (p < .05). Women with atypical anorexia nervosa and amenorrhea had lower volumetric BMD and deficits in microarchitecture and failure load versus those with eumenorrhea and controls. Those with a history of overweight/obesity or fracture had deficits in bone microarchitecture versus controls. Tibial deficits were particularly marked. Less lean mass and longer disease duration were associated with deficits in high-resolution peripheral quantitative computed tomography (HR-pQCT) variables in atypical anorexia nervosa.DISCUSSIONWomen with atypical anorexia nervosa have lower volumetric BMD and deficits in bone microarchitecture and strength at the peripheral skeleton versus controls, independent of weight, and particularly at the tibia. Women with atypical anorexia nervosa and amenorrhea, less lean mass, longer disease duration, history of overweight/obesity, or fracture history may be at higher risk. This is salient as deficits in HR-pQCT variables are associated with increased fracture risk.PUBLIC SIGNIFICANCEAtypical anorexia nervosa is a psychiatric disorder in which psychological criteria for anorexia nervosa are met despite weight being in the normal range. We demonstrate that despite weight in the normal range, women with atypical anorexia nervosa have impaired bone density, structure, and strength compared to healthy controls. Whether this translates to an increased risk of incident fracture in this population requires further investigation.
Abstract Objective Inclusion of underrepresented racial and ethnic groups in eating disorder (ED) research is a critical unmet need, but evidence-based recruitment strategies are lacking. We sought to determine whether methods we had implemented to increase recruitment of underrepresented racial and ethnic groups were successful in improving racial and ethnic diversity in a clinical trial in women with anorexia nervosa. Method We implemented new strategies for recruitment of underrepresented racial and ethnic groups in a clinical trial on bone health in women with anorexia nervosa, including leveraging social media, liberalizing language on advertisements to be more inclusive of women who are as yet undiagnosed with the disorder or feel stigmatized by its name, translating advertisements to Spanish, and engaging community health centers. We compared participants’ race and ethnicity in this clinical trial versus two similar prior clinical trials. Results The percent of non-White and Hispanic participants who have signed a consent form in our ongoing clinical trial (2021–2023) is higher versus two previous clinical trials on bone health in women with anorexia nervosa (2011–2019) with similar inclusion/exclusion criteria and endpoints [non-White: 11/38 (28.9%) vs. 11/188 (5.9%), Hispanic: 6/38 (15.8%) vs. 5/188 (2.7%), p ≤ 0.006]. There was no change in the percent of Black participants [0/38 (0%) vs. 1/188 (0.5%), p = 1.0]. Discussion Viewing clinical research recruitment through a diversity, equity, and inclusion lens can improve racial and ethnic diversity in ED research. Further research recruitment strategies are needed to be more inclusive of Black populations.
Abstract While anorexia nervosa is associated with impaired skeletal integrity, less is known about the skeletal effects of atypical anorexia nervosa, in which psychological criteria for anorexia nervosa are met, but affected individuals are not low weight. Mean bone mineral density (BMD) is higher in atypical anorexia nervosa than in low-weight anorexia nervosa but lower than in healthy controls. However, it is unknown whether bone microarchitecture and strength are affected. We hypothesized that bone microarchitecture and estimated strength would be impaired in women with atypical anorexia nervosa. This was a cross-sectional study of women ages 21-46 years (n=55): n=28 with atypical anorexia nervosa (body mass index (BMI) >18.5 kg/m2), n=27 healthy, normal weight, eumenorrheic controls. Exclusion criteria included use of oral contraceptives. Areal BMD (aBMD) was assessed by DXA. Volumetric BMD (vBMD), microarchitecture, and failure load (a bone strength estimate) at the distal tibia and radius were assessed by high-resolution peripheral quantitative CT. Median(IQR) BMI was lower [19.4(18.6,20.2) vs 22.2(21.5,23.0), p<0.0001] and median serum 25OH vitamin D level was higher [31(24,39) vs 22(17,25), p=0.0001] in atypical anorexia nervosa than healthy controls. In the atypical anorexia nervosa group, 89% had a history of low weight, 21% had a history of overweight/obesity, 31% had current amenorrhea, and 88% had a history of amenorrhea; median duration of anorexia nervosa was 11(5,14) years. Median lateral spine, total hip, femoral neck, and total radius aBMD Z-scores were lower in atypical anorexia nervosa than healthy controls [lateral spine: -1.1(-2.0,-0.1) vs -0.4(-0.7,0.4), total hip: -0.8(-1.3,0.2) vs 0.2(-0.4,0.7), femoral neck: -0.9(-1.4,0.1) vs -0.1(-0.9,0.6), radius: -0.2(-0.9,0.3) vs 0.1(-0.4,0.6); p≤0.04 for all]. At the tibia, median total, cortical, and trabecular vBMD; cortical thickness; trabecular bone volume fraction; and failure load were lower in atypical anorexia nervosa than healthy controls (p<0.05). At the radius, median trabecular number was lower and trabecular separation was higher in atypical anorexia nervosa than healthy controls (p≤0.04), but there was no difference in failure load between the groups. After controlling for baseline BMI, differences at the radius but not tibia remained significant. At the tibia and radius, median total vBMD, cortical vBMD, and cortical thickness were lower in atypical anorexia nervosa subjects with amenorrhea compared to healthy controls and to atypical anorexia nervosa subjects with eumenorrhea (p≤0.04). Conclusions We demonstrate that, despite normal weight, women with atypical anorexia nervosa have impaired vBMD, microarchitecture, and estimated strength compared to healthy controls, with differences more pronounced at the weight-bearing tibia vs non-weight-bearing radius. Individuals with amenorrhea had additional impairments in the non-weight-bearing radius, suggesting an effect of systemic estrogen deficiency. Our data suggest that current normal weight is not protective against impaired bone structure and strength in atypical anorexia nervosa. Presentation: Saturday, June 11, 2022 1:00 p.m. - 3:00 p.m., Saturday, June 11, 2022 1:30 p.m. - 1:35 p.m.
Although bone mineral density (BMD) is decreased and fracture risk increased in anorexia nervosa, BMD does not predict fracture history in this disorder. We assessed BMD, bone microarchitecture, and bone marrow adipose tissue (BMAT) in women with anorexia nervosa and found that only BMAT was associated with fracture history. Anorexia nervosa (AN) is a psychiatric disorder characterized by low body weight, low BMD, and increased risk of fracture. Although BMD is reduced and fracture risk elevated, BMD as assessed by DXA does not distinguish between individuals with versus those without prior history of fracture in AN. Despite having decreased peripheral adipose tissue stores, individuals with AN have enhanced bone marrow adipose tissue (BMAT), which is inversely associated with BMD. Whether increased BMAT is associated with fracture in AN is not known. We conducted a cross-sectional study in 62 premenopausal women, including 34 with AN and 28 normal-weight women of similar age. Fracture history was collected during patient interviews and BMD measured by DXA, BMAT by 1H-MRS, and parameters of bone microarchitecture by HR-pQCT. Sixteen women (47.1%) with AN reported prior history of fracture compared to 11 normal-weight women (39.3%, p = 0.54). In the entire group and also the subset of women with AN, there were no significant differences in BMD or parameters of bone microarchitecture in women with prior fracture versus those without. In contrast, women with AN with prior fracture had greater BMAT at the spine and femur compared to those without (p = 0.01 for both). In contrast to BMD and parameters of bone microarchitecture, BMAT is able to distinguish between women with AN with prior fracture compared to those without. Prospective studies will be necessary to understand BMAT’s potential pathophysiologic role in the increased fracture risk in AN.
ObjectiveAnorexia nervosa is complicated by high bone resorption, low bone mineral density (BMD), and increased fracture risk. We investigated whether off-label antiresorptive therapy with denosumab increases BMD in women with anorexia nervosa. DesignTwelve-month, randomized, double-blind, placebo-controlled study. MethodsThirty ambulatory women with anorexia nervosa and areal BMD (aBMD) T-score <-1.0 at >= 1 sites were randomized to 12 months of denosumab (60 mg subcutaneously q6 months)(n = 20) or placebo (n = 10). Primary end point was postero-anterior (PA) lumbar spine aBMD by dual-energy x-ray absorptiometry. Secondary end points included femoral neck aBMD, tibia and radius volumetric BMD and bone microarchitecture by high-resolution peripheral quantitative CT, tibia and radius failure load by finite element analysis (FEA), and markers of bone turnover. ResultsBaseline mean (+/- s.d.) age (29 +/- 8 (denosumab) vs 29 +/- 7 years (placebo)), BMI (19.0 +/- 1.7 vs 18.0 +/- 2.0 kg/m(2)), and aBMD (PA spine Z-score -1.6 +/- 1.1 vs -1.7 +/- 1.4) were similar between groups. PA lumbar spine aBMD increased in the denosumab vs placebo group over 12 months (P = 0.009). The mean (95% CI) increase in PA lumbar spine aBMD was 5.5 (3.8-7.2)% in the denosumab group and 2.2 (-0.3-4.7)% in the placebo group. The change in femoral neck aBMD was similar between groups. Radial trabecular number increased, radial trabecular separation decreased, and tibial cortical porosity decreased in the denosumab vs placebo group (P <= 0.006). Serum C-terminal telopeptide of type I collagen and procollagen type I N-terminal propeptide decreased in the denosumab vs placebo group (P < 0.0001). Denosumab was well tolerated. ConclusionsTwelve months of antiresorptive therapy with denosumab reduced bone turnover and increased spine aBMD, the skeletal site most severely affected in women with anorexia nervosa.
OBJECTIVE:Anorexia nervosa (AN) is a serious condition characterized by undernutrition, complicated by endocrine dysregulation, and with few predictors of recovery. Urinary free cortisol (UFC) is a predictor of weight gain, but 24-h urine samples are challenging to collect. We hypothesized that serum dehydroepiandrosterone sulfate (DHEAS), which like cortisol is regulated by adrenocorticotropic hormone (ACTH), would predict weight gain and increases in fat mass in women with AN.METHODS:We prospectively studied 34 women with AN and atypical AN, mean age 27.4 ± 7.7 years (mean ± SD), who received placebo in a 6-month randomized trial. Baseline DHEAS and 24-h UFC were measured by liquid chromatography with tandem mass spectrometry. Body composition was assessed at baseline and 6 months by DXA and cross-sectional abdominal CT at L4.RESULTS:Mean baseline DHEAS level was 173 ± 70 μg/dl (0.7 ± 0.3 times the mean normal range for age) and mean baseline UFC (n = 15) was 20 ± 18 μg/24 h (normal: 0-50 μg/24 h). Higher DHEAS levels predicted weight gain over 6 months (r = 0.61, p < .001). DHEAS levels also predicted increases in fat mass (r = 0.40, p = .03), appendicular lean mass (r = 0.38, p = .04), and abdominal adipose tissue (r = 0.60, p < .001). All associations remained significant after controlling for age, baseline BMI, OCP use, duration of AN, and SSRI/SNRI use. DHEAS levels correlated with UFC (r = 0.61, p = .02).DISCUSSION:In women with AN, higher serum DHEAS predicts weight gain and increases in fat and muscle mass. Additional studies are needed to confirm these findings and further elucidate the association between DHEAS and weight gain.PUBLIC SIGNIFICANCE:Anorexia nervosa is a severe psychiatric condition, and predictors of weight recovery are needed to improve prognostication and guide therapeutic decision making. While urinary cortisol is a predictor of weight gain, 24-h urine collections are challenging to obtain. Like cortisol, dehydroepiandrosterone sulfate (DHEAS) is a hormone produced by the adrenal glands. As a readily available blood test, DHEAS holds promise as more practical biomarker of weight gain in anorexia nervosa.
Abstract Low bone mineral density (BMD) and increased fracture risk are common complications of anorexia nervosa. We assessed whether 12 months of alendronate subsequent to 12 months of denosumab would 1) maintain the increases in BMD observed with denosumab and 2) result in higher BMD than alendronate for 12 months alone in 30 ambulatory women with anorexia nervosa and areal BMD (aBMD) Z- or T-score At baseline, mean age [29±8 y (mean±SD)], BMI (18.6±1.9 kg/m2), and aBMD (PA lumbar spine Z-score -1.6±1.1) were similar between groups. From 12 to 24 months in the denosumab-to-alendronate group, favorable changes in spine aBMD, radial vBMD, and radial and tibial microarchitecture from 12 months of denosumab were maintained after 12 months of alendronate. However, there was a rebound increase in markers of bone turnover (p<0.003), and PA and lateral lumbar spine aBMD decreased in 6 and 9 participants, respectively. Both a greater suppression of bone turnover markers and a greater increase in aBMD from baseline to 12 months were predictors of partial reversal of BMD gains from 12 to 24 months in the denosumab-to-alendronate group. Over 24 months, PA lumbar spine aBMD (3.9±4.3%), femoral neck aBMD (3.1±5.5%), tibial vBMD and failure load increased within the denosumab-to-alendronate group, and PA lumbar spine aBMD (5.8±5.3%) increased within the placebo-to-alendronate group (p<0.05). In a 24-month between-group comparison, there was no difference in change in aBMD at any site; however, the denosumab-to-alendronate group demonstrated favorable changes in tibial vBMD and trabecular microarchitecture compared to the placebo-to-alendronate group (p<0.05). In conclusion, this pilot study suggests that 12 months of alendronate maintains BMD gains achieved with 12 months of denosumab administration in some, but not all, women with anorexia nervosa. A more robust response to denosumab may be a risk factor for partial reversal of denosumab-related BMD gains despite alendronate. Therefore, a more effective antiresorptive agent may be necessary to maintain gains in BMD achieved with denosumab therapy in some women with anorexia nervosa. Moreover, sequential therapy of denosumab followed by alendronate over 24 months results in greater improvements in tibial vBMD and microarchitecture than 12 months of alendronate, although increases in aBMD were similar between groups. Presentation: Saturday, June 11, 2022 1:00 p.m. - 3:00 p.m., Monday, June 13, 2022 12:30 p.m. - 12:35 p.m.
Abstract Anorexia nervosa is complicated by low bone mineral density (BMD) and increased fracture risk associated with low bone formation and high bone resorption. The spine, particularly its trabecular component as measured by lateral spine dual-energy x-ray absorptiometry (DXA), is most severely affected. Low BMD and bone formation are associated with relative insulin-like growth hormone-1 (IGF-1) deficiency. Our objective was to determine whether bone anabolic therapy with off-label recombinant human (rh)IGF-1 followed by antiresorptive therapy with risedronate would increase BMD more than risedronate alone or placebo in women with anorexia nervosa. We conducted a 12-month, randomized, placebo-controlled study of 90 ambulatory women with anorexia nervosa and low areal BMD (aBMD) (Z- or T-score <-1.0). Participants were randomized to 1 of 3 groups: 6 months of rhIGF-1 (starting dose 30 mcg/kg SQ BID) followed by 6 months of risedronate (35mg PO weekly) (“rhIGF-1/Risedronate”) (n=33), 12 months of risedronate (35mg PO weekly) (“Risedronate”) (n=33), or double placebo (“Placebo”) (n=16). Participants received calcium 1200 mg and vitamin D 800 IU daily. rhIGF-1 was titrated to maintain IGF-1 levels within the age-adjusted normal range. Main outcome measures were aBMD at the spine [1° endpoint: postero-anterior (PA) spine BMD], hip, and radius by DXA, and vertebral, tibial, and radial volumetric BMD (vBMD) and estimated strength by multi-detector computed tomography (MDCT) or high-resolution peripheral quantitative CT (HR-pQCT). At baseline, mean age [28 ± 7 y (mean ± SD)], BMI (18.5 ± 1.9 kg/m2), and BMD were similar among groups. At 12 months, mean PA spine aBMD was higher in the rhIGF-1/Risedronate (p=0.03), and trended towards being higher in the Risedronate (p=0.08), group than the Placebo group. Mean lateral spine aBMD was higher in the rhIGF-1/Risedronate than either the Risedronate (p=0.002) or Placebo (p=0.04) groups. From baseline to 12 months, mean PA and lateral spine aBMD increased by 1.9 ± 0.6% and 4.2 ± 1.0% in the rhIGF-1/Risedronate (p<0.05), 1.7 ± 0.8% and 1.7 ± 1.0% in the Risedronate (p=NS), and decreased by 0.3 ± 0.8% and 1.1 ± 1.3% in the Placebo (p=NS), groups, respectively. Areal BMD Z-scores did not normalize in any group. At 12 months, vertebral vBMD by MDCT was higher (p<0.05), and vertebral strength trended towards being higher, in the rhIGF-1/Risedronate than Placebo group. Neither hip or radial BMD, nor radial or tibial estimated strength, by HR-pQCT differed among groups. rhIGF-1 was well tolerated. In conclusion, sequential therapy of 6 months of rhIGF-1 followed by 6 months of risedronate increased lateral spine aBMD, the site most severely affected in women with anorexia nervosa, more than risedronate or placebo. These data suggest that strategies that are anabolic and antiresorptive to bone may be most effective in increasing BMD in women with anorexia nervosa.
Abstract Introduction: Anorexia nervosa (AN) and atypical AN (defined as weight loss and all the psychological features of AN but BMI>18.5 kg/m2) are serious disorders characterized by undernutrition and complicated by endocrine dysregulation. Predictors of recovery, including serum biomarkers, are lacking. Prior studies have suggested that higher urinary free cortisol (UFC) may predict weight gain in women with AN, but 24-hour urine collections are not feasible in a real-world setting. Like cortisol, the adrenal androgen dehydroepiandrosterone (DHEA) and its sulfated form DHEAS, which has a longer half-life, are stimulated by ACTH. We hypothesized that DHEAS levels would correlate with UFC and be a predictor of weight gain in women with AN. Methods: We prospectively studied 34 women with AN and atypical AN, mean age 27.4 ± 7.7 years (mean ± SD), who received placebo in a randomized trial. AN and atypical AN were diagnosed by SCID. Baseline DHEAS and 24-hour UFC were measured by LC-MS/MS (Endocrine Sciences, Calabasas Hills, CA). Weight and body composition were assessed at baseline and 6 months later by DXA and cross-sectional abdominal CT at L4. Results: At baseline, mean weight was 51.3 ± 4.9 kg. Of the 18 subjects who gained weight (range 0.1–10.3 kg), 28% were eumenorrheic, 39% amenorrheic, and 33% on oral contraceptives at baseline; baseline reproductive status was similar for subjects who did not subsequently gain weight. In the group as a whole, mean baseline DHEAS level was 173 ± 70 µg/dL (0.7 ± 0.3 times the mean normal range for age) and mean baseline UFC for subjects who completed testing (n=15) was 20 ± 18 µg/24h (normal range 0–50 µg/24h). Higher DHEAS levels at baseline predicted weight gain over 6 months (r=0.61, p<0.001), which remained significant after controlling for age, baseline BMI, OCP use, and SSRI/SNRI use (p<0.001); none of these covariates were predictors of weight gain. Baseline DHEAS levels predicted an increase in fat mass (r=0.40, p=0.03) and appendicular lean mass (r=0.38, p=0.04) by DXA, and abdominal fat by CT (r=0.60, p<0.001); the associations remained significant after controlling for the above factors. UFC did not predict change in weight (r=0.37, p=0.17) or body composition. DHEAS levels were positively associated with UFC (r=0.61, p=0.02). Conclusion: In women with AN, higher DHEAS levels are a predictor of weight gain and increases in fat mass, skeletal muscle mass, and abdominal fat. Serum DHEAS correlates with UFC, a predictor of weight gain in prior studies. DHEAS may be a more practical biomarker of recovery, as 24-hour urine collections are challenging. Further studies are needed to determine whether higher DHEAS levels are a marker of global adrenal stress response and a reflection of higher cortisol levels, which may stimulate weight gain, or an independent predictor of weight gain in AN and atypical AN, perhaps through neuromodulation.
Bone marrow adipose tissue (BMAT) resides within the bone marrow microenvironment where its function remains poorly understood. BMAT is elevated in anorexia nervosa, a disease model of chronic starvation, despite depletion of other fat depots. In addition to BMAT, the marrow microenvironment also consists of osteoblast and hematopoietic progenitors. BMAT is inversely associated with bone mineral density (BMD) in multiple populations including women with anorexia nervosa, and regulates hematopoiesis in animal models. We hypothesized that BMAT would be associated with circulating populations of hematopoietic cells (red and white blood cells) in humans and performed a post hoc analysis of two studies-a cross-sectional study and a longitudinal study-to investigate this hypothesis. We studied 89 premenopausal women cross-sectionally (median age [interquartile range], 27 [24.5, 31.7] years), including 35 with anorexia nervosa. We investigated associations between red blood cell (RBC) and white blood cell (WBC) counts and BMAT assessed by(1)H-magnetic resonance spectroscopy, BMD assessed by DXA, and bone microarchitecture assessed by HR-pQCT. In addition, we analyzed longitudinal data in six premenopausal women with anorexia nervosa treated with transdermal estrogen for 6 months and measured changes in BMAT and blood cell counts during treatment. Cross-sectionally, BMAT was inversely associated with WBC and RBC counts. In contrast, BMD and parameters of bone microarchitecture were positively associated with WBC and RBC. In women with anorexia nervosa treated with transdermal estrogen for 6 months, decreases in BMAT were significantly associated with increases in both RBC and hematocrit (rho = -0.83,p= 0.04 for both). In conclusion, we show that BMAT is inversely associated with WBC and RBC in premenopausal women, and there is a potential association between longitudinal changes in BMAT and changes in RBC. These associations warrant further study and may provide further insight into the role and function of this understudied adipose depot. (c) 2020 American Society for Bone and Mineral Research.
Abstract Anorexia nervosa, a psychiatric disorder predominantly affecting women, is characterized by self-induced starvation, low body weight, low subcutaneous and visceral fat depots, and low bone mass. More than 85% of women with anorexia nervosa have bone mineral density (BMD) values more than one standard deviation below the mean of women of comparable age. Although there is a significantly increased risk of fracture in women with anorexia nervosa, low BMD has not been shown to consistently predict the increased fracture rate in this population. Despite low subcutaneous and visceral adipose tissue stores, women with anorexia nervosa have increased bone marrow adiposity, which is inversely associated with BMD. We hypothesized that increased bone marrow adipose tissue would be associated with the increased fracture rate in women with anorexia nervosa. We studied sixty-two women: 34 with anorexia nervosa (mean age + SEM: 28.3 + 0.9 years) and 28 normal-weight controls of similar age (28.3 + 1.1 years; p=0.72). We examined associations between lifetime self-reported fracture history and 1) BMD of the lumbar spine (L1-L4), lateral spine (L2-L4), total hip, and femoral neck measured by dual energy X-ray absorptiometry and 2) bone marrow adipose tissue at the spine (L4 vertebra) and hip (femoral metaphysis, diaphysis and epiphysis) measured by 1H-magnetic resonance spectroscopy. Women with anorexia nervosa had significantly lower BMD at the spine and hip (p<0.0001 at all sites) and significantly higher bone marrow adipose tissue at the L4 vertebra (p<0.0001) and femoral metaphysis (p=0.001) as compared to normal-weight controls. Forty-seven percent (n=16) of women with anorexia nervosa versus 39% (n=11) of normal-weight controls reported a lifetime history of fracture (p=0.54). In women with anorexia nervosa, there was no significant association between fracture history and BMD at the spine or hip (p=0.27-0.98). In the group as a whole, bone marrow adipose tissue was greater in the L4 vertebra in individuals with a history of fracture compared to those without a fracture history (p=0.02). In subjects with anorexia nervosa, those with a history of fracture had greater bone marrow adipose tissue at the L4 vertebra (p=0.01) and femoral diaphysis (p=0.01) compared to those without a history of fracture; these differences in bone marrow adipose tissue remained significant after controlling for BMI (p=0.01-0.03) and also after controlling for BMD (p<0.01 for both). Higher bone marrow adipose tissue is associated with increased fracture prevalence and may be a better predictor of fracture risk than BMD in women with anorexia nervosa. Future prospective studies will be necessary to better understand the association between bone marrow adiposity and fracture risk in this population.
IGF-1 and leptin are two nutritionally dependent hormones associated with low bone mass in women with anorexia nervosa. Using finite element analysis, we estimated bone strength in women with anorexia nervosa and found that IGF-1 but not leptin correlated significantly with estimated bone strength in both the radius and tibia. Women with anorexia nervosa, a psychiatric disorder characterized by self-induced starvation and low body weight, have impaired bone formation, low bone mass, and an increased risk of fracture. IGF-1 and leptin are two nutritionally dependent hormones that have been associated with low bone mass in women with anorexia nervosa. We hypothesized that IGF-1 and leptin would also be positively associated with estimated bone strength in women with anorexia nervosa. In this cross-sectional study of 38 women (19 with anorexia nervosa and 19 normal-weight controls), we measured serum IGF-1 and leptin and performed finite element analysis of high-resolution peripheral quantitative CT images to measure stiffness and failure load of the distal radius and tibia. IGF-1 was strongly correlated with estimated bone strength in the radius (R = 0.52, p = 0.02 for both stiffness and failure load) and tibia (R = 0.55, p = 0.01 for stiffness and R = 0.58, p = 0.01 for failure load) in the women with anorexia nervosa but not in normal-weight controls. In contrast, leptin was not associated with estimated bone strength in the group of women with anorexia nervosa or normal-weight controls. IGF-1 is strongly associated with estimated bone strength in the radius and tibia in women with anorexia nervosa. Further studies are needed to assess whether treatment with recombinant human IGF-1 will further improve bone strength and reduce fracture risk in this population.
No study has investigated tibial or radial bone structure or estimated strength by high-resolution peripheral quantitative CT (HRpQCT) in women across the weight spectrum. We studied 139 women, 17-46yo: 1) anorexia nervosa (AN n=74), 2) lean controls (HC n=33) and 3) overweight/obese (OB n=32). All HC and OB were eumenorrheic. Areal BMD (aBMD) and appendicular lean mass (ALM) were measured by DXA; cortical and trabecular volumetric BMD (vBMD), cortical thickness, cortical porosity, failure load (finite element analysis) and trabecular plate parameters (individual trabecular segmentation) at the tibia and radius by HRpQCT. Mean age was similar among groups. Mean BMI was 17.7 ± 2.1 vs 22.6 ± 1.4 vs 35.2 ± 3.2 kg/m2 (p<0.0001). Mean aBMD Z-scores were lowest in AN, intermediate in HC and highest in OB (PA spine -1.6 ± 1.3 vs -0.5 ± 0.8 vs 0.5 ± 0.8; total hip -1.0 ± 1.1 vs 0.2 ± 0.9 vs 1.0 ± 0.9; radius -0.6 ± 1.0 vs 0.1 ± 0.9 vs 0.7 ± 0.9; p<0.0001). At the tibia and radius, mean trabecular vBMD and failure load were lowest in AN, intermediate in HC and highest in OB, while mean trabecular plate bone volume fraction, plate number density and plate-plate junction density were lower in AN (p<0.05) and similar in HC and OB. Mean cortical vBMD and cortical porosity were similar among groups, but cortical thickness was lower in AN vs OB (p<0.01). There was a quadratic relationship between BMI and trabecular vBMD, failure load and all plate parameters (R=0.40-0.67, p<0.0001), such that the higher the BMI, the smaller the increase in these parameters. In contrast, ALM had a consistent positive linear relationship with these parameters (R=0.37-0.78, p<0.0001). IGF-1 levels were positively associated with tibial and radial estimated strength and trabecular structure (R=0.21-0.37, p<0.05). Duration of amenorrhea in AN was negatively associated with radial estimated strength and trabecular structure (R= -0.25- -0.37, p<0.01). Despite similar mean aBMD at all sites, those with a history of fracture (n=57) had lower mean tibial and radial trabecular vBMD and plate-plate junction density; lower mean tibial cortical vBMD, plate bone volume fraction and plate number; and higher mean tibial cortical porosity compared to those without (n=72) (p<0.05). Conclusions: Trabecular bone structure and estimated strength were generally higher with greater weight, but the incremental increase was smaller as BMI increased into the obese range. Cortical bone parameters generally did not increase with greater weight. This suggests that the skeleton in women with obesity may not be able to fully adapt to an increased weight load. Muscle mass and IGF-1 levels were positive, and duration of amenorrhea a negative, determinant of bone structure and estimated strength. Across the weight spectrum, tibial and radial bone structure by HRpQCT may explain differences in peripheral skeletal integrity and fracture risk that cannot be explained by aBMD alone.
Context: Anorexia nervosa (AN) is a psychiatric illness with considerable morbidity and no approved medical therapies. We have shown that relative androgen deficiency in AN is associated with greater depression and anxiety symptom severity. Objective: To determine whether low-dose testosterone therapy is an effective endocrine-targeted therapy for AN. Design: Double-blind, randomized, placebo-controlled trial. Setting: Clinical research center. Participants: Ninety women, 18 to 45 years, with AN and free testosterone levels below the median for healthy women. Intervention: Transdermal testosterone, 300 mu g daily, or placebo patch for 24 weeks. Main Outcome Measures: Primary end point: body mass index (BMI). Secondary end points: depression symptom severity [Hamilton Depression Rating Scale (HAM-D)], anxiety symptom severity [Hamilton Anxiety Rating Scale (HAM-A)], and eating disorder psychopathology and behaviors. Results: Mean BMI increased by 0.0 +/- 1.0 kg/m(2) in the testosterone group and 0.5 +/- 1.1 kg/m(2) in the placebo group (P = 0.03) over 24 weeks. At 4 weeks, there was a trend toward a greater decrease in HAM-D score (P = 0.09) in the testosterone vs placebo group. At 24 weeks, mean HAM-D and HAM-A scores decreased similarly in both groups [HAM-D: -2.9 +/- 4.9 (testosterone) vs -3.0 +/- 5.0 (placebo), P = 0.72; HAM-A: -4.5 +/- 5.3 (testosterone) vs -4.3 +/- 4.4 (placebo), P = 0.25]. There were no significant differences in eating disorder scores between groups. Testosterone therapy was safe and well tolerated with no increase in androgenic side effects compared with placebo. Conclusion: Low-dose testosterone therapy for 24 weeks was associated with less weight gain-and did not lead to sustained improvements in depression, anxiety, or disordered eating symptoms-compared with placebo in women with AN.
CONTEXT:Premenopausal women with anorexia nervosa (AN) and obesity (OB) have elevated fracture risk. More plate-like and axially aligned trabecular bone, assessed by individual trabeculae segmentation (ITS), is associated with higher estimated bone strength. Trabecular plate and rod structure has not been reported across the weight spectrum.OBJECTIVE:To investigate trabecular plate and rod structure in premenopausal women.DESIGN:Cross-sectional study.SETTING:Clinical research center.PARTICIPANTS:A total of 105 women age 21 to 46 years: (i) women with AN (n = 46), (ii) eumenorrheic lean healthy controls (HCs) (n = 29), and (iii) eumenorrheic women with OB (n = 30).MEASURES:Trabecular microarchitecture by ITS.RESULTS:Mean age (±SD) was similar (28.9 ± 6.3 years) and body mass index differed (16.7 ± 1.8 vs 22.6 ± 1.4 vs 35.1 ± 3.3 kg/m2; P < 0.0001) across groups. Bone was less plate-like and axially aligned in AN (P ≤ 0.01) and did not differ between OB and HC. After controlling for weight, plate and axial bone volume fraction and plate number density were lower in OB vs HC; some were lower in OB than AN (P < 0.05). The relationship between weight and plate variables was quadratic (R = 0.39 to 0.70; P ≤ 0.0006) (i.e., positive associations were attenuated at high weight). Appendicular lean mass and IGF-1 levels were positively associated with plate variables (R = 0.27 to 0.67; P < 0.05). Amenorrhea was associated with lower radial plate variables than eumenorrhea in AN (P < 0.05).CONCLUSIONS:In women with AN, trabecular bone is less plate-like. In women with OB, trabecular plates do not adapt to high weight. This is relevant because trabecular plates are associated with greater estimated bone strength. Higher muscle mass and IGF-1 levels may mitigate some of the adverse effects of low weight or excess adiposity on bone.
ABSTRACT Anorexia nervosa (AN) is a psychiatric disorder characterized by self‐induced starvation, low body weight, and elevated levels of bone marrow adipose tissue (BMAT). BMAT is negatively associated with BMD in AN and more than 85% of women with AN have low bone mass and an increased risk of fracture. Although a majority of women with AN are amenorrheic, which is associated with low BMD, oral contraceptive pills, containing supraphysiologic doses of estrogen, are not effective in increasing bone mass. We performed a 6‐month, open‐label study of transdermal estradiol (0.045 mg/day) + levonorgestrel (0.015 mg/day) in 11 women with AN (mean age ± SEM: 37.2 ± 2.3 years) to investigate the effects of transdermal, physiologic doses of estrogen on BMD and BMAT in women with AN. We measured change in BMD by DXA, change in BMAT at the spine/hip by 1H‐magnetic resonance spectroscopy, and change in C‐terminal collagen cross‐links (CTX), P1NP, osteocalcin, IGF‐1, and sclerostin after 3 and 6 months of transdermal estrogen. Lumbar spine (2.0% ± 0.8%; p = 0.033) and lateral spine (3.2% ± 1.1%; p = 0.015) BMD increased after 6 months of transdermal estrogen. Lumbar spine BMAT decreased significantly after 3 months (−13.9 ± 6.0%; p = 0.046). Increases in lateral spine BMD were associated with decreases in CTX (p = 0.047). In conclusion, short‐term treatment with transdermal, physiologic estrogen increases spine BMD in women with AN. Future studies are needed to assess the long‐term efficacy of this treatment. © 2019 The Authors. JBMR Plus published by Wiley Periodicals, Inc. on behalf of American Society for Bone and Mineral Research.
OBJECTIVE:Few bone mineral density (BMD) data are available in men with anorexia nervosa (AN), and none in those with atypical AN (ATYP) (AN psychological symptoms without low weight) or avoidant/restrictive food intake disorder (ARFID) (restrictive eating without AN psychological symptoms). We investigated the prevalence and determinants of low BMD and estimated hip strength in men with these disorders.DESIGN:Cross-sectional: two centres.PATIENTS:A total of 103 men, 18-63 years: AN (n = 26), ARFID (n = 11), ATYP (n = 18), healthy controls (HC) (n = 48).MEASUREMENTS:Body composition, BMD and estimated hip strength (section modulus and buckling ratio) by DXA (Hologic). Serum 25OH vitamin D was quantified, as was daily calcium intake in a subset of subjects.RESULTS:Mean BMI was lowest in AN and ARFID, higher in ATYP and highest in HC (AN 14.7 ± 1.8, ARFID 15.3 ± 1.5, ATYP 20.6 ± 2.0, HC 23.7 ± 3.3 kg/m2 ) (P < 0.0005). Mean BMD Z-scores at spine and hip were lower in AN and ARFID, but not ATYP, than HC (postero-anterior (PA) spine AN -2.05 ± 1.58, ARFID -1.33 ± 1.21, ATYP -0.59 ± 1.77, HC -0.12 ± 1.17) (P < 0.05). 65% AN, 18% ARFID, 33% ATYP and 6% HC had BMD Z-scores <-2 at ≥1 site (AN and ATYP vs HC, P < 0.01). Mean section modulus Z-scores were lower in AN than HC (P < 0.01). Lower BMI, muscle mass and vitamin D levels (R = 0.33-0.64), as well as longer disease duration (R = -0.51 to -0.58), were associated with lower BMD (P < 0.05).CONCLUSIONS:Men with AN, ARFID and ATYP are at risk for low BMD. Men with these eating disorders who are low weight, or who have low muscle mass, long illness duration and/or vitamin D deficiency, may be at particularly high risk.
OBJECTIVE:DSM-5 revised the diagnostic criteria for anorexia nervosa (AN) by eliminating the amenorrhea requirement, liberalizing weight and psychological criteria, and adding the formal diagnosis of "atypical AN" for individuals with AN psychological symptoms without low weight. We sought to determine whether bone density (BMD) is impaired in women diagnosed with AN using the new, more liberal, DSM-5 criteria.METHOD:Cross-sectional study of 168 women, 18 - 45y: (1) AN by DSM-IV (DSM-IV AN) (n = 37), (2) AN by DSM-5 but not DSM-IV criteria (DSM-5 AN) (n = 33), (3) atypical AN (ATYPICAL AN) (n = 77), (4) healthy comparison group (HC) (n = 21). Measurements included dual energy X-ray absorptiometry, Eating Disorder Examination-Questionnaire, Eating Disorder Inventory-2, Hamilton Depression and Anxiety Rating Scales.RESULTS:BMD Z-score <-1.0 was present in 78% of DSM-IV, 82% of DSM-5, and 69% of ATYPICAL. Mean Z-scores were comparably low in DSM-IV and DSM-5, intermediate in ATYPICAL, and highest in HC. Lack of prior low weight or amenorrhea was, but history of overweight/obesity was not, protective against bone loss. Mean lean mass and percent fat mass were significantly lower in all AN groups than HC. DSM-IV, DSM-5, and ATYPICAL had comparable psychopathology.DISCUSSION:Despite liberalizing diagnostic criteria, many women diagnosed with AN and atypical AN using DSM-5 criteria have low BMD. Presence or history of low weight and/or amenorrhea remain important indications for DXA. Loss of lean mass, in addition to fat mass, is present in all AN groups, and may contribute to low BMD. The deleterious effect of eating disorders on BMD extends beyond those with current low weight and amenorrhea. © 2016 Wiley Periodicals, Inc.(Int J Eat Disord 2017; 50:343-351).