AIMS:Marinobufagenin (MBG), the endogenous cardiotonic inhibitor of the transmembrane adenosine triphosphatase sodium-potassium pump, is a steroid hormone with divergent effects on blood pressure and cardiovascular (CV) system. In response to sodium load, MBG stimulates natriuresis to compensate for body fluid overload but, in condition of sustained high sodium intake, its excessive production promotes a maladaptive pro-hypertensive effect. Since the role of MBG on the cardiac alterations frequently affecting hypertensive patients has been poorly investigated, we focused on gaining insight into this relationship in essential hypertension. METHODS:We studied the relationships between MBG, LV mass and geometry and investigated whether diuretic therapy modifies these associations in 180 incident-prevalent patients with essential hypertension. RESULTS:Serum MBG levels were significantly lower in hypertensive patients than in normotensive individuals (P = 0.005) and strongly associated with the mass and muscle component of the left ventricle. On multivariable linear regression models, left ventricular mass index and the cardiac measurements posterior wall thickness, interventricular septal thickness, mean wall thickness, relative wall thickness increased in parallel with the decrease in serum MBG levels (P ≤ 0.01). Coherently, in a multivariable logistic model, the odds of having cardiac remodeling/hypertrophy increased by 9% for each 0.1 nmol/l MBG reduction (odds ratio: 1.09, 95% confidence interval: 1.01-1.18, P = 0.03). Furthermore, diuretic therapy modified the link between MBG and cardiac biomarkers by acting as an amplifier of the harmful effect of low MBG levels on these measures. CONCLUSIONS:In patients with essential hypertension, lower circulating levels of MBG are associated with alterations in myocardial morphology whose severity is modified by the diuretic therapy that amplifies the noxious effect of low MBG levels. GRAPHICAL ABSTRACT:https://links.lww.com/HJH/D96.
Background: Biomarkers development for prognostication or prediction of perioperative myocardial disease is critical for the evolution of treatment options in patients undergoing cardiac surgery. The aim of our prospective monocentric study was to investigate the role of selenoprotein 1 (SEEP 1) as a potential biomarker for assessing the risk of myocardial injury after cardiac surgery. Methods: Circulating SEPP1 was measured in the blood of 45 patients before surgery and at 4 h, 8 h and 12 h after CPB by enzyme-linked immunosorbent assay (ELISA); (3) Results: circulating SEPP-1 levels measured 4 h after surgery were strongly correlated with CK-MB levels measured at 48 h (R = 0.598, p < 0.0001) and at 72 h (R = 0.308, p = 0.05). Close correlations were also found between 4 h SEPP-1 and Hs-c troponin values measured at 24 h (R = 0.532, p < 0.0001), 48 h (R = 0.348, p = 0.01) and 72 h (R = 0.377, p = 0.02), as well as with cardiopulmonary bypass (CPB) (R = 0.389, p = 0.008) and cross-clamp time (R = 0.374, p = 0.001); (4) Conclusions: Early SEPP1 measurement after CPB may hold great potential for identifying cardiac surgery patients at risk of developing perioperative myocardial injury.
BACKGROUND AND AIMS:To gain insight into the extent of oxidative stress and DNA damage in diabetic kidney disease (DKD), a serious complication of diabetes, we compared the levels of the oxidative stress-related metabolite 8-hydroxy-2'-deoxyguanosine (8-OHdG) in a case-control study accurately matching diabetic patients with and without renal complications. METHODS AND RESULTS:We analyzed serum 8-OHdG in relation to clinical indicators of kidney function in a group of type-2 diabetes patients including 33 patients with DKD and 33 without DKD. Circulating levels of 8-OHdG were higher in patients with DKD than in those without (4.6 ± 0.7 ng/mL vs 4.0 ± 0.8 ng/mL, p = 0.002). In a logistic regression analysis adjusting for potential confounders, 8-OHdG was associated with DKD (OR: 2.90, 95%CI:1.15-7.34; p = 0.02) and in a linear regression model, a 1 ng/mL increase of this biomarker entailed a reduction of 11.5 mL/min/1.73 m2 in the renal filtration rate. Furthermore, an interaction analysis showed that glycated hemoglobin was a modifier of the relationship between 8-OHdG and study outcomes (p for effect modification = 0.02). CONCLUSION:This study supports the role of oxidative stress in the pathogenesis of diabetic nephropathy and highlights the potential of serum 8-OHdG as a biomarker for assessing oxidative stress and DNA damage in patients with diabetes and renal complications.
Surfactant is a well-established therapy for preterm neonates affected by respiratory distress syndrome (RDS). The goals of different methods of surfactant administration are to reduce the duration of mechanical ventilation and the severity of bronchopulmonary dysplasia (BPD); however, the optimal administration method remains unknown. This study compares the effectiveness of the INtubate-RECruit-SURfactant-Extubate (IN-REC-SUR-E) technique with the less-invasive surfactant administration (LISA) technique, in increasing BPD-free survival of preterm infants. This is an international unblinded multicenter randomized controlled study in which preterm infants will be randomized into two groups to receive IN-REC-SUR-E or LISA surfactant administration. In this study, 382 infants born at 24+0–27+6 weeks’ gestation, not intubated in the delivery room and failing nasal continuous positive airway pressure (nCPAP) or nasal intermittent positive pressure ventilation (NIPPV) during the first 24 h of life, will be randomized 1:1 to receive IN-REC-SUR-E or LISA surfactant administration. The primary outcome is a composite outcome of death or BPD at 36 weeks’ postmenstrual age. The secondary outcomes are BPD at 36 weeks’ postmenstrual age; death; pulse oximetry/fraction of inspired oxygen; severe intraventricular hemorrhage; pneumothorax; duration of respiratory support and oxygen therapy; pulmonary hemorrhage; patent ductus arteriosus undergoing treatment; percentage of infants receiving more doses of surfactant; periventricular leukomalacia, severe retinopathy of prematurity, necrotizing enterocolitis, sepsis; total in-hospital stay; systemic postnatal steroids; neurodevelopmental outcomes; and respiratory function testing at 24 months of age. Randomization will be centrally provided using both stratification and permuted blocks with random block sizes and block order. Stratification factors will include center and gestational age (24+0 to 25+6 weeks or 26+0 to 27+6 weeks). Analyses will be conducted in both intention-to-treat and per-protocol populations, utilizing a log-binomial regression model that corrects for stratification factors to estimate the adjusted relative risk (RR). This trial is designed to provide robust data on the best method of surfactant administration in spontaneously breathing preterm infants born at 24+0–27+6 weeks’ gestation affected by RDS and failing nCPAP or NIPPV during the first 24 h of life, comparing IN-REC-SUR-E to LISA technique, in increasing BPD-free survival at 36 weeks’ postmenstrual age of life. ClinicalTrials.gov NCT05711966. Registered on February 3, 2023.
Background and Objectives: Acute kidney injury (AKI) remains a significant complication following major cardiac surgery. Marinobufagenin (MBG), a cardiotonic steroid involved in sodium balance and blood pressure regulation, has been linked to organ damage after ischemia–reperfusion events. This pilot, prospective study investigates the utility of circulating MBG to improve AKI risk assessment in cardiac surgery patients as a stand-alone biomarker and after inclusion in a validated risk model (STS-AKI score). Materials and Methods: We included 45 patients undergoing elective cardiac surgery. The MBG levels were measured preoperatively and at 4, 8, and 12 h post-surgery. The AKI was defined according to the KDIGO guidelines. Statistical analyses assessed the diagnostic and prognostic utility of MBG and its integration with the STS-AKI score. Results: An AKI occurred in 26.7% of the patients. The STS-AKI score performed well in this cohort (AUC: 0.736). The MBG levels displayed a decreasing trend in the whole population after surgery (p = 0.02). However, in the AKI patients, MBG increased at 4 and 8 h before decreasing at 12 h post-surgery. The MBG changes from the baseline to 8 h and from 8 to 12 h post-surgery showed a remarkable diagnostic accuracy for an AKI (AUCs: 0.917 and 0.843, respectively). Integrating these MBG changes with the STS-AKI score significantly improved the model performance, including discrimination, calibration, and risk reclassification. Conclusions: The MBG measurement, particularly any dynamic changes post-surgery, enhances AKI risk stratification in cardiac surgery patients. Integrating MBG with the STS-AKI score offers more accurate risk predictions, potentially leading to better patient management and outcomes.
Introduction Diabetic kidney disease (DKD) is a major complication in patients with diabetes and the main contributor to the chronic kidney disease (CKD) global burden. Oxidative stress is a crucial factor in DKD pathogenesis but the role of the antioxidant nuclear factor erythroid 2-related factor 2 (Nrf2) and its molecular regulators has been poorly investigated in man.Research design and methods In this case-control study, we analyzed the roles of Nrf2, a transcription factor shielding cells from oxidative stress, its repressor Kelch-like ECH-associated protein 1 (Keap1) and six microRNAs (miRNAs) that potentially suppress Nrf2. We categorized 99 participants into 3 groups: 33 non-dialysis patients with type 2 diabetes with DKD, 33 patients with type 2 diabetes without DKD and 33 control subjects and quantified the gene expression (messenger RNA (mRNA)) levels of Nrf2, Keap1 and 6 miRNAs. Moreover, we studied the correlation between gene expression levels and clinical indicators of kidney health.Results In patients with diabetes with DKD, Nrf2 mRNA levels were significantly lower than in patients without DKD (p=0.01) and controls (p=0.02), whereas no difference in Nrf2 expression levels existed between patients without DKD and controls. Conversely, in patients with and without DKD, Keap1 expression levels were significantly higher than in controls. Of the six miRNAs studied, miRNA 30e-5p showed differential expression, being markedly reduced in patients with DKD (p=0.007). Nrf2 mRNA levels directly correlated with estimated glomerular filtration rate (eGFR) in patients with DKD (r=0.34, p=0.05) and in a formal mediation analysis the eGFR emerged as the first factor in rank for explaining the difference in Nrf2 mRNA levels between patients with and without DKD.Conclusions The observed dysregulation in the Nrf2-Keap1 axis and the unique expression pattern of miRNA30e-5p in DKD underscore the need for more focused research in this domain that can help identify novel intervention strategies for DKD in patients with type 2 diabetes.
Background: Celiac disease is a common lifelong disorder. Recent studies indicate that the number of clinically detected cases has increased over the last decades, however little is known about changes in the prevalence and the detection rate of celiac disease. Aim: To evaluate the current prevalence and detection rate of celiac disease in Italy by a multicenter, mass screening study on a large sample of school-age children. Methods: children aged 5-11 years were screened at school by HLA-DQ2 and -DQ8 determination on a drop of blood in six Italian cities; total serum IgA and IgA anti-transglutaminase were determined in children showing HLA-DQ2 and/or -DQ8 positivity. Diagnosis of celiac disease was confirmed according to the European guidelines. Results: 5994 children were eligible, 4438 participated and 1873 showed predisposing haplotypes (42.2%, 95% CI = 40.7-43.7). The overall prevalence of celiac disease was 1.65% (95% CI, 1.34%-2.01%). Only 40% of celiac children had been diagnosed prior to the school screening. Symptoms evoking celiac disease were as common in celiac children as in controls. Conclusion: In this multicenter study the prevalence of celiac disease in school-age Italian children was one of the highest in the world. Determination of HLA predisposing genotypes is an easy and fast firstlevel screening test for celiac disease. Without a mass screening strategy, 60% of celiac patients remain currently undiagnosed in Italy. (c) 2023 The Authors. Published by Elsevier Ltd on behalf of Editrice Gastroenterologica Italiana S.r.l. This is an open access article under the CC BY license ( http://creativecommons.org/licenses/by/4.0/ )
Abstract Background and Aims Nuclear factor erythroid 2-related factor 2 (Nrf2) is a transcription factor that induces the expression of genes coding for antioxidant proteins and phase II detoxifying enzymes. Repressor molecule Kelch-like ECH-associated protein 1 (Keap1) and several microRNAs (miRNA) negatively regulate Nrf2 gene expression at post-transcriptional level. Oxidative stress is a major factor for kidney damage in diabetes but the role of Nrf2 in kidney dysfunction in diabetes is still unclear. Method To test whether the gene expression of Nrf-2 is downregulated in type-2 diabetes and whether kidney dysfunction per se further reduces Nrf2 in diabetic patients with diabetic nephropathy, we carried out a case-control study including 99 participants divided into three independent groups: 33 patients with diabetic nephropathy (DN), 33 patients with type 2 diabetes without nephropathy (D) and 33 control subjects (C), all accurately matched for age and sex. Standard ANOVA compared outcome measures in the three groups. Multiple linear regression analysis was used to test the expression levels of Keap1, miR-28-5p, miR-93-5p, miR-30e-5p, miR-125b-5p and miR-150-5p as potential mediators in the observed reduction of Nrf2 mRNA levels in patients with diabetic nephropathy. Results In patients with diabetic nephropathy, Nrf2 gene expression levels (0.82 arbitrary units, AU, IQR: 0.60-1.22 AU) were significantly lower than in diabetic patients without nephropathy (1.19 AU, 0.90-1.38 AU, P = 0.01) and control subjects (0.82 AU, 0.60-1.22 AU vs 1.04 AU, 0.87-1.66, P = 0.02) while there was no difference between diabetic patients without nephropathy and control subjects (P = 0.69). Keap1 gene expression levels were almost identical in patients with and without diabetic nephropathy (1.15 AU, 0.63-2.14 AU vs 1.13 AU, 0.79-1.73 AU, P = 0.91) and higher than in control subjects (1.15 AU, 0.63-2.14 AU vs 0.79 AU, 0.49-1.08 AU, P = 0.046). MiRNA expression levels were comparable in diabetic patients with and without nephropathy, but miRNA 30e-5p was lower in patients with diabetic nephropathy than in diabetic patients without nephropathy (0.91 AU, 0.76-1.10 AU vs 1.06 AU, 0.89-1.23 AU, P = 0.016). The expression levels of Nrf2 and miRNA 30e-5p were unrelated in patients with (r = 0.15, P = 0.44) and without (r = -0.02, P = 0.90) diabetic nephropathy. In linear regression analyses, eGFR emerged as the first factor in rank for explaining the difference in Nrf2 mRNA levels (explained variance 76%) among patients with and without diabetic nephropathy. Conclusion This case-control study comparing the gene expression level of Nrf2 in diabetic patients with and without nephropathy shows that kidney dysfunction is the key factor that explains the variability in Nrf2 mRNA levels in diabetes. These data suggest a primary role of Nrf2 in redox homeostasis and kidney damage in diabetic nephropathy.
Although the gut microbiota is known to affect body weight, its relationship with overweight/obesity is unclear. Our aim was to characterize microbiota composition in a cohort from the southernmost area of Italy. We investigated whether an altered gut microbiota could play an etiological role in the pathogenesis of overweight/obesity. A total of 163 healthy adults were enrolled. Microbiome analysis was performed via 16S rRNA gene sequencing. We found significant phylum variations between overweight (N = 88) and normal-weight (N = 75) subjects. Bacteroidetes and Proteobacteria were higher in overweight participants (p = 0.004; p = 0.03), and Firmicutes and Verrucomicrobia were lower (p = 0.02; p = 0.008) compared to normal-weight participants. Additionally, Akkermansia and Bifidobacterium (genus level) were significantly lower in the overweight group, as well as Akkermansia muciniphila at the species level. The Firmicutes/Bacteroidetes ratio (F/B ratio), an index of dysbiosis, was found to be inversely associated with BMI in linear and logistic regression models (p = 0.001; p = 0.005). The association remained statistically significant after adjustment for potential confounders. This cross-sectional study contributes to defining the gut microbiota composition in an adult population living in southern Italy. It confirms the relationship between overweight susceptibility and the dysbiosis status, highlighting the possible etiological role of the F/B ratio in disease susceptibility.
Background: Acute Kidney Injury (AKI) is a frequent, dangerous complication in patients undergoing cardiopulmonary bypass (CPB) with oxidative stress playing a crucial role. In this pilot study we evaluated the possible role of the selenoprotein-p1 (SEPP1), a circulating, anti-oxidant selenium transporter, as a predictive biomarker of AKI in this population setting. Methods: Circulating SEPP1 was measured in the blood of 45 patients before surgery and at 4 h, 8 h and 12 h after CPB by Enzyme-Linked Immunosorbent Assay (ELISA). Results: SEPP1 increased from 69 [IQR 39–85] to 3263 [IQR 1886.2–5042.7] ng/mL (p for trend <0.0001). AKI occurred in 26.7% of patients. In these individuals, an earlier and more prominent increase in SEPP1 was observed at 4 h and 8 h, as compared with those not experiencing AKI (difference between trends p < 0.0001). Logistic regression analyses evidenced 4 h and 8 h SEPP1 as significantly associated with AKI (OR 1.035; 95% CI 1.002–1.068; p = 0.03 and 1.011; 95% CI 1.002–1.021; p = 0.02, respectively). ROC analyses displayed a remarkable discriminatory capacity of early SEPP1 measurements in identifying AKI (AUCs ranging from 0.682 to 0.854; p from 0.04 to <0.0001). In addition, 12 h-SEPP1 showed diagnostic capacity to identify patients reaching a secondary composite endpoint including major adverse kidney events (MAKEs). Conclusions: Findings from this pilot, exploratory study suggest that early SEPP1 measurement after CPB may hold great potential for improving renal risk stratification in cardiac surgery patients. Further studies in wider and more heterogeneous cohorts are needed to generalize these findings and to evaluate a possible applicability in daily practice.
Abstract BACKGROUND AND AIMS Acute kidney injury (AKI) often occurs in patients undergoing major cardiac surgery with cardiopulmonary bypass (CPB). Despite renal ischemia remains the key trigger, sustained oxidative stress is now acknowledged as a significant contributor. Selenium-binding protein 1 (SEPP1) is an intracellular protein whose blood levels increase in response to systemic cardiovascular and oxidative stress, as well as in the course of chronic kidney injury. METHOD In this pilot prospective study, we measured circulating SEPP1 levels in a cohort of 45 patients undergoing cardiac surgery with CPB in order to test its possible role in predicting the following occurrence of AKI. Serum samples of SEPP1 were collected before CPB (baseline) and at 4, 8 and 12 h after the end of the procedure and measured with a commercially available ELISA kit. RESULTS In the whole cohort, there was a significant statistical trend in SEPP1 levels from baseline to 12 h after CPB [39 (10–45) versus 3263 (1886–5042) ng/mL; P < 0.0001]. Within 48 h from CPB end, 12/45 patients (27%) developed AKI, as defined as an increase in serum creatinine >0.3 mg/dL or an absolute 1.5-fold increase from baseline and/or a reduced urine output (<0.5 mL/kg/h). Circulating SEPP1 displayed an earlier and more prominent increase in AKI patients as compared with others [4 h SEPP1: 52 (39–233) versus 546 (260–1000) ng/mL; P < 0.001]. 8 h SEPP1: 638 (437–1254) versus 1959 (1055–5303) ng/mL; P < 0.001; difference between overall trends: P < 0.001 (Fig. 1). At ROC analyses, either 4 or 8 h circulating SEPP1 had a remarkable diagnostic capacity in identifying AKI patients (AUCs 0.854 and 0.790, both P < 0.001). The crude OR of AKI in patients with 4 and 8 h SEPP1 above the best ROC-derived cut-off values (178 and 1840 ng/mL, respectively) was 22 (95%CI 2.5–192.9) and 14.5 (95% CI 2.9–71.2), respectively. At multivariate analysis, such a risk was independent from potential confounders, including CPB duration, clamping time and age. CONCLUSION Increased SEPP1 levels in patients undergoing CPB may reflect a sustained response to systemic oxidative stress. Such a response becomes more prominent when renal damage is also occurring. Studies on larger and more heterogeneous cohorts are needed to confirm whether SEPP1 may be a candidate as an early and specific biomarker of AKI in this high-risk setting.
OBJECTIVE:Guselkumab is a fully human monoclonal IgG1 antibody which, by selectively binding to the p19 subunit of IL-23, prevents it from binding to the IL-23 receptor on the cell surfaces. To date, no prospective data are available on the efficacy and safety of this drug in everyday clinical practice in patients with psoriasis (PSO).MATERIALS AND METHODS:This is a longitudinal, single arm, real-world, prospective study to investigate the effect of Guselkumab on PSO and quality of life (DLQI) in 44 PSO patients. Outcomes were PASI, BSA, DLQI at 3 and 6 months.RESULTS:The longitudinal analysis showed that PASI improved from a median value of 24.1 at baseline to 2.0 at 6-months and this was also true for BSA (from 23.0 to 2.0) and DLQI (from 24.0 to 2.5) (all p<0.001). At 6-months, PASI75, PASI90 and PASI100 were 95.5%, 59.1% and 16%, respectively. The PSO improvement related with the increase of DLQI (∆PASI vs. ∆DLQI, r=0.77, p<0.001). No clinically relevant adverse events were observed.CONCLUSIONS:This study demonstrates the effectiveness and safety of Guselkumab on PSO in real world and shows that the reduction of PSO severity due to the drug is directly related with the improvement of quality of life in this patient population.
Apremilast is an oral selective phosphodiesterase-4 inhibitor developed recently for psoriasis treatment. The aim of this study is to assess the real-life outcomes of use of apremilast in patients with psoriasis in everyday clinical practice. A total of 159 adult patients (90 males) with plaque psoriasis were included in the study. Fifty of the patients (31%) had psoriatic arthritis. All patients started apremilast at the time of enrolment. There was a marked improvement in Psoriasis Area and Severity Index, body surface area and Dermatology Life Quality Index scores across the follow-up period (12 months). The improvements in these scores were also consistent when the patients were stratified according to increasing body mass index. Only 10.6% of the patients discontinued apremilast, because of no response. In conclusion, apremilast is an effective and safe treatment in patients with psoriasis, and its effect is not influenced by body mass index.
Background. Renal transplant patients have a high prevalence of nocturnal hypertension, and hypertension misclassification by office blood pressure (BP) is quite common in these patients. The potential impact of hypertension misclassification by office BP on hypertension management in this population has never been analysed. Methods. We performed a longitudinal study in a cohort of 260 clinically stable renal transplant patients. In all, 785 paired office and 24-h ambulatory blood pressure monitoring (24-hABPM) measurements over a median follow-up of 3.9 years were available in the whole cohort. Results. A total of 74% of patients had nocturnal hypertension (>120/70 mmHg). Average office BP and 24-hABPM remained quite stable over follow-up, as did the prevalence of nocturnal hypertension, which was 77% at the last observation. However, the global agreement between office BP and average 24 h, daytime and night-time BP was unsatisfactory ( k-statistics 0.10-0.26). In 193 visits (25% of all visits) where office BP indicated the need of antihypertensive therapy institution or modification (BP>140/90 mmHg), 24-hABPM was actually normal (<130/80 mmHg), while in 94 visits (12%), 24-hABPM was in the hypertensive range while office BP was normal. Overall, in 37% of visits, office BP provided misleading therapeutic indications. Conclusions. Hypertension misclassification by office BP is a common phenomenon in stable renal transplant patients on long-termfollow-up. Office BP may lead to inappropriate therapeutic decisions in over one-third of follow-up visits in these patients.
Background: Oxidative stress and inflammation are major drivers of myocardial hypertrophy in chronic kidney disease (CKD). The silent information regulator gene 1 (Sirt1) is a fundamental mediator of the response to oxidative stress and inflammation and promotes myocardial growth under stress conditions; therefore, it may contribute to myocardial hypertrophy and concentric remodeling of the left ventricle (LV) in CKD. Methods: We investigated the cross-sectional and longitudinal relationship between three candidate polymorphisms in the Sirt1 gene and LV parameters in two cohorts of CKD patients including 235 stage G5D patients and 179 stages G1-5 patients, respectively. Results: In both cohorts, the C allele of the Sirt1 rs7069102 polymorphism associated with the posterior wall thickness in separate and combined analyses (beta =0.15, P=2 x 10(-3)) but was unrelated with the LV volume and the LV mass index indicating a peculiar association of this allele with LV concentric remodeling. Accordingly, the same allele was linked with the LV mass-to-volume ratio in separate and combined (beta- 0.14, P=2 x 10(-3)) analyses in the same cohorts. Furthermore, in longitudinal analyses patients harboring the C allele showed a more pronounced increase in LV mass-to-volume ratio over time than patients without such an allele (regression coefficient =0.14, 95% confidence interval: 0.05-023; P=3 x 10(-3) in the combined analysis). Conclusion: The rs7069102 polymorphism in the Sirt1 gene is associated with LV concentric remodeling in two independent cohorts of stages G5D and G1-5 CKD patients. These results offer a genetic basis to the hypothesis that the Sirt1 gene plays a causal role in myocardial hypertrophy and LV concentric remodeling in these patients.
Anderson-Fabry disease (FD) is a rare, progressive, multisystem storage disorder caused by the partial or total deficit of the lysosomal enzyme α-galactosidase A (α-Gal A). It is an X-linked, lysosomal enzymopathy due to mutations in the galactosidase alpha gene (GLA), encoding the α-Gal A. To date, more than 900 mutations in this gene have been described. In our laboratories, the study of genetic and enzymatic alterations related to FD was performed in about 17,000 subjects with a symptomatology referable to this disorder. The accumulation of globotriaosylsphingosine (LysoGb3) was determined in blood of positives. Exonic mutations in the GLA gene were detected in 471 patients (207 Probands and 264 relatives): 71.6% of mutations were associated with the classic phenotype, 19.8% were associated with the late-onset phenotype, and 8.6% of genetic variants were of unknown significance (GVUS). The accumulation of LysoGb3 was found in all male patients with a mutation responsible for classic or late-onset FD. LysoGb3 levels were consistent with the type of mutations and the symptomatology of patients. α-Gal A activity in these patients is absent or dramatically reduced. In recent years, confusion about the pathogenicity of some mutations led to an association between non-causative mutations and FD. Our study shows that the identification of FD patients is possible by associating clinical history, GLA gene analysis, α-Gal A assay, and blood accumulation of LysoGB3. In our experience, LysoGB3 can be considered a reliable marker, which is very useful to confirm the diagnosis of Fabry disease.
underway to test drugs that improve the response of these receptors mutated to dDAVP.At this experimental phase will follow the application in the patient according to a "precision medicine" approach.
BACKGROUND/AIMS:Fabry disease (FD) is a lysosomal storage disorder characterized by pervasive renal involvement. However, this disease is underdiagnosed in patient with chronic kidney disease (CKD), including those with end stage renal disease (ESRD), so their investigation represents an unexploited opportunity for early diagnosis of the disease and for its identification in relatives of affected patients.METHODS:We investigated Fabry disease in a clinical and biological database including ESRD patients of unknown cause in a geographical area with 2 million residents. The study was based on state of art GLA gene sequencing and was extended to relatives of affected ESRD patients.RESULTS:Among ESRD patients qualified for enrollment into this study, a previously undiagnosed young man harboring the mutation p.I91T was identified. The study of the proband's family led to the identification of 8 additional cases. In another ESRD male patient, we identified the functional polymorphism p.D313Y. Furthermore, in 55 ESRD patients (24.2%) we found intronic polymorphisms of uncertain functional relevance in the non-coding regions of the GLA gene.CONCLUSION:A comprehensive survey of ESRD patients in a geographical area of 2 million residents identified one undiagnosed case of Fabry disease and led to the identification of 8 additional cases among his relatives. Screening protocols starting from the dialysis population and upstream extended to families of affected individuals may be an effective strategy to maximize the early identification of subjects with Fabry disease.
Objective: Hypertension is considered as a long-term, non-immunological risk factor for renal function loss in kidney transplant patients. However, there are no longitudinal studies focusing on the relationship between golden standard BP measurements (24 h ambulatory BP) and the GFR evolution over time in renal transplant patients. Design and method: In a cohort of 260 renal transplant patients we investigated the relationship between the main components of the 24 h ABPM profile (day-time and night time average BP) with the evolution of the GFR over time (by the linear mixed model, LMM) and with the time to a combined end point (>30% GFR reduction, dialysis/transplantation and death) by Cox's regression analysis. On average, 48 longitudinal eGFR measurements were available and 211 patients (81%) had more than 20 measurements over a follow up period ranging from 2 days to 12 years. The predictive values of non-nested models including an identical set of standard risk factors and each BP component were assessed by the −2 LL statistics. Results: In the analysis by the LMM adjusting for a large series of potential confounders (baseline GFR, gender, age, BMI, diabetes, smoking, 24 h urinary protein, cholesterol, hemoglobin, albumin, phosphate and the immunosuppressive drug combinations) both day time and night time BP were significantly related to longitudinal eGFR measurements (P < 0.01) but the LMM-based on night time BP provided a better data fit (by −2 LL statistics) than that based on day time BP. During the follow-up period, 123 patients experienced the combined end point, and the model based on night time BP provided the best data-fit for predicting the outcome. Conclusions: Ambulatory BP measurements coherently predict the risk of GFR loss over time and the risk of developing a combined renal end-point. Night time BP is a stronger indicator of the risk of progression of renal disease than day time BP. These findings optimization of BP control may slow the rate of GFR loss in renal transplant patients and suggest that interventions targeting night time BP may afford renoprotection superior to that of day time BP.