Obesity contributes to an increase in the prevalence of metabolic dysfunction-associated fatty liver disease (MAFLD) and is diagnosed when hepatic steatosis is accompanied by at least one of the following factors: obesity or overweight, diabetes mellitus, or signs of metabolic abnormalities. MAFLD is a term that encompasses a wide range of liver disorders, ranging from simple steatosis to metabolic steatohepatitis, which can progress to cirrhosis and eventually, hepatocellular carcinoma (HCC). Lipotoxicity generated by a high-fat diet causes liver inflammation, therefore, blocking inflammatory pathways is considered a promising strategy to prevent MAFLD progression. Inflammatory responses and oxidative stress are linked to endoplasmic reticulum stress, thereby activating the unfolded protein response (UPR) pathway. Although drugs such as resmetirom and semaglutide have recently been approved for the treatment of MAFLD, there is still a need to identify complementary therapies with different mechanisms of action. In this context, the present study evaluated the hepatoprotective effect of ellagic acid through the modulation of mRNAs of proteins in the UPR-Perk pathway in a murine model fed a high-calorie diet. This study revealed that the high-calorie diet activated the UPR pathway in response to stress, increasing the expression of the Grp78, Eif2ak3, Eif2α, Ddit3, Atf4, and Nfe2l2 genes in the liver and epididymal adipose tissue. Ellagic acid modulated the pathway genes and reduced levels of glucose, total cholesterol, HDL and VLDL, triglycerides, insulin, and glycated hemoglobin, and could therefore be considered a hepatoprotective agent.
Background/Objectives: MicroRNAs (miRNAs) have emerged as molecular mediators involved in the pathogenesis of rheumatoid arthritis (RA). Given the influence of diet on gene expression and inflammation, plant-based diets represent a potential non-pharmacological strategy for modulating disease activity. This study aimed to explore and validate, through a bioinformatic-guided pilot approach, the regulation of miRNAs associated with RA in response to a 14-day plant-based dietary intervention. Methods: Candidate miRNAs were identified through differential expression analysis of the GSE124373 dataset using GEO2R and were further supported by a literature review. Target gene prediction and functional enrichment analyses were conducted to assess the biological relevance of these findings. Twenty-three RA patients followed a plant-based diet for 14 days. The clinical activity (DAS28-CRP), biochemical markers, and plasma expression of five selected miRNAs (miR-26a-5p, miR-125a-5p, miR-125b-5p, miR-146a-5p, and miR-155-5p) were evaluated before and after the intervention using RT-qPCR. Results: Significant reductions were observed in DAS28-CRP scores, C-reactive protein, glucose, and lipid levels after 14 days of intervention. Three of the five miRNAs (miR-26a-5p, miR-125a-5p, and miR-155-5p) were significantly downregulated post-intervention. Bioinformatic analyses indicated that these miRNAs regulate immune-inflammatory pathways relevant to RA pathogenesis. Conclusions: This pilot study suggests that a short-term plant-based dietary intervention may modulate circulating miRNAs and improve clinical and biochemical parameters in RA patients. These findings support further research into dietary strategies as complementary approaches for RA management.
Obesity significantly contributes to the development and progression of chronic kidney disease (CKD) by inducing metabolic and hemodynamic disturbances that drive gene dysregulation, inflammation, fibrosis, and renal structural injury. Key molecular mediators include genetic polymorphisms - such as AGT rs699, ACE I/D, LEP ENSSNP5824596, and FTO rs17817449 - and epigenetic regulators like microRNAs (e.g., miR-21, miR-192) and long non-coding RNAs (e.g., ANRIL, HOTAIR). These alterations affect signaling cascades such as TGF-β/Smad3, NF-κB, and AMPK, accelerating renal damage in obese individuals. Despite advances, reliable biomarkers and therapeutic targets remain scarce. This review integrates current evidence on the genetic and epigenetic basis of obesity-related CKD, offering a framework for early detection and precision medicine.
BACKGROUND:Congenital heart disease (CHD) are the most common malformations from birth. The severity of the different forms of CHD varies extensively from superficial mild lesions with follow-up for decades without any treatment to complex cyanotic malformations requiring urgent surgical intervention. microRNAs have been found to be crucial in cardiac development, giving rise to possible phenotypes in CHD. OBJECTIVES:We aimed to evaluate the expression of miRNAs in 86 children with CHD and divided into cyanotic and non-cyanotic heart defects and 110 controls. METHODS:The miRNAs expression of miR-21-5p, miR-155-5p, miR-221-3p, miR-26a-5p, and miR-144-3p were analyzed by RT-qPCR. In addition, the expressions of the miRNAs studied were correlated with the clinical characteristics of both the children and the mothers. RESULTS:The expression levels of miR-21-5-5p, miR-15-5p5, miR-221-3p, and miR-26-5p significantly differed between CHD and control subjects. Moreover, miR-21-5p levels were higher in patients with cyanotic versus non-cyanotic CHD patients. CONCLUSION:The expression levels of miRNAs of pediatric patients with CHD could participating in the development of cardiac malformations. Additionally, the high expression of miR-21-5p in cyanotic CHD children may be related to greater severity of illness relative to non-cyanotic CHD. IMPACT:This study adds to knowledge of the association between microRNAs and congenital heart disease in children. The expression levels of miR-21-5-5p, miR-15-5p5, miR-221-3p, and miR-26-5p of pediatric patients with CHD could be involved in the development and phenotype present in pediatric patients. miR-21-5p may help to discriminate between cyanotic and non-cyanotic CHD. In the future, the miRNAs studied could have applications as clinical biomarkers.
BACKGROUND:The aim was to diagnose Candida in the oral cavity of subjects with type 2 diabetes mellitus (T2DM) using a genotyping technique and compare the results with those from conventional diagnosis by Papanicolaou (Pap) staining.METHODS:Palatal mucosa smears were performed on 18 dental care patients diagnosed with T2DM and grade I, II, and III prosthetic stomatitis who met the inclusion criteria; 18 healthy control subjects were also included in the study. Hemoglobin A1c (HbA1c) levels were determined from total blood. Using exfoliative cytology, the Pap staining technique was used to diagnose candidiasis. Exfoliative cytology was also used for molecular diagnosis; DNA was obtained for Candida genotyping, and RNA was used for gene expression studies.RESULTS:Clinical patterns indicated that all subjects were positive for Candida; however, Pap analysis revealed only three positive subjects, whereas end-point polymerase chain reaction (PCR) analysis revealed 15 subjects with some type of Candida. The most common Candida species found were Candida guilliermondii (38.8%), Candida krusei (33.3%), Candida tropicalis, and Candida lusitaniae (22.2%). Interestingly, the coexpression of different species of Candida was found in various patients. In all patients, HbA1c levels were increased. Gene expression analysis showed a significant decrease (p ≤ 0.05) in TLR2 expression in positive subjects, whereas TLR4 expression did not differ significantly among patients.CONCLUSIONS:The end-point PCR technique showed better sensitivity for the diagnosis of Candida when compared with the diagnosis by Pap staining. T2DM subjects showed an increased presence of C. guilliermondii that was correlated with decreased TLR2 expression.
Background Antiphospholipid syndrome (APS) is the main cause of acquired thrombophilia where peripheral circulating cells such as monocytes have a key role. Currently, several studies have linked long non-coding RNAs (lncRNAs) in different inflammatory and autoimmune processes, including lupus. However, the role of lncRNAs in antiphospholipid syndrome is unknown, therefore, we aimed to select and measure expression levels of three lncRNAs based on its abundance in monocytes from APS patients. Methods Selection of lncRNAs candidates were carried out based on its abundance in monocytes and their relationship with Perez-Sanchez miRNA signature by using miRNet 2.0 bioinformatic tool, then lncRNAs expression levels was measured in monocytes by RT-qPCR. Results This is the first study to report that lncRNAs: FGD5-AS1, OIP5-AS1 and GAS5 are promising candidates for play a role on APS monocytes and they are expressed differently between patients and controls. Conclusions OIP5-AS1, FGD5-AS1 and GAS5 are downregulated on monocytes from APS patients.
Obesity is characterized by the excessive accumulation of fat, which triggers a low-grade chronic inflammatory process. Currently, the search for compounds with anti-obesogenic effects that help reduce body weight, as well as associated comorbidities, continues. Among this group of compounds are plant extracts and flavonoids with a great diversity of action mechanisms associated with their beneficial effects, such as anti-inflammatory effects and/or as signaling molecules. In the bark of Tabebuia rosea tree, there are different classes of metabolites with anti-inflammatory properties, such as quercetin. Therefore, the present work studied the effect of the ethanolic extract of T. rosea and quercetin on the mRNA of inflammation markers in obesity compared to the drugs currently used. Total RNA was extracted from epididymal adipose tissue of high-fat diet-induced obese Wistar rats treated with orlistat, phentermine, T. rosea extract, and quercetin. The rats treated with T. rosea and quercetin showed 36 and 31% reductions in body weight compared to the obese control, and they likewise inhibited pro-inflammatory molecules: Il6, Il1b, Il18, Lep, Hif1a, and Nfkb1 without modifying the expression of Socs1 and Socs3. Additionally, only T. rosea overexpressed Lipe. Both T. rosea and quercetin led to a reduction in the expression of pro-inflammatory genes, modifying signaling pathways, which led to the regulation of the obesity-inflammation state.
Maternal nutrition during gestation has important effects on gene expression-mediated metabolic programming in offspring. To evaluate the effect of a protein-restricted maternal diet during gestation, pancreatic islets from male progeny of Wistar rats were studied at postnatal days (PND) 36 (juveniles) and 90 (young adults). The expression of key genes involved in β-cell function and the DNA methylation pattern of the regulatory regions of two such genes, Pdx1 (pancreatic and duodenal homeobox 1) and MafA (musculoaponeurotic fibrosarcoma oncogene family, protein A), were investigated. Gene expression analysis in the pancreatic islets of restricted offspring showed significant differences compared with the control group at PND 36 (P < 0.05). The insulin 1 and 2 (Ins1 and Ins2), Glut2 (glucose transporter 2), Pdx1, MafA, and Atf2 (activating transcription factor 2), genes were upregulated, while glucokinase (Gck) and NeuroD1 (neuronal differentiation 1) were downregulated. Additionally, we studied whether the gene expression differences in Pdx1 and MafA between control and restricted offspring were associated with differential DNA methylation status in their regulatory regions. A decrease in the DNA methylation levels was found in the 5' flanking region between nucleotides -8118 to -7750 of the MafA regulatory region in restricted offspring compared with control pancreatic islets. In conclusion, low protein availability during gestation causes the upregulation of MafA gene expression in pancreatic β-cells in the male juvenile offspring at least in part through DNA hypomethylation. This process may contribute to developmental dysregulation of β-cell function and influence the long-term health of the offspring.
Maternal obesity (MO) induces negative consequences in the offspring development. Adiposity phenotype is associated with maternal diet at early pregnancy and DNA methylation marks in the RXRα promotor at birth. Glucocorticoids play an important role in the regulation of metabolism through the activation of nuclear hormone receptors such as the RXRα protein. The aim of the study was to analyze steroid hormone changes at the end of pregnancy in the obese mother and RXRα gene methylation in the umbilical cord. For this purpose, in a well-established MO model, female Wistar rats were fed either standard chow (controls: C) or high-fat obesogenic diet (MO) before and during pregnancy to evaluate at 19 days of gestation (19 dG): 1) maternal concentration of circulating steroid hormones in MO and C groups, 2) maternal and fetal weights, 3) analysis of correlation between hormones concentration and maternal and fetal weights, 4) DNA methylation status of a single locus of RXRα gene near the early growth response (EGR-1) protein DNA binding site, and 5) RXRα mRNA and protein expressions in umbilical cords. Our results demonstrate that at 19 dG, MO body weight before and during pregnancy was higher than C; MO progesterone and corticosterone serum concentrations were higher and estradiol lower than C. There were not differences in fetal weight between male and female per group, therefore averaged data was used; MO fetal weight was lower than C. Positive correlations were found between progesterone and corticosterone with maternal weight, and estradiol with fetal weight, while negative correlation was observed between corticosterone and fetal weight. Additionally, male umbilical cords from MO were hypermethylated in RXRα gene compared to male C group, without differences in the female groups; mRNA and protein expression of RXRα were decreased in F1 male but not in female MO compared to C. In conclusion, MO results in dysregulation of circulating steroid hormones of the obese mothers and low fetal weight in the F1, modifying DNA methylation of RXRα gene as well as RXRα mRNA and protein expression in the umbilical cord in a sex-dependent manner.
Justicia spicigera is a plant used in traditional Mexican medicine to treat various diseases such as heart diseases and to improve blood circulation, with little scientific evidence. Therefore, this study evaluated the effect of the leaves of the plant and of kaempferitrin (main active ingredient), on biochemical, physiological, and inflammation markers related to obesity induced by a high-fat diet in male Wistar rats for eight weeks. The results indicated that J. spicigera powder has the ability to significantly decrease (p ≤ 0.05) the percentage of accumulated fat, and consequently, weight gain, as well as serum triglyceride concentrations. In addition, both J. spicigera powder and kaempferitrin generated transcriptional adaptations by negatively modulating the expression of pro-inflammatory genes such as Tlr4, Tnf-α, Nlrp3, Caspase-1, Il-18, Il-1β, Srebp-1c, Ppar-γ and Ucp2 and overexpressing Ppar-α.
Late-onset Alzheimer disease (LOAD) is the most frequent cause of dementia in elderly adults. However, the factors determining disease onset remain unclear. In the elderly, the activation and expression of the gene encoding RE-1 silencing transcription factor (REST) may be a determinant of neuroprotective mechanisms and good amyloidogenic pathway management. In the present study, the minimal promoter region of REST1 was genetically and epigenetically analyzed in blood samples from 21 subjects with LOAD and 20 cognitively healthy elderly subjects. Genomic DNA was isolated, treated with bisulfite and pyrosequenced, and gene expression was determined using real-time PCR. Notably, subjects with LOAD exhibited hypermethylation and significantly diminished expression of REST1 compared with healthy subjects (p = 0.001). In the LOAD group, the gene expression of CAT, SOD2 and GPX also showed a significant decrease and an increase in malondialdehyde. A docking analysis revealed that the first zinc finger protein Sp1 recognized and bound the methylated sequence in subjects with LOAD differently than the binding observed in control subjects. These results reveal that in patients with LOAD the methylation of specific sites in the promoter sequence of REST suppresses its expression and this could be regulating the decreased expression of CAT, SOD and GPX, besides interfering with the action of transcription factors as Sp1.
Morin and PUFAs are bioactive compounds provided by the diet, with multiple biological activities, among which are the modulation of inflammation in various chronic diseases. The effect of supplementation with Morin, PUFAs, and the mixture of both on the levels of mRNA expression of the Nlrp3 inflammasome as well as genes associated with inflammation and lipid metabolism, in an obesity model through a high-fat diet, during 8 weeks of administration were evaluated. The three treatments negatively regulated the expression of Nlrp3 mRNA. Morin showed a better effect by modulating downwards the expression of the mRNA of Il-18, Casp-1, Ppar gamma, and Serbp-1c, in addition to positively modulating the expression of the mRNA of Ppar-alpha, as well as Adiponectin. The combined treatment of Morin plus the PUFAs maintained similar levels under normal conditions for the mRNA expression of Tlr4 and Ucp2.
Background. The gene for patatin-like phospholipase domain containing 3 (PNPLA3) is associated with non-alcoholic fatty liver disease (NAFLD) development. We previously found that Mexican indigenous population had the highest frequency reported of the PNPLA3 148M risk allele. Further, we observed a relationship between M148M genotype with elevated ALT levels in individuals with normal weight, overweight and obese. We sought to investigate whether PNPLA3 polymorphism is associated with NAFLD development in Mexicans. Material and methods. We enrolled 189 Mexican patients with NAFLD and 201 healthy controls. Anthropometric, metabolic, and biochemical variables were measured, and rs738409 (Ile148Met substitution) polymorphism was genotyped by sequencing. Results. Logistic regression analysis, using a recessive model, suggested that PNPLA3 polymorphism in Mexican population is significantly associated (OR = 1.711, 95% CI: 1.014-2.886; P = 0.044) with NAFLD. Conclusions: The PNPLA3 gene is associated with NAFLD in Mexican population. More studies are required to explain the high prevalence of PNPLA3 polymorphism in Mexican-Americans, Mexican-Indians, and Mexican-Mestizos.
Context: There is evidence that n-3 polyunsaturated fatty acids (n-3-PUFAs) can inhibit mTORC1, which should potentiate autophagy and eliminate NLRP3 inflammasome activity.Objective: Evaluate the effect of a high-fat or high-fat/fructose diet with and without n-3-PUFAs on hepatic gene expression.Materials and methods: We examined the mRNA expression by RT-PCR of Mtor, Nlrp3, and other 22 genes associated with inflammation in rats livers after a 9-week diet. The dietary regimens were low-fat (control, CD), high-fat (HF), high-fat/fructose (HF-Fr), and also each of these supplemented with n-3PUFAs (CD-n-3-PUFAs, HF-n-3-PUFAs, and HF-Fr-n-3-PUFAs). These data were processed by GeneMania and STRING databases.Results: Compared to the control, the HF group showed a significant increase (between p< 0.05 and p< 0.0001) in 20 of these genes (Il1b, Il18, Rxra, Nlrp3, Casp1, Il33, Tnf, Acaca, Mtor, Eif2s1, Eif2ak4, Nfkb1, Srebf1, Hif1a, Ppara, Ppard, Pparg, Mlxipl, Fasn y Scd1), and a decrease in Sirt1 (p< 0.05). With the HF-Fr diet, a significant increase (between p< 0.05 and p< 0.005) was also found in the expression of 16 evaluated genes (Srebf1, Mlxipl, Rxra, Abca1, Il33, Nfkb1, Hif1a, Pparg, Casp1, Il1b, Il-18, Tnf, Ppard, Acaca, Fasn, Scd1), along with a decrease in the transcription of Mtor and Elovl6 (p< 0.05). Contrarily, many of the genes whose expression increased with the HF and HF-Fr diets did not significantly increase with the HF-n-3-PUFAs or HF-Fr-n-3-PUFAs diet.Discussion and conclusion: We found the interrelation of the genes for the mTORC1 complex, the NLRP3 inflammasome, and other metabolically important proteins, and that these genes respond to n3- PUFAs.
Context: It has been reported that 17 beta-estradiol (E2) reduces the expression of inflammatory molecules, but there are no data that show the effect of E2 on the transcriptional regulation of innate immunity-related molecules and inflammasomes. Objective: To study the effect of 17 beta-estradiol (E2) on the transcriptional expression of the NLR family, pyrin domain containing 1(Nlrp1) and (Nlrp3) inflammasomes, which are mediators of inflammation. Materials and methods: Inflammation was induced in adult female gonadectomized (Gdx) rats by intramuscular injection of complete Freund's adjuvant (CFA). Measurements were taken at different times after the treatment. Gene expression determinations were done by quantitative real-time polymerase chain reaction (qRT-PCR). Results: CFA-induced inflammation increased the transcription of Nlrp3, IL-1 beta (p < 0.05), vascular cell adhesion molecule 1 (VCAM1), E-selectin and estrogen receptor 1 alpha (ER alpha) (p < 0.001) and decreased the transcription of Nlrp1, Caspase-1, IL-33, NFKB1, ICAM1, ICAM2, GCR alpha, GCR beta, UCP3 and PGC1 alpha (p < 0.001) compared to the control. The administration of E2 to the inflamed tissue significantly increased the expression of Nlrp1, NFKB1, ER alpha, UCP3, Caspase-1, E-selectin (p < 0.001), IL-18 and ER alpha (p < 0.05) and decreased IL-1 beta and VCAM1 (p < 0.005) compared to the control. Discussion and conclusion: CFA differentially modulates the transcription of inflammasome-related genes and the administration of E2 increases the expression of ER alpha and Nlrp1 together with NFKB1, a key molecule in the activation of the inflammasomes. Finally, an analysis using the web interface GeneMANIA revealed an interaction between several genes, indicating a functional correlation in this model.
Background and Aims. The IL28B single nucleotide polymorphism (SNP) rs12979860 is a major predictor of treatment outcomes in hepatitis C virus (HCV) infection, but its distribution widely varies among populations and ethnicities. We undertook this study to investigate the distribution of IL28B SNP rs12979860 in Mexican patients with HCV infection and to assess its usefulness in predicting response to pegylated interferon-alpha and ribavirin (PegIFN-alpha/RVB) therapy.Methods. Three hundred and fifty patients with chronic HCV infection were studied. The frequency of sustained virologic response (SVR), non-responders and relapses following a course of standard therapy was longitudinally assessed in 295 of these patients. IL28B SNP rs12979860 was genotyped from genomic DNA using real-time RT-PCR. The number needed to treat (NNT) to achieve a SVR was calculated.Results. Seventy six (22%) patients were CC homozygous, 210 (60%) were heterozygous and 64 (18%) showed IT homozygosity for the IL28B SNP rs12979860. After a standard course of PegIFN-alpha/RVB, 69% of patients with the CC genotype, 46% of the heterozygous group and 38% of those with the TT genotype (p = 0.001) achieved a SVR. Conversely, the percentage of non-responders was 15, 43, and 48% (p < 0.0001), respectively. The NNT to achieve a SVR was strongly influenced by the IL28B rs12979860 genotype and ranged from 2-10.Conclusions. The IL-28B rs12979860 CC genotype was found in 22% of Mexican patients chronically infected by HCV. Genotyping IL28B SNP rs12979860 is useful to predict the response to a standard regimen with PegIFN-alpha/RVB, especially in those infected with HCV genotype 1. (C) 2015 IMSS. Published by Elsevier Inc.
BACKGROUND The activated NLRP3 inflammasome is associated with the etiology of fibrotic diseases. The role of inflammasomes in SSc is still poorly understood. OBJECTIVES To determine the expression of NLRP3 (nucleotide-binding domain, leucine-rich-repeat-containing family, pyrin domain-containing 3) in the skin of patients with systemic sclerosis (SSc) and its relationship with pro-inflammatory cytokines and vascular mediators expression. METHODS Skin biopsies were taken from 42 patients with either limited or diffuse SSc (21 lcSSc and 21 dcSSc), and from 13 healthy individuals. Using real-time polymerase chain reaction (PCR), the relative expression of caspase-1, IL-1β, IL-18, IL-33, TGF-β, ET-1, iNOS and eNOS genes, were measured. The location of NLRP3 and IL-1β were also determined by immunohistochemistry. Clinical characteristics were evaluated. RESULTS The mean age of the patients was 49.3 ± 12.9 (lcSSc), 44.6 ± 1 3.8 (dcSSc), and 45 ± 14.1 (healthy individuals). Compared to healthy individuals, the skin of both subtypes of SSc showed a significant increase (P < 0.05) in NLRP3, caspase-1, IL-1β, IL-18 and ET-1. Samples of lcSSc also showed a significant increase of eNOS (P < 0.029), iNOS (P < 0.04) and TGF-β (P < 0.05). Dermal fibrosis evaluated by modified Rodnan skin score (MRSS) had significant correlation with NLRP3, IL-1β, IL-18, and ET-1. Immunohistochemical analysis showed stronger staining of NLRP3 and IL-1β cytoplasmic expression in the keratinizing squamous epithelium of skin from SSc patients compared to controls. CONCLUSIONS This study identified NLRP3 over-expression in skin of patients with SSc. Skin thickness correlates positively with the NLRP3 inflammasome gene expression and with the vascular mediator and pro-fibrotic ET-1, suggesting that NLRP3 inflammasome plays a role in the pathophysiology of skin fibrosis in human SSc.
Novel biomarkers for risk refinement and stratification in childhood acute lymphoblastic leukemia (ALL) are needed to optimize treatment results. We studied the expression of CASP8AP2 and H2AFZ associated with relapse and survival in bone marrow samples from newly diagnosed children with ALL. We found: (a) an increased risk for early relapse in those patients with low expression of CASP8AP2 (odds ratio [OR] 3.93, 95% confidence interval [CI] 1.40-11.02, p < 0.05) confirming its usefulness as a predictive risk marker, although H2AFZ did not present the same effect; (b) patients with low expressions of CASP8AP2 and H2AFZ had inferior survival rates (p < 0.001); (c) the predictive values regarding low expressions of H2AFZ and CASP8AP2 and high white blood cell count suggest that these features could help to identify more accurately patients at greater risk of relapse.