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Newer therapeutic options for children with diabetes mellitus: theoretical and practical considerations.

Recent studies in adult patients with type 1 diabetes mellitus (T1DM) and T2DM have examined the potential utility, benefits, and side effects of agents that augment insulin secretion after oral ingestion of nutrients in comparison with intravenous nutrient delivery, the so-called incretins. Two families of incretin-like substances are now approved for use in adults. Glucagon-like peptide-1 (GLP-1) or agents that bind to its receptor (exenatide, Byetta) or agents that inhibit its destruction [dipeptidyl peptidase-IV (DPP-IV) inhibitors, Vildagliptin] improve insulin secretion, delay gastric emptying, and suppress glucagon secretion while decreasing food intake without increasing hypoglycemia. Pramlintide, a synthetic amylin analog, also decreases glucagon secretion and delays gastric emptying, improves hemoglobin A1c (HbA1C), and facilitates weight reduction without causing hypoglycemia. We review the historical discovery of these agents, their physiology [corrected] and their current applications. Remarkably, only one or two studies have been reported in children. Pediatricians caring for children with T1DM and T2DM should become familiar with these agents and investigate their applicability, as they seem likely to enhance our therapeutic armamentarium to treat children with diabetes mellitus.

Amyloid↗

Effect of hormone replacement therapy on cardiovascular risk factors in postmenopausal women with diabetes.

BACKGROUND: Hormone replacement therapy (HRT) in postmenopausal women improves menopausal symptoms, decreases the incidence of osteoporotic fracture, but the effects on cardiovascular risk factors remain controversial. AIM: To test the hypothesis that HRT may have beneficial effects on the cardiovascular risk profile in postmenopausal women with diabetes. METHODS: One hundred and fifty postmenopausal patients with type 1 (T1DM) and type 2 diabetes (T2DM) were randomized to receive HRT (Kliofem) or placebo for 12 months. We monitored the effects on cardiovascular risk factors, including lipid profile, glycaemic control, blood pressure and body weight. RESULTS: Mean low-density lipoprotein (LDL) cholesterol was associated with a nonsignificant decrease [-0.14 mmol/l (CI=-0.44, 0.17) (p=0.37)] in the Kliofem-treated group. Total cholesterol fell by 0.42 mmol/l (CI=-0.78, -0.05) (p=0.027). High-density lipoprotein (HDL) cholesterol was reduced by a mean of 0.07 mmol/l compared to a mean rise of 0.12 mmol/l on placebo. There were apparent differences in the treatment effects between T1DM and T2DM. There was no change in triglycerides or apoprotein B and no effect on glycaemic control, blood pressure or menopausal symptom scores. In the Kliofem group, BMI fell by 0.66 kg/m2 compared to an increase of 0.14 kg/m2 for placebo patients (p=0.046). CONCLUSIONS: Although the long-term effects of HRT in women with or without diabetes appear to suggest that some types of HRT either confer no cardiovascular protection or may increase risk, the impact of Kliofem diabetic women on cardiovascular risk factors is probably neutral.

Blood Pressure↗

Long-term effects of pioglitazone and metformin on insulin sensitivity in patients with Type 2 diabetes mellitus.

AIM: Despite their comparable glycaemic effects in patients with Type 2 diabetes mellitus (T2DM), pioglitazone and metformin may have different effects on insulin sensitivity because they have different mechanisms of action. We studied the changes in insulin sensitivity, as assessed by the Quantitative Insulin Sensitivity Check Index (QUICKI), in patients with T2DM who used metformin or pioglitazone as monotherapy or in combination therapy with sulphonylurea. METHODS: Data in this report are from two multicentre, randomized, double-blind, double-dummy studies conducted in Europe (monotherapy) or in Europe and Canada (combination therapy study). Patients were randomized to 52 weeks of treatment consisting of a 12-week forced titration period and a 40-week maintenance period. HbA(1c), fasting plasma glucose (FPG) and fasting serum insulin (FSI) were quantified from a single blood sample at weeks 0, 8, 16, 24, 32, 42 and 52. Insulin sensitivity was assessed with QUICKI, which is calculated from FSI and fasting blood glucose (FBG) concentrations using the formula 1/(log(10) FSI + log(10) FBG). Time course effects of the treatments were compared by repeated measures analysis of covariance. RESULTS: As monotherapy, pioglitazone and metformin increased QUICKI compared with baseline (baseline vs. end point [mean +/- sem]; pioglitazone [0.303 +/- 0.001 vs. 0.321 +/- 0.001; P < 0.001] and metformin [0.304 +/- 0.001 vs. 0.315 +/- 0.001; P < 0.001]). Pioglitazone increased insulin sensitivity more than metformin from week 4 through week 52. There were significant increases in QUICKI from baseline in both combination therapy groups (baseline vs. end point; pioglitazone + sulphonylurea [0.305 +/- 0.001 vs. 0.319 +/- 0.001; P < 0.001] and metformin + sulphonylurea [0.306 +/- 0.001 vs. 0.317 +/- 0.001; P < 0.001]). Overall, pioglitazone + sulphonylurea significantly increased insulin sensitivity more than metformin + sulphonylurea. CONCLUSION: Pioglitazone differed from metformin in its effects on insulin sensitivity despite both drugs having comparable glycaemic effects.

Adult↗

Pioglitazone increases circulating adiponectin levels and subsequently reduces TNF-alpha levels in Type 2 diabetic patients: a randomized study.

BACKGROUND: Adipocytokines are involved in the development of insulin resistance and endothelial dysfunction in diabetic patients. However, the relationship between these factors remains unclear. We observed a chronological change in circulating adipocytokines and blood pressure levels with administration of oral hypoglycaemic agents in Type 2 diabetic (T2DM) subjects. METHODS: Thirty poorly controlled T2DM subjects (aged 60.1 +/- 1.5 years, 11 males and 19 females) were randomized into two groups: voglibose (initial dose 0.6 mg/day, increased to 0.9 mg/day) and pioglitazone (initial dose 15 mg/day, increased to 30 mg/day). RESULTS: Both treatment groups showed a similar improvement in glycaemic control. In pioglitazone-treated patients, circulating adiponectin levels were significantly increased from 4 weeks after the start of treatment, and until the end of the study at 12 weeks. Plasma tumour necrosis factor-alpha (TNF-alpha) levels were significantly decreased only at 12 weeks. In contrast, no significant changes in plasma adiponectin or TNF-alpha levels were observed in voglibose-treated patients. Plasma PAI-1 and leptin levels were not significantly changed at 12 weeks in either treatment group. Pioglitazone significantly decreased systolic and diastolic blood pressure levels at 12 weeks, but voglibose had no effect. CONCLUSION: In summary, pioglitazone caused an immediate increase in circulating adiponectin levels, followed by a reduction of TNF-alpha. The observed increase in circulating adiponectin could be related to decreases in both systolic and diastolic blood pressure.

Adiponectin↗

Hormone replacement therapy is associated with increased C-reactive protein in women with Type 2 diabetes in the Diabetes Heart Study.

AIMS: Increased levels of inflammatory biomarkers, especially C-reactive protein (CRP), are associated with increased risk for cardiovascular disease (CVD) events, such as myocardial infarction, stroke, peripheral vascular disease, and sudden cardiac death. Medical interventions that increase CRP levels, such as hormone replacement therapy (HRT) in post-menopausal women, are under increasing scrutiny. The effect of HRT on CRP levels in women with Type 2 diabetes (T2DM) is not well documented, and conflicting conclusions have been reported. The aim of this study was to determine the influence of HRT on women with diabetes in a large cross-sectional study. METHODS: Three hundred and twenty-seven post-menopausal women with T2DM from the Diabetes Heart Study participated. Current use of HRT was determined and serum CRP levels were measured using a high-sensitivity ELISA kit. Generalized estimating equation methods were used to assess the relationship of multiple clinical and lifestyle (e.g. smoking) measures on CRP levels including differences between women taking HRT (HRT+) and not taking HRT (HRT-). RESULTS: Overall serum CRP levels were strongly associated with body mass index (P < 0.0001) and age (P < 0.0001). Of the women, 243 were not using HRT and 84 were using HRT. HRT+ and HRT- women did not differ significantly in measures of clinical traits, with the exception of higher mean low-density lipoprotein cholesterol in HRT- women (P = 0.004). In all models tested, HRT+ women had significantly higher circulating CRP levels, with P-values ranging from 0.0045 to 0.010. CONCLUSIONS: In this study of serum CRP concentration as a function of HRT in women with Type 2 diabetes, there was consistent evidence for increased circulating CRP levels in women receiving oestrogen-containing HRT. Whether HRT-induced increases in CRP can account for the adverse cardiovascular effects of HRT remains to be established; however, based on these data, there is little reason to believe that diabetic women would be spared from such an effect.

Body Mass Index↗

Paradoxical HDL-C reduction during rosiglitazone and fibrate treatment.

AIMS: Dyslipidaemia in Type 2 diabetes mellitus (T2DM) is one of the major contributors in the pathogenesis of atherosclerosis. Thiazolidinediones (TZD), a class of drugs used in the treatment of T2DM, also modify lipids, especially lowering serum triglycerides and raising high-density lipoprotein cholesterol (HDL-C). METHODS: We describe five patients taking rosiglitazone and a fibrate who showed a paradoxical fall in HDL-C, which would have been missed if HDL-C had not been routinely monitored. This could have had a major impact in increasing the cardiovascular risk in these patients. RESULTS: Our five patients showed marked variation in both the decrease in serum HDL-C (50-89%) and also in the time taken for recovery of HDL-C after withdrawal of rosiglitazone (between 5 and 20 weeks). Apolipoprotein A1 mirrored the drop in HDL-C in four of the five patients but in one subject this was not seen, suggesting the possibility of multiple mechanisms leading to the phenomenon described, perhaps involving HDL metabolism. Improvements in glycaemic control with rosiglitazone (absolute HbA(1c) reduction between 0.6 and 3.0%) were seen in four of our patients. This suggests that the peroxisomal proliferator-activated receptor gamma signalling pathways relevant to glucose homeostasis were intact. CONCLUSION: As atherosclerosis is associated with a decrease in the HDL-C level, our observations reinforce the message that HDL-C should be measured before and after the commencement of rosiglitazone and also on increasing the dosage

Anticholesteremic Agents↗

Increased muscle protein breakdown in chronic hemodialysis patients with type 2 diabetes mellitus.

BACKGROUND: The presence of diabetes mellitus (DM) in chronic hemodialysis (CHD) patients has potential to increase body protein losses and muscle wasting. METHODS: In this study, we examined whole-body and skeletal muscle protein metabolism in 6 CHD patients with type 2 (T2) DM (2 male, 44.4 +/- 6.1 years old, 2 white/4 African American HbA(1)C = 9.5 +/- 1.1%), and 6 non-DM CHD patients (2 male, 43.3 +/- 6.7 years old, 2 white/4 African American) in a fasting state, using a primed-constant infusion of L-(1-(13)C) leucine and L-(ring-(2)H(5)) phenylalanine. RESULTS: CHD patients with T2DM had significantly increased (83%) skeletal muscle protein breakdown (137 +/- 27 vs. 75 +/- 25 microg/100 mL/min). There was no significant difference in muscle protein synthesis between groups (78 +/- 27 vs. 66 +/- 21 microg/100 mL/min, for DM and non-DM respectively), resulting in significantly more negative net protein balance in the muscle compartment in the DM group (-59 +/- 4 vs. -9 +/- 6 microg/100 mL/min, P < 0.05). A similar trend was observed in whole-body protein synthesis and breakdown. Plasma glucose levels were 113 +/- 16 and 71 +/- 2 mg/dL, P < 0.05, and insulin levels were 25.3 +/- 9.6 and 7.3 +/- 1.0 uU/mL, for DM versus non-DM, respectively, P < 0.05. No significant differences between DM and non-DM were found in other metabolic hormones. CONCLUSION: The results of this study demonstrate that CHD patients with T2DM under a suboptimal metabolic control display accelerated muscle protein loss compared with a matched group of non-DM CHD patients.

Adult↗

Thiol reducing compounds prevent human amylin-evoked cytotoxicity.

Human amylin (hA) is a small fibrillogenic protein that is the major constituent of pancreatic islet amyloid, which occurs in most subjects with type-2 diabetes mellitus (T2Dm). There is growing evidence that hA toxicity towards islet beta-cells is responsible for their gradual loss of function in T2Dm. Preventing hA-mediated cytotoxicity has been proposed as a route to halt the progression of this disease, although this has not yet been demonstrated in vivo. The aim of our studies, in which we show that a small number of hA-treated cells exhibit intracellular accumulation of reactive oxygen species (ROS), was to evaluate the role of oxidative stress in the mechanism of hA-mediated cytotoxicity. Here we report that catalase and n-propyl gallate, antioxidants that are thought to act mainly as free radical scavengers, afford RINm5F cells only limited protection against hA-mediated toxicity. By contrast, the thiol antioxidants, N-acetyl-L-cysteine (NAC), GSH and dithiothreitol, which not only react with ROS, but also modulate the cellular redox potential by increasing intracellular levels of GSH and/or by acting as thiol reducing agents, afford almost complete protection and inhibit the progression of hA-evoked apoptosis. We also show that hA treatment is not associated with changes in intracellular GSH levels and that inhibition of GSH biosynthesis has no effect on either hA-mediated cytotoxicity or NAC-mediated protection. These results indicate that, in addition to the induction of oxidative stress, hA appears to mediate cytotoxicity through signalling pathways that are sensitive to the actions of thiol antioxidants.

Acetylcysteine↗

Combined high-fat, high-sucrose diet and streptozotocin treatment induces cardiometabolic heart failure with preserved ejection fraction in mice.

Diabetes is associated with an increased incidence of heart failure with preserved ejection fraction (HFpEF), but the underlying mechanisms are poorly understood. A shortage of mouse models reflecting the diverse HFpEF pathophysiology contributes to this inadequate understanding of disease mechanisms. We conducted a comprehensive analysis of a nongenetic, inducible type 2 diabetes mellitus (T2DM) mouse model about its suitability as a preclinical model of cardiometabolic, diabetes-induced HFpEF. T2DM was induced in C57Bl/6 mice by a high-fat/high-sucrose diet and a low-dose streptozotocin (DIO-STZ). Cardiac function was assessed in vivo by echocardiography and left ventricular catheterization and in vitro using the isolated perfused heart. Structural, molecular, and bioenergetic disturbances were analyzed by immunohistochemistry, RNA-seq, qPCR, Western blot, and extracellular flux analysis of myocardial tissue. Blood glucose, fatty acids, and ketone body levels were elevated, and insulin levels were reduced in DIO-STZ compared with chow. DIO-STZ mice showed an HFpEF phenotype with reduced cardiac output, end-diastolic volume, and increased filling pressure. No differences in myocardial fibrosis or in vitro stiffness were detected between DIO-STZ and chow. RNA-Seq pointed toward disturbances in lipid and ketone metabolism. Extracellular flux analysis revealed increased fatty acid oxidation capacity without differences in glucose metabolism. No general mitochondrial dysfunction was observed, but a reduced capacity for &#x3b2;-hydroxybutyrate oxidation. The diabetic DIO-STZ mouse model showed a pronounced functional HFpEF phenotype with underlying mechanisms that remarkably differ from other HFpEF models, making the DIO-STZ model a relevant extension of the range of HFpEF mouse models, especially for investigating molecular mechanisms or therapeutic interventions in diabetes-associated HFpEF.NEW & NOTEWORTHY Heart failure with preserved ejection fraction (HFpEF) is a clinical syndrome whose pathophysiological mechanisms are incompletely understood, potentially due to a lack of preclinical models reflecting the broad range of pathophysiological aspects. We describe a diabetic DIO-STZ mouse model showing a pronounced HFpEF with underlying mechanisms that remarkably differ from other HFpEF models, making this model a relevant extension of the range of HFpEF models, especially for investigating molecular mechanisms or therapeutical interventions in diabetes.

Animals↗

Pregnancy outcome in the Psammomys obesus gerbil on low- and high-energy diets.

INTRODUCTION: Diabetes mellitus (DM) during pregnancy is associated with an increased risk for poor reproduction and a high rate of congenital malformations. The gerbil Psammomys obesus is a unique model for nutritionally induced Type 2 DM (T2DM) that enabled us to study the outcome of uncontrolled T2DM during pregnancy. METHODS: Female Psammomys on low-energy (LE) or high energy (HE) diet were studied. The blood glucose levels and weights of pregnant animals were determined. The offspring from the different groups were followed-up to weaning. RESULTS: Most of the HE-diet animals were diabetic (77%). There were no differences in the pregnancy rates in animals on both diets (32.7% in HE vs. 38.3% in LE). Pregnancy of the HE-diet group was longer than the LE-diet group (26.7 vs. 26.1 days), and litter average was reduced (2.7 vs. 3.0). At birth, the offspring of the HE-diet dams weighed less (5.2 vs. 7.2 g) and had smaller crown rump length (4.0 vs. 4.6 cm) These offspring also presented a 1-3 days delay in neuro-developmental parameters (first turn over, hair appearance, eye-opening and response to noise). However, from the fourth week of life they became diabetic, and from the third week they weighed more than the LE offspring. CONCLUSION: HE-diet caused diabetes, maternal complications and altered reproduction in Psammomys animals. The offspring of diabetic Psammomys presented birth weight and length changes as well as developmental delay.

Animal Feed↗

The metabolic effects of antipsychotic medications.

OBJECTIVES: To review current evidence for the hypothesis that treatment with antipsychotic medications may be associated with increased risks for weight gain, insulin resistance, hyperglycemia, dyslipidemia, and type 2 diabetes mellitus (T2DM) and to examine the relation of adiposity to medical risk. METHODS: We identified relevant publications through a search of MEDLINE from the years 1975 to 2006, using the following primary search parameters: "diabetes or hyperglycemia or glucose or insulin or lipids" and "antipsychotic." Meeting abstracts and earlier nonindexed articles were also reviewed. We summarized key studies in this emerging literature, including case reports, observational studies, retrospective database analyses, and controlled experimental studies. RESULTS: Treatment with different antipsychotic medications is associated with variable effects on body weight, ranging from modest increases (for example, less than 2 kg) experienced with amisulpride, ziprasidone, and aripiprazole to larger increases during treatment with agents such as olanzapine and clozapine (for example, 4 to 10 kg). Substantial evidence indicates that increases in adiposity are associated with decreases in insulin sensitivity in individuals both with and without psychiatric disease. The effects of increasing adiposity, as well as other effects, may contribute to increases in plasma glucose and lipids observed during treatment with certain antipsychotics. CONCLUSION: Treatment with certain antipsychotic medications is associated with metabolic adverse events that can increase the risk for metabolic syndrome and related conditions such as prediabetes, T2DM, and cardiovascular disease.

Antipsychotic Agents↗

Calpain-5 gene variants are associated with diastolic blood pressure and cholesterol levels.

BACKGROUND: Genes implicated in common complex disorders such as obesity, type 2 diabetes mellitus (T2DM) or cardiovascular diseases are not disease specific, since clinically related disorders also share genetic components. Cysteine protease Calpain 10 (CAPN10) has been associated with T2DM, hypertension, hypercholesterolemia, increased body mass index (BMI) and polycystic ovary syndrome (PCOS), a reproductive disorder of women in which isunlin resistance seems to play a pathogenic role. The calpain 5 gene (CAPN5) encodes a protein homologue of CAPN10. CAPN5 has been previously associated with PCOS by our group. In this new study, we have analysed the association of four CAPN5 gene variants(rs948976A>G, rs4945140G>A, rs2233546C>T and rs2233549G>A) with several cardiovascular risk factors related to metabolic syndrome in general population. METHODS: Anthropometric measurements, blood pressure, insulin, glucose and lipid profiles were determined in 606 individuals randomly chosen from a cross-sectional population-based epidemiological survey in the province of Segovia in Central Spain (Castille), recruited to investigate the prevalence of anthropometric and physiological parameters related to obesity and other components of the metabolic syndrome. Genotypes at the four polymorphic loci in CAPN5 gene were detected by polymerase chain reaction (PCR). RESULTS: Genotype association analysis was significant for BMI (p < or = 0.041), diastolic blood pressure (p = 0.015) and HDL-cholesterol levels (p = 0.025). Different CAPN5 haplotypes were also associated with diastolic blood pressure (DBP) (0.0005 < or = p < or = 0.006) and total cholesterol levels (0.001 < or = p < or = 0.029). In addition, the AACA haplotype, over-represented in obese individuals, is also more frequent in individuals with metabolic syndrome defined by ATPIII criteria (p = 0.029). CONCLUSION: As its homologue CAPN10, CAPN5 seems to influence traits related to increased risk for cardiovascular diseases. Our results also may suggest CAPN5 as a candidate gene for metabolic syndrome.

Blood Pressure↗

Uric acid: A new look at an old risk marker for cardiovascular disease, metabolic syndrome, and type 2 diabetes mellitus: The urate redox shuttle.

BACKGROUND: The topical role of uric acid and its relation to cardiovascular disease, renal disease, and hypertension is rapidly evolving. Its important role both historically and currently in the clinical clustering phenomenon of the metabolic syndrome (MS), type 2 diabetes mellitus (T2DM), atheroscleropathy, and non-diabetic atherosclerosis is of great importance. RESULTS: Uric acid is a marker of risk and it remains controversial as to its importance as a risk factor (causative role). In this review we will attempt to justify its important role as one of the many risk factors in the development of accelerated atherosclerosis and discuss its importance of being one of the multiple injurious stimuli to the endothelium, the arterial vessel wall, and capillaries. The role of uric acid, oxidative - redox stress, reactive oxygen species, and decreased endothelial nitric oxide and endothelial dysfunction cannot be over emphasized.In the atherosclerotic prooxidative environmental milieu the original antioxidant properties of uric acid paradoxically becomes prooxidant, thus contributing to the oxidation of lipoproteins within atherosclerotic plaques, regardless of their origins in the MS, T2DM, accelerated atherosclerosis (atheroscleropathy), or non-diabetic vulnerable atherosclerotic plaques. In this milieu there exists an antioxidant - prooxidant urate redox shuttle. CONCLUSION: Elevations of uric acid > 4 mg/dl should be considered a "red flag" in those patients at risk for cardiovascular disease and should alert the clinician to strive to utilize a global risk reduction program in a team effort to reduce the complications of the atherogenic process resulting in the morbid - mortal outcomes of cardiovascular disease.

Journal Article↗

The association between GLP-1R expression and cardiovascular-kidney-metabolic-related diseases in non-diabetic and non-obese population: evidence triangulation using Mendelian randomization, observational and polygenic score association analysis.

BACKGROUND: Glucagon-like peptide-1 receptor (GLP-1R) agonists are emerging as promising therapies for cardiovascular-kidney-metabolic (CKM) related diseases in individuals with type 2 diabetes mellitus (T2DM) or obesity. But their effects in non-obese and non-diabetic individuals are unclear. This study triangulates evidence using Mendelian randomization (MR), polygenic scores (PGS) and observational analyses to estimate the associations of GLP-1R expression with chronic kidney disease (CKD), heart failure (HF) and metabolic dysfunction-associated steatotic liver disease (MASLD). METHODS: For the MR analysis, instruments mimicking GLP-1R expression were identified using pancreas-specific cis-expression quantitative trait loci from GTEx (N&#x2009;&#x2264;&#x2009;305). MR-Robust method was used as the primary MR approach. PGS and observational analyses were performed both in non-diabetic and non-obese individuals separately. A genome-wide association study (GWAS) for MASLD (14,231 cases and 348,091 controls) was performed in the general population using data from UK Biobank. RESULTS: GLP-1R expression showed robust effects on CKD (odds ratio [OR] 0.96, 95%CI 0.95 to 0.97, q&#x2009;=&#x2009;1.7&#x2009;&#xd7;&#x2009;10-&#x2009;10 ), HF (OR&#x2009;=&#x2009;0.96, 95%CI 0.94 to 0.97, q&#x2009;=&#x2009;2.5&#x2009;&#xd7;&#x2009;10-&#x2009;8) and MASLD (OR&#x2009;=&#x2009;0.96, 95%CI 0.93 to 0.98, q&#x2009;=&#x2009;1.3&#x2009;&#xd7;&#x2009;10-&#x2009;3) in the general population. Consistent results were observed in validation analyses. Furthermore, PGS and observational analyses among non-T2DM and non-obese individuals found little evidence to support its association with CKD, HF or MASLD. GWAS analysis identified eight conditionally independent variants associated with MASLD, in which rs563199662 was a new signal located at TFPI region. CONCLUSIONS: This study provides multilayered evidence for GLP-1R expression in mitigating CKD, HF and MASLD risks in the general population, while de-prioritized its effect on CKM-related diseases in non-obese and non-diabetic individuals. Further clinical trials are needed to validate the effects of GLP-1R agonists in relative health population.

Humans↗

Stage-dependent proteomic alterations in aqueous humor of diabetic retinopathy patients based on data-independent acquisition and parallel reaction monitoring.

BACKGROUND: Diabetic retinopathy (DR), a microvascular complication of diabetes mellitus (DM), represents the predominant cause of preventable vision loss in working-age populations globally. While the pathophysiological mechanisms underlying DR progression remain incompletely understood, our study employs comprehensive proteomic profiling of aqueous humor (AH) to identify stage-specific biomarkers and therapeutic targets in type 2 diabetes mellitus (T2DM) patients across DR progression. METHODS: Utilizing data-independent acquisition (DIA) mass spectrometry, we quantified AH proteomes in a discovery cohort comprising 24 subjects: 18 T2DM patients stratified by DR severity [6 non-DR, 6 non-proliferative DR (NPDR), 6 proliferative DR (PDR)] and 6 cataract controls without diabetes (non-DM). Validation cohort analysis (including 10 AH samples in each group) was performed using parallel reaction monitoring (PRM) strategy for verification of target proteins. Comprehensive bioinformatics analyses included gene set enrichment analysis (GSEA), weighted gene co-expression network analysis (WGCNA), Kyoto encyclopedia of genes and genomes (KEGG) enrichment analysis, protein-protein interaction (PPI) network construction, receiver operating characteristic (ROC) curve analysis, and ConnectivityMap (Cmap)-based drug prediction. RESULTS: Proteomic profiling identified 739 quantifiable AH proteins (62% extracellular) with clear separation among the four clinical stages in the discovery cohort. GSEA uncovered altered expression of proteins mainly related to complement and coagulation cascades, folate metabolism, and the selenium micronutrient network in patients with DR. WGCNA-derived protein modules yielded 83 PRM-validated targets, including 5 hub proteins differentiating NPDR from non-DR and 33 hub proteins showed significant upregulation in PDR versus NPDR comparison. Clinical correlation analysis identified F2, FGG, FGB, RBP4, AMBP, VTN, C8A, CPB2, and C2 associated with clinical traits. C6, FAM3C, SPP1, and JCHAIN levels were altered post-anti-VEGF treatment. Pharmacological prediction identified potential therapeutic compounds, including perindopril, triciribine, and XAV-939 for NPDR, and topiramate, triciribine, and vecuronium for PDR. CONCLUSION: This study established a comprehensive AH proteomic signature of DR progression, offering insights into the pathogenesis of DR and highlighting potential biomarkers and novel therapeutic targets.

Humans↗

SOX13 autoantibodies are likely to be a supplementary marker for type 1 diabetes in Korea.

The SOX13, one of the family of transcription factors that play key roles in organ development, is reported to be a diabetes autoantigen, islet cell antigen 12 (ICA12). Recently, a study of antibodies to SOX13 was conducted in patients with type 1 diabetes mellitus (T1DM) indicating that these antibodies potentially identified patients without antibodies to the major T1DM-associated autoantigens, insulin, GAD, or IA-2. We know that the prevalence of islet-specific autoantibodies (GAD, IA-2) in Korean patients is much lower than that in white patients. It may be possible that other autoantibodies that could be directed to as yet unknown antigen may play a role in Korean T1DM patients. To investigate this, we measured SOX13 autoantibodies applying a radioligand binding assay using in vitro transcribed and translated antigen in 188 T1DM patients (mean duration, 4.2 years) and 64 T2DM patients and compared the results with those of 101 healthy control subjects. SOX13 autoantibodies occurred at a significantly higher frequency among T1DM patients (55/188, 29.3%) than among T2DM patients (4/64, 6.2%) or healthy adult controls (1/101, 1%). The 55 patients with positive SOX13 antibodies had significantly shorter duration of diabetes than SOX13 antibody-negative patients (3.6 +/- 2.8 vs. 4.5 +/- 3.9 years; p < 0.05). We could detect a prevalence similar to control in patients with Hashimoto's thyroiditis (4.9%, n = 101) and rheumatoid arthritis (6.7%, n = 89). As a whole, 44 of the 55 patients with SOX13 antibodies had at least one or more other autoantibodies to the major T1DM-associated autoantigens. However, SOX13 antibodies were the only antibodies detected as positive in 1 of the 11 new-onset patients. We conclude, therefore, that these antibodies are likely to be one of several epitope-spreading responses to islet- or nonislet-specific autoantigens seen in the development of T1DM, and they may be used as a supplementary marker for investigating T1DM in Korea.

Adolescent↗

Leptin levels in diabetic and nondiabetic subjects.

The role of leptin in human pathophysiology elicits considerable interest in view of its potential role as a treatment tool for obesity and other insulin resistant states, like type 2 diabetes mellitus (T2DM). Leptin has been extensively studied in obese humans, and much less so in other pathologic conditions. Leptin level has been reported to correlate with percent body fat mass (%FM), fasting serum insulin (FPI), insulin sensitivity and blood pressure. The aim of this study was to compare the leptin concentration, and its relationship with some anthropometric and biochemical parameters related to insulin resistance in 140 moderately obese type 2 diabetics (T2DM) and 160 age and weight matched non-diabetic controls in order to get a better insight into the possible role of leptin in the metabolic abnormalities of diabetes. The leptin levels were lower in the diabetic population only when both sexes were combined (p < 0.05) and were higher in the females of both groups. Among the nondiabetics, the leptin levels appeared to be related to BMI, %FM, HDL and FPI, while this was not the case in the diabetics. After correction for BMI, leptin appeared to be correlated with the FPI levels only in the non-diabetic females. When plasma leptin was included in a multiple linear regression model with plasma leptin as a dependent variable, BMI, W:Hr and FPI levels were significantly related to leptin in the non diabetic population, while no relationship reached the level of statistical significance among the diabetics, with the exception of the borderline value for the FPI (p = .052). In conclusion, leptin levels were independent of any of the parameters examined in our diabetic population, possibly due to the progressive loss of the normal mechanisms of leptin regulation with advancing disease. Conclusive data can only be obtained from the longitudinal study of a cohort of newly diagnosed diabetic subjects.

Aged↗

Autoantibodies against oxidized low-density lipoprotein (ox-LDL) and LDL oxidation status.

Oxidized low-density lipoproteins (ox-LDLs) and their autoantibodies (OLAB) are involved in the development of atherosclerosis in animal models, but their role in humans is still not clear. For this reason we studied 54 patients with beta-thalassemia major (TM), as a model of chronically low circulating LDLs with a high level of oxidation; 44 patients with primary hypercholesterolemia, as model of chronically high circulating LDLs; 24 type 2 diabetic mellitus patients (T2DM) before and after 3 months of atorvastatin treatment (20 mg/day), as a model of acute changes in circulating LDLs; and 41 normolipidemic subjects as a control group. ox-LDLs were measured by the determination of baseline diene concentration in the plasma LDL lipidic fraction after 12 hours fasting and were expressed as the amount of conjugated dienes/ liter (BDC/I) or BDC/LDL-cholesterol (LDL-C), which indicate respectively LDL oxidation degree and status. OLAB were determined using an enzyme immunoassay and related to LDL oxidation degree (BDC/I). In TM, BDC/I was lower, while BDC/LDL-C was significantly higher, compared to both hypercholesterolemia and normolipidemic subjects. Patients with hypercholesterolemia had higher BDC/I, but lower BDC/LDL-C and OLAB/BDC-I, than normolipidemic subjects. In T2DM patients at diet, BDC/LDL-C and OLAB/BDC-I were lower than in normolipidemic subjects. After 3 months of atorvastatin treatment, BDC/ LDL-C and OLAB/BDC-I ratios increased. When all patients were evaluated together, a significant inverse correlation was evident between OLAB and either LDL or BDC/I. Our findings suggest that a relationship between OLAB titer and oxidation indices (BDC/I and BDC/LDL-C) does exist and we may speculate that an increase in OLAB/BDC-I ratio might be protective against the risk of atherosclerosis.

Adolescent↗