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At least 19 recordsLinked to original sources

Capsaicin ameliorates glycemic levels via gut microbiota-derived 5-aminolevulinic acid in mice.

BACKGROUND: Capsaicin, a natural alkaloid in chili peppers, regulates glycemic levels; however, its mechanisms and therapeutic potential remain unclear. This study aimed to elucidate the role of gut microbiota and their metabolites in mediating capsaicin's glycemic regulatory effects. We conducted experiments in specific pathogen-free (SPF) and germ-free (GF) mice, transient receptor potential vanilloid 1 (TRPV1) receptor ablation studies, and fecal microbiota transplantation (FMT) to demonstrate the involvement of gut microbiota in capsaicin-mediated glycemic control. Metagenomics and metabolomics analyses were employed to identify key microbial strains and metabolic pathways. Keystone strains and metabolites were supplemented in GF mice without capsaicin intervention to validate their effects on glycemic regulation. In vitro co-culture experiments were performed to investigate the mutualistic relationships among keystone strains under capsaicin treatment. RESULTS: Gut microbiota constitute an important component of capsaicin-mediated glycemic regulation, acting in concert with but not solely dependent on TRPV1 signaling. Gut microbiota altered by capsaicin promote the production of 5-aminolevulinic acid (5-ALA), which contributes to heme synthesis and enhances glycemic control. Supplementation with Akkermansia muciniphila, Ligilactobacillus murinus, or 5-ALA in GF mice recapitulates the glycemic benefits of capsaicin. Furthermore, capsaicin enriches Akkermansia muciniphila, which in turn supports the growth of Ligilactobacillus murinus. CONCLUSION: Capsaicin-induced changes in the gut microbiota promote 5-ALA synthesis, leading to improved glycemic control. These findings suggest that dietary or probiotic interventions targeting gut microbiota, particularly Akkermansia muciniphila and 5-ALA, may offer promising strategies for managing glycemic disorders, including type 2 diabetes (T2D). Video Abstract.

Animals

Glycosylated hemoglobins and diabetes mellitus.

Glycosylated hemoglobins result from post-translational changes in the hemoglobin molecule, and their levels correlate well with glycemic levels over the previous six to 10 weeks. Their use as an aid in monitoring diabetic control appears to be well established, but their value in predicting complications of diabetes and in diagnosing milder forms of diabetes is as yet unknown. Of the numerous methods available for the analysis of glycosylated hemoglobins, none has been evaluated extensively in a routine laboratory setting. However, liquid chromatography, isoelectric focusing, and radioimmunoassay techniques all give adequate results. For the purposes of monitoring long term diabetic control, assay of the fast hemoglobin fraction (AIa+b+c) appears adequate. However, for investigative purposes, when optimal sensitivity may be required, specific measurement of hemoglobin AIc is recommended.

Adult

[Low doses of insulin--comparison between hyperosmolar nonketotic coma and diabetic ketoacidosis (author's transl)].

The authors present a comparison between the results achieved in the treatment of 11 cases of nonketotic hyperosmolar "coma" and 13 cases of diabetic ketoacidosis using low doses of intramuscular insulin hourly. Surprisingly both, larger amounts of insulin and longer periods were needed to compensate the metabolic disturbance of the nonketotic hyperosmolar "coma" cases when compared to the ketoacidosis ones. The data obtained in this study suggest a possible direct relationship between the initial urea levels and the total amount of insulin needed to reduce the initial glycemia to a normal glycemic level.

Adult

Treatment preference for once-weekly versus once-daily DPP-4 inhibitors in patients with type 2 diabetes mellitus: a systematic review and meta-analysis of randomized controlled trials.

BACKGROUND/OBJECTIVE: Although once-weekly and once-daily DPP-4 inhibitors have gained widespread market recognition, patient preference differences remain a key focus. This meta-analysis compares treatment preferences for once-weekly versus once-daily DPP-4 inhibitors in T2DM, offering evidence to guide clinical decisions and healthcare policies. METHODS: PubMed, OVID, EBSCO, Web of Science, CNKI, Wanfang, and clinical trial registries were searched up to June 30, 2025. After screening literature against predefined criteria, a systematic review was conducted to compare the effects of once-weekly and once-daily DPP-4 inhibitors on the treatment preferences of patients with T2DM. RESULTS: 8 RCTs with 1,575 participants were analyzed. No significant difference in medication adherence and DTSQ total score between the once-weekly and once-daily groups (p > 0.05). HbA1c percentage (MD = -0.21, 95% CI [-0.42, -0.01], p < 0.05) decreased significantly with once-weekly dosing, while GA and FPG showed no change (p > 0.05), this suggests greater improvement in HbA1c percentage levels following a switch to once-weekly DPP-4 inhibitors. Once-weekly DPP-4 inhibitors showed higher musculoskeletal/connective tissue disorder risk (RR = 2.63; 95% CI [1.18, 5.83]), but no significant differences in other adverse events (p > 0.05). No significant differences in treatment burden between both groups (p > 0.05). CONCLUSION: No statistically significant association between treatment preferences for once-weekly versus once-daily DPP-4 inhibitors among T2DM patients and medication adherence, treatment satisfaction, glycemic level changes, safety, or treatment burden for these two dosing regimens. Further research is needed to elucidate the influence of physician prescribing behavior on these preferences.

Humans

Insulinoma in a pregnant woman.

The case of a 37-year-old primigravida suffering from severe hypoglycemia due to insulinoma is reported. Diagnosis was established on clinical grounds by assessment of inappropriate insulin release. Laparotomy was performed by the 12th gestational week. A wide distal pancreatectomy was carried out, and histopathologic study proved the existence of multiple islet cell adenomatosis. Glycemic levels and insulin secretion returned to normal immediately after surgery. The course of pregnancy was unhampered, judged by clinical criteria and by serial estimations of human chorionic somatomammotropin levels before and after removal of the insulin-producing tumor. A normal female infant was delivered at term, and no histopatholgic changes were detected in the placenta. After 1 year, clinical and analytical evaluation of both mother and child was normal.

Adenoma, Islet Cell

Impact of sodium-glucose cotransporter-2 inhibitors on aging biomarkers and plasma ceramide levels in type 2 diabetes: beyond glycemic control.

BACKGROUND: Aging is a complex biological process marked by the decline of physiological functions and heightened susceptibility to chronic illnesses, notably cardiometabolic disorders. Ceramides (Cer) are lipid derivatives linked to aging and metabolic diseases. Sodium-Glucose Cotransporter-2 inhibitors (SGLT2i), widely used in managing type 2 diabetes, have an unclear impact on aging biomarkers and Cer profiles. OBJECTIVE: This study explored the association between SGLT2i use, plasma Cer levels (CerC16:0, CerC18:0, CerC22:0, CerC24:0, and CerC24:1), and aging biomarkers-Human Insulin-Like Growth Factor 1 (IGF-1), mammalian target of rapamycin (mTOR), 5-Methylcytosine (5MC), and Human H2AFX (Histone H2AX) in patients with type 2 diabetes mellitus (T2DM). METHODS: In this retrospective study, 95 participants were divided into three groups: patients on SGLT2i (n&#x2009;=&#x2009;34), patients on non-SGLT2i anti-diabetic treatments (n&#x2009;=&#x2009;36), and healthy controls (n&#x2009;=&#x2009;25). Plasma Cer and aging biomarkers were quantified using Liquid Chromatography with tandem mass spectrometry (LC-MS-MS) and ELISA, respectively. Principal component analysis (PCA) assessed group-based clustering, while ANCOVA evaluated group differences with confounder adjustment. RESULTS: SGLT2i-treated patients showed significantly lower CerC16:0, CerC22:0, and CerC24:1 levels (p&#x2009;<&#x2009;0.01) and decreased 5MC and H2AX (p&#x2009;<&#x2009;0.05) compared to non-SGLT2i patients. IGF-1 was significantly elevated in the SGLT2i group (p&#x2009;<&#x2009;0.01), suggesting a possible protective effect on metabolic health. PCA distinguished control from diabetic groups but revealed overlap between SGLT2i and non-SGLT2i groups. CONCLUSION: Beyond glucose control, SGLT2i may improve plasma Cer and aging markers in diabetic patients, supporting their broader therapeutic potential in aging and age-related diseases. Further large-scale studies are warranted to confirm these effects and underlying mechanisms.

Humans

lncRNA TUG1 transcript levels and psychological disorders: insights into interplay of glycemic index and glycemic load.

BACKGROUND: There is an association between obesity and psychological disorders such as depression, anxiety, and stress. Environmental factors and genetics play a crucial role in this regard. Several long non-coding RNAs (lncRNAs) are involved in the pathophysiology of the nervous system. Additionally, we intend to investigate how dietary glycemic index and load relate to psychological disorders in women with obesity and overweight by identifying the possible interaction with metastasis-associated lung adenocarcinoma transcript 1 (MALAT1) and taurine upregulated gene 1 (TUG1). METHODS: 267 overweight or obese women between the ages of 18 and 48 were recruited for the current study. A reliable and validated food frequency questionnaire (FFQ) consisting of 147 items assessed food consumption, glycemic load (GL), and glycemic index (GI). Depression-Anxiety-Stress Scales (DASS-21) were used to assess mental well-being. A real-time polymerase chain reaction (PCR) was used to assess transcript levels for lncRNAs MALAT1 and TUG1. RESULTS: In obese and overweight women, a positive correlation was found between anxiety and MALAT1 mRNA levels (P&#x2009;=&#x2009;0.007, CC&#x2009;=&#x2009;0.178). Age, energy intake, physical activity, total fat, income, marriage, thyroid, and BMI were adjusted, and GI and TUG1 were positively correlated on DASS-21 (&#x3b2;&#x2009;=&#x2009;0.006, CI&#x2009;=&#x2009;0.001, 0.01, P&#x2009;=&#x2009;0.031), depression (&#x3b2;&#x2009;=&#x2009;0.002, CI&#x2009;=&#x2009;0.001, 0.004, P&#x2009;=&#x2009;0.019), Stress (&#x3b2;&#x2009;=&#x2009;0.003, CI&#x2009;=&#x2009;0.001, 0.005, P&#x2009;=&#x2009;0.027). The interaction of GL and TUG1 on stress was also observed (&#x3b2;&#x2009;=&#x2009;0.03, CI&#x2009;=&#x2009;0.001, 0.07, P&#x2009;=&#x2009;0.048). CONCLUSIONS: The lncRNA TUG1 appears to be associated with depression and stress through interaction with GI and correlated with stress by interaction with GL. To establish this concept, further research is required.

RNA, Long Noncoding

[Evaluation of diabetes control by new numerical indices of daily blood glucose values].

Attempts to assess the degree of diabetic control by numerical expressions of blood glucose behaviour have been performed by Schlichtkrull et Al. (M-Ms value) and by Molnar, Service et Al. (MAGE, MODD, MBG and FBG values). However these methods, partly derived from the results of continuous blood monitoring, fail to give qualitative information about the glycemic daily profile. In order to obtain a more complete estimation of the diurnal blood sugar curve, a simple set of three indices is introduced by our group: 1) the Mbs value (modified); 2) the mean difference (delta value) of the various Mbs/bs calculated with a HP 25 Hewlett-Packard, and 3) the mean of the differences, exceeding delta, which are between contiguous Mbs/bs (M delta value). This investigation was carried out in 103 diabetic observations, on the basis of eight blood-sugar daily determinations (Destrostix Reflectance Meter) on two successive twenty-four-hour periods, under standard conditions of diet, exercise and therapeutic regimen. As the results show, modified Mbs describes the mean level of the glycemic profile; delta indicates the amplitude of the glycemic variability field; M delta reports both maximal and minimal extremes of the curve. A correlation of these parameters is expressed by a formula, which might distinguish stable from unstabel ("brittle") diabetes and allow clinical comparison in different treatment conditions.

Aged

Role of glucagon in the pathogenesis of diabetes: the status of the controversy.

The current controversy concerning the role of glucagon in the pathogenesis of diabetes is reviewed. The traditional "unihormonal abnormality concept," namely, that all of the metabolic derangements of diabetes are the direct consequence of deficient insulin secretion or activity, and the newer so-called bihormonal abnormality hypothesis, proposing that the fullblown diabetic syndrome requires, in addition to the insulin abnormality, a relative glucagon excess, are scrutinized. The relationship of insulin deficiency to the A-cell malfunction of diabetes, the conflicting evidence concerning the essential role of glucagon in mediating the marked overproduction of glucose and ketones in severe insulin deficiency and the contribution of glucagon to the endogenous hyperglycemia of diabetics without insulin deficiency are examined. Finally, the possibility that therapeutic suppression of diabetic hyperglucagonemia may make possible better control of hyperglycemia than is presently attainable by conventional therapeutic methods is considered. It is concluded that (1) although insulin lowers glucagon levels, restoration to normal of the A-cell dysfunction of diabetes requires that plasma insulin levels vary appropriately with glycemic change; (2) that glucagon mediates the severe endogenous hyperglycemia and hyperketonemia observed in the absence of insulin; (3) that in diabetics in whom insulin is present but relatively fixed an increase in glucagon causes hyperglycemia and glycosuria; and (4) that glucagon suppression could be a potentially useful adjunct to conventional antihyperglycemic treatment of diabetics.

Alanine

Multiomics: the intersection of personalized nutrition in cardiometabolic diseases.

BACKGROUND: Cardiometabolic diseases are among the leading causes of increasing morbidity and mortality worldwide. However, current population-based dietary recommendations do not sufficiently account for biological differences between individuals and therefore do not have the same effect on everyone. The multiomic approach, which incorporates genomic, epigenomic, transcriptomic, proteomic, metabolomic, and microbiome data, facilitates more accurate classification of disease risk and selection of appropriate nutritional interventions by mapping food-disease relationships across different biological layers. METHODS: Through a narrative synthesis of the current literature, we focused on evidence from multiomic studies to assess their ability to guide personalized nutrition strategies based on individual genetic, metabolic, and microbiome characteristics in cardiometabolic diseases. RESULTS: Recent evidence indicates that metabolomic markers have been reported to provide predictive value in addition to classic risk indicators and to increase the predictive power of models when combined with genetic data. Microbiome research shows that glycemic and lipemic responses can be predicted using algorithms based on gut microbiota. Recent clinical studies show that personalized nutrition plans, which evaluate the microbiome and clinical characteristics together, improve continuous glucose monitoring-based glycemic control, glycated hemoglobin levels, and triglycerides more than the classic Mediterranean diet. CONCLUSION: This review summarizes the current multiomic evidence, discusses the methodological and practical challenges in this field, and highlights future priorities. The integration of digital biomarkers obtained from wearable technologies with multiomic systems and artificial intelligence-supported models, when developed in accordance with ethical and equitable access principles, has the potential to support the transition from the discovery phase to patient-centered clinical applications.

Humans

Ambulatory diabetes management by a pulse of subcutaneous insulin delivered by a portable pump: preliminary report.

Two teenage patients, who had severe psychosocial problems that complicated their diabetes management, were treated for one month (14-year-old girl) and two months (16-year-old boy) by frequent pulses of insulin injected subcutaneously by a portable, programmed pump. Additional pulses were manually adjusted by the patient before eating. Both patients experienced improved sense of well-being, marked reduction in urine volume and in glycosuria, and reduced glycemic excursions and average levels. The boy had accelerated linear growth and a decreas in HbA1 percentage. Despite marked clinical improvement, permitting return to school, the girl was impelled to interrupt pump administration after two weeks. Both patients continue to use the device voluntarily; a smaller unit, however, that doesn't have the conspicuous external controls, would likely be readily acceptable to most young patients.

Adolescent

Changes in weight and metabolic health during and after cessation of a time-restricted feeding plus aerobic training in Swiss mice fed a high-fat diet.

Obesity is a chronic disease, representing a significant health problem worldwide. Unhealthy eating habits and sedentarism are key contributors to the development of obesity. Dietary and exercise strategies are the first-line therapies for weight loss or maintenance and have proven effective in controlling weight. However, long-term adherence is challenging, and rapid weight regain often follows intervention cessation. In mice, time-restricted feeding (TRF) and exercise (EXE) independently prevent weight gain and maintain metabolic health, yet weight regain is observed upon cessation. Whether combining TRF and EXE provides longer-lasting benefits remains unclear. Here, we assessed weight and metabolic parameters in Swiss male mice fed with a high-fat diet (HFD) during an 8-wk intervention of TRF (8-h food access in the active phase) or TRF combined with EXE (60-min treadmill running daily) and after cessation and transfer to ad libitum feeding. TRF and EXE interventions successfully mitigate weight gain, improve glycemic homeostasis, and attenuate lipid accumulation in the liver and adipose tissue hypertrophy compared to mice fed HFD ad libitum. However, cessation of both strategies led to rapid weight regain, impaired glycemic control, and increased circulating lipid levels. Although the combination of TRF and EXE led to the lowest body weight and best metabolic health, this group showed no protection against the metabolic impairments observed after TRF cessation alone. In conclusion, TRF and EXE are complementary strategies for managing metabolic health, but cessation of these interventions leads to rapid weight regain and metabolic deterioration, with only partial preservation of select metabolic adaptations. These findings underscore the critical need for sustained adherence to lifestyle interventions in obesity management.NEW & NOTEWORTHY This study demonstrates that combining time-restricted feeding with aerobic training improves weight and metabolic health in Swiss mice fed a high-fat diet. Importantly, we show that most metabolic benefits are lost after intervention cessation. However, insulin sensitivity and aspects of hepatic lipid metabolism are partially maintained after cessation of the intervention. These findings provide new insight into the durability of metabolic improvements induced by lifestyle interventions and highlight the potential of combined dietary and exercise strategies to counteract diet-induced obesity and metabolic dysfunction.

Animals

The tissue-specific effects of glucose-lowering drug targets on aging mediated through DNA methylation: a multi-omics genetic study.

BACKGROUND: DNA methylation plays a key role in mediating the anti-aging effects of glucose-lowering drugs. This study aims to systematically explore the potential anti-aging effects of target genes of FDA-approved glucose-lowering drugs and the underlying epigenetic mediators. METHODS: We conducted a two-sample Mendelian randomization (MR) study to investigate the putative causal relationships between the gene expression levels of glucose-lowering drug targets and 10 aging-related phenotypes, followed by a two-step MR to estimate the mediation effect of DNA methylation. Drug candidates were selected according to the latest review of clinical drug use for type 2 diabetes, and their target genes were obtained from the DGIdb. Tissue-specific cis-expression quantitative trait loci (eQTLs) from GTEx Consortium were selected as genetic instruments to proxy the expression level of drug-target genes. Glycemic phenotypes were used as positive controls to validate the instruments. The cis- and trans-methylation QTLs of Cytosine-phosphate-Guanine sites near the drug target genes were obtained from GoDMC Consortium. Additionally, we performed enrichment analyses focused on tissue specificity and aging pathways to further corroborate our findings. RESULTS: We obtained 194 target genes interacting with 36 FDA-approved anti-diabetic drugs, of which the tissue-specific eQTLs were used to proxy the drug target effects. MR showed strong evidence that nine interacting genes of six glucose-lowering drugs showed anti-aging potential on one or more aging-related phenotypes mediated by DNA methylation: EHMT2, HSPA4, IGF2BP2, IRS1, LPL, NDUFAF1, NDUFS3, SLC22A3, and TCF7L2. These genes were distributed in 17 tissues, especially in the central nervous system, suggesting a potential neural component in their anti-aging effects. For instance, expression of EHMT2 in several brain basal ganglia regions, where the gene interacted with Tolazamide, showed a protective effect on frailty (odds ratio (OR) in caudate&#x2009;=&#x2009;1.02, 95%CI&#x2009;=&#x2009;1.01-1.04, FDR adjusted P&#x2009;=&#x2009;1.69&#x2009;&#xd7;&#x2009;10-2; OR in putamen&#x2009;=&#x2009;1.02, 95% CI&#x2009;=&#x2009;1.01-1.03, PFDR&#x2009;=&#x2009;3.37&#x2009;&#xd7;&#x2009;10-2, OR in nucleus accumbens&#x2009;=&#x2009;1.02, 95% CI&#x2009;=&#x2009;1.01-1.04, PFDR&#x2009;=&#x2009;3.37&#x2009;&#xd7;&#x2009;10-2). These associations were externally validated by searching literature evidence in existing EWAS and TWAS studies, as well as evidence from enrichment analyses. CONCLUSIONS: This study prioritizes nine glucose-lowering genes as anti-aging drug targets in specific tissues and prioritizes their epigenetic regulation through DNA methylation for future drug development.

DNA Methylation

Effect of intravenous L-alanine administration on plasma glucose, insulin and glucagon, blood pyruvate, lactate and beta-hydroxybutyrate concentrations in newborn infants. Study in term and preterm newborn infants.

Ten term and eleven preterm newborn infants with appropriate weights for their gestational age were infused for one minute with L-alanine (150 mg/kg) at the age of 29 to 76 hours (mean 48 hours) and circulating levels of glucose, lactate, pyruvate, D-betahydroxybutyrate (D-BOHB), insulin and glucagon were monitored. Plasma glucose concentrations increased from 2.7 +/- 0.16 (mean +/- S.E.M.) to 3.7 +/- 0.2 mmol/l after 50 min (p less than 0.01) in term infants. In preterm infants, after an initial decrease of the glucose level from 3.1 +/- 0.16 to 2.6 +/- 0.16 mmol/l (p less than 0.05), it returned to the baseline level at 50 min: 3.0 +/- 0.2 mmol/l. The blood concentration of D-BOHB decreased in term infants from 192 +/- 37 to 112 + 6 micrometer/l (p less than 0.01) after 40 min. In preterms, its decrease was not significant (p greater than 0.05). Plasma glucagon level rose from 53 +/- 5 to 70 +/- 8 pmol/l after ten minutes (p less than 0.01) in terms infants and from 61 +/- 6 to 75 +/- 9 after 20 min (p less than 0.01) in preterm infants. There were no significant changes in plasma insulin concentrations in either group. Forty minutes after L-alanine infusion, I/G ratios were lower in preterm infants (1.26 +/- 0.14) than in term infants (1.71 +/- 0.25) (p less than 0.01). There was no relationship between the glycemic responses to L-alanine and the basal levels of D-BOHB. The data suggest that the glycemic effect of L-alanine infusion and circulating glucagon depends upon a specific stage in maturation. The antiketogenic effect of L-alanine infusion is observed in term infants as in adults.

Alanine

Comparison of peripheral and portal routes of insulin infusion by a computer-controlled insulin infusion system (artificial endocrine pancreas).

This study was undertaken to determine the different consequences of portal and peripheral routes of insulin administration by the artificial endocrine pancreas. Intraportal glucose was infused (10 mg./min./kg. for 60 minutes) in anesthetized normal and pancreatectomized dogs while blood glucose concentrations were monitored continuously. During computer-controlled insulin administration normal glucose tolerance was restored by both portal and peripheral routes of insulin delivery. There were also no significant differences in (1) glycemic patterns, (2) insulin infusion patterns, (3) peripheral IRI levels, and (4) total insulin requirements between the two routes. It is apparent that the peripheral route, which is more readily accessible than the portal route, may be an appropriate infusion site for an implantable or portable prosthesis for controlling blood glucose concentration.

Animals

Physiological and clinical aspects of circadian variations in glucose tolerance.

Significance of the circadian periodicity in glucose tolerance has been presented from physiological and clinical points of view in mechanisms responsible for this periodicity of which afternoon glucose intolerance is most evident. In healthy subjects, circadian fluctuations in insulin secretion and in sensitivity to insulin at tissue level are dominating. Circadian oscillations in insulin response to a glycemic stimulus as well as inherent periodicity in activity of the beta cells have been demonstrated by many authors.

Adolescent

[Effect of catecholamines on the metabolism of glucose, fatty acids and on the heart rate in goats].

In goats of the Bohemian white breed the effects of increasing doses of adrenaline and noradrenaline on the changes of glycemia, the NEFA level in the plasma, and on changes of the cardiac frequency were investigated. The reaction of the cardiac frequency to i. v. applications of adrenaline and noradrenaline corresponded, as a matter of fact to the reaction observed in monogastric animals. Between adrenaline doses of 6.25 and 12.5 mug kg(-1) no conclusive difference was recorded in the effect on an increase of glycemia. Only in the case of the application of adrenaline in a dose of 25.0 mu kg(-1) there occurred a conclusively higher response of glycemia compared with the lower doses. In the case of noradrenaline no dependence on concentration was recorded in the glycemic response. Between the applied dose of both catecholamines and the increased NEFA level no dependence on concentration was observed. No interaction between the acting of adrenaline and insulin was recorded. The results obtained indicate that adrenaline and insulin affect the cardiac frequency and the level of glycemia independently from each other.

Animals

[Raised glucagon levels of the blood induced by arginine: relation to blood sugar, blood insulin and STH in aged non-diabetics and diabetics].

In a group of aged nondiabetic and diabetic subjects and in a group of young subjects the glycemic, insulin, growth hormone and glucagon response to intravenous arginine was studied. A prompt increase in blood glucose, serum insulin and glucagon levels was observed, but glucose and glucagon peaks were significantly higher in older non diabetic and diabetic subjects. Growth hormone secretion did not show any difference between aged nondiabetic and young subjects, on the contrary it is lower in diabetics. These findings might suggest the hypothesis of the glucose intolerance during old age due to increased release of glucagon.

Adult