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Biomedical subjects

T R Csorba

Publications and source records attributed to T R Csorba.

8 recordsLinked to original sources

The genetics and pathophysiology of type II and gestational diabetes.

The development of both type II diabetes and gestational diabetes is probably governed by a complex and variable interaction of genes and environment. Molecular genetics has so far failed to identify discrete gene mutations accounting for metabolic changes in NIDDM. Both beta cell dysfunction and insulin resistance are operative in the manifestation of these disorders. Specific and sensitive immunoradiometric assays found fasting hyperproinsulinemia and first-phase hypoinsulinemia early in the natural history of the disorder. A lack of specificity of early radioimmunoassays for insulin resulted in measuring not only insulin but also proinsulins, leading to overestimation of insulin and misleading conclusions about its role in diabetes. The major causes of insulin resistance are the genetic deficiency of glycogen synthase activation, compounded by additional defects due to metabolic disorders, receptor downregulation, and glucose transporter abnormalities, all contributing to the impairment in muscle glucose uptake. The liver is also resistant to insulin in NIDDM, reflected in persistent hepatic glucose production despite hyperglycemia. Insulin resistance is present in many nondiabetics, but in itself is insufficient to cause type II diabetes. Gestational diabetes is closely related to NIDDM, and the combination of insulin resistance and impaired insulin secretion is of importance in its pathogenesis.

Diabetes Mellitus, Type 2↗

Proinsulin: biosynthesis, conversion, assay methods and clinical studies.

Insulin, like other secretory peptides, is synthesized via a larger and less active precursor, proinsulin, converted in the beta cell by sequential limited proteolysis to insulin and C-peptide which are stored in secretory granules. Since this process is incomplete, some intact and partially processed proinsulins with variable biological and immunological activities remain trapped in the granules and enter the circulation with insulin, resulting in the heterogeneity of plasma immunoreactive insulin (IRI). Whereas methods measuring proinsulin from corrected IRI in sera fractionated by gel chromatography were not sufficiently sensitive and specific, immunoradiometric assays (IRMA) now allow reliable determinations of proinsulin, split proinsulins and true insulin and thereby the monitoring of the dynamics of conversion in various diabetic states. The recent finding of increased 32,33-split proinsulin associated with absolute true insulin deficiency, correlated with cardiovascular risk factors in Type II diabetics, sheds new light on the molecular pathology of noninsulin-dependent diabetes.

Chemistry Techniques, Analytical↗

Higher molecular weight insulin precursors as autoantigens in type I diabetes.

Hypothetically, the formation of abnormal insulin precursors due to genetic and/or acquired disorders would result in autoantigens by virtue of the altered tertiary structure. These are unlikely to be accessible to the converting enzymes which in turn should produce extended exposure to the immune system. Subsequent humoral and cell-mediated immune response might thus initiate or aggravate the autoimmune destruction of B-cells in subjects genetically susceptible to Type I diabetes.

Autoantigens↗