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Biomedical subjects

T Koschinsky

Publications and source records attributed to T Koschinsky.

At least 19 recordsLinked to original sources

High dose supplementation of RRR-alpha-tocopherol decreases cellular hemostasis but accelerates plasmatic coagulation in type 2 diabetes mellitus.

BACKGROUND: Diabetes mellitus is associated with increased generation of free oxygen radicals and depleted scavenging potential (oxidative stress), leading to increased LDL oxidation and platelet hyperreactivity, the major components of atherothrombotic vascular lesions. A main goal of antioxidant therapy is to protect the LDL particle from atherogenic oxidation and to reduce the activated cellular hemostasis. METHODS: We evaluated the influence of a high dose supplementation with 800 IU of the natural antioxidant RRR-alpha-tocopherol (vitamin E) per day for six months on serum levels, vitamin E load of LDL particles (HPLC), lag phase of LDL oxidation (Esterbauer's assay), platelet adhesion molecules, leukocyte-platelet coaggregation (flow cytometry, D-III protocol) and coagulation (INR/PTT) in a group of 36 patients with type 2 diabetes (f/m 22/14; age 58+/-8.0; HbA1 at baseline 10.25+/-1.7). RESULTS: Average vitamin E levels increased 2.65-fold accompanied by a 1.83-fold increase of LDL-associated vitamin E and a 12.3 min prolongation of the lag-phase of LDL oxidation (p<0.001 for all parameters at six months). Platelet expression of PECAM-1 (CD31) (-30.2% positive cells, p<0.001; antigen density -25%, p<0.001), ICAM-2 (CD102) (-2.9% positive cells, p<0.01; antigen density -10.6%, p<0.001) and fibrinogen (-1.6% positive cells, p<0.001; antigen density - 16.1 %, p<0.001) decreased. Concomitantly, platelet-leukocyte-coaggregation increased by 44% (p<0.001), correlating to an INR reduction of 10.4% (1.06+/-0.09 to 0.95+/-0.09, p<0.001, r = - 0.34). The PTT remained constant. CONCLUSION: The antioxidant protection from the increased vitamin E was accompanied by a decreased expression of constitutive and function-dependent platelet adhesion molecules. However, increases in platelet-leukocyte coaggregates and a shortened INR time suggest extrinsic coagulation activation, possibly by induction of a leukocyte tissue factor dependent mechanism. High dose supplements of alpha-tocopherol may override the available redox balance in well controlled type 2 diabetes. However, intrinsic effects of alpha-tocopherol must be discussed.

Aged↗

[Long-term management of the diabetic patient: what is important?].

Diabetes mellitus ist a typical example of a chronic disease that requires life-long treatment by a team of various specialists including physicians. It is essential for optimal quality of life to develop an individually tailored treatment programme together with the diabetic patient and his/her social partner(s). The problems, that have to be taken into account include the various clinical symptoms of diabetes related as well as non-diabetic diseases typical for the multimorbid Type 2 diabetic patient with increasing age. In addition, problems of the active cooperation by the diabetic patient and inadequate reactions and acceptance by the social environment have to be resolved. For the necessary interactions of all persons involved in the diabetes longterm treatment altered organisational structures with new requirements for the quality of care of diabetic out- and inpatients are being developed.

Combined Modality Therapy↗

Orally absorbed reactive glycation products (glycotoxins): an environmental risk factor in diabetic nephropathy.

Endogenous advanced glycation endproducts (AGEs) include chemically crosslinking species (glycotoxins) that contribute to the vascular and renal complications of diabetes mellitus (DM). Renal excretion of the catabolic products of endogenous AGEs is impaired in patients with diabetic or nondiabetic kidney disease (KD). The aim of this study was to examine the oral absorption and renal clearance kinetics of food AGEs in DM with KD and whether circulating diet-derived AGEs contain active glycotoxins. Thirty-eight diabetics (DM) with or without KD and five healthy subjects (NL) received a single meal of egg white (56 g protein), cooked with (AGE-diet) or without fructose (100 g) (CL-diet). Serum and urine samples, collected for 48 hr, were monitored for AGE immunoreactivity by ELISA and for AGE-specific crosslinking reactivity, based on complex formation with 125I-labeled fibronectin. The AGE-diet, but not the CL-diet, produced distinct elevations in serum AGE levels in direct proportion to amount ingested (r = 0.8, P < 0.05): the area under the curve for serum ( approximately 10% of ingested AGE) correlated directly with severity of KD; renal excretion of dietary AGE, although normally incomplete (only approximately 30% of amount absorbed), in DM it correlated inversely with degree of albuminuria, and directly with creatinine clearance (r = 0.8, P < 0.05), reduced to <5% in DM with renal failure. Post-AGE-meal serum exhibited increased AGE-crosslinking activity (two times above baseline serum AGE, three times above negative control), which was inhibited by aminoguanidine. In conclusion, (i) the renal excretion of orally absorbed AGEs is markedly suppressed in diabetic nephropathy patients, (ii) daily influx of dietary AGEs includes glycotoxins that may constitute an added chronic risk for renal-vascular injury in DM, and (iii) dietary restriction of AGE food intake may greatly reduce the burden of AGEs in diabetic patients and possibly improve prognosis.

Adolescent↗

Immunological evidence for the presence of advanced glycosylation end products in atherosclerotic lesions of euglycemic rabbits.

Atherosclerosis is known to be accelerated in diabetic patients, but the mechanisms of this acceleration are poorly understood. Nonenzymatic glycosylation of long-lived proteins results in the formation of advanced glycosylation end products (AGEs), which are extensively cross-linked and could contribute to atherogenesis. Oxidative modification of LDL is also an important process in atherogenesis. In vitro evidence suggests that hyperglycemia may enhance lipid peroxidation, and conversely, that increased lipid peroxidation may enhance AGE formation. If such interactions occur in vivo, we hypothesized that AGE should be found in atherosclerotic lesions of euglycemic LDL receptor-deficient rabbits in areas rich in lipids and oxidized lipoproteins. To demonstrate the presence of AGEs, we developed antisera against a specific "model" compound of AGE, 2-furoyl-4(5)-(2-furanyl)-1H-imidazole (FFI) by using FFI-hexanoic acid (FFI-HA)-protein adducts as the antigen and against AGEs in general by using AGE-albumin as the antigen. Antisera generated with FFI-HA-protein adducts recognized FFI-HA alone as well as FFI-protein adducts. Native proteins or proteins conjugated with aldehydes formed during lipid peroxidation in vitro were not recognized by these antisera. Immunocytochemistry with both FFI-specific and AGE-specific antisera revealed the presence of these epitopes in atherosclerotic lesions of euglycemic LDL receptor-deficient rabbits but not in normal aortic tissues. AGE epitopes within atherosclerotic lesions were predominantly found in similar locations as epitopes generated during modification of the lipoproteins by oxidation, consistent with the hypothesized interactions between oxidation and glycosylation. Indirect evidence in support of the in vivo presence of FFI-like structures was also obtained by the observation that both diabetic and euglycemic human subjects contained autoantibodies that recognize FFI-protein adducts. Taken together, these data provide immunological evidence for the in vivo presence of FFI-like structures and other AGE-protein adducts in atherosclerotic lesions, even in euglycemic conditions.

Adult↗

Modification of low density lipoprotein by advanced glycation end products contributes to the dyslipidemia of diabetes and renal insufficiency.

Atherosclerosis develops rapidly in patients with diabetes or renal insufficiency. Plasma lipoprotein profiles are frequently abnormal in these conditions and reflect an elevation in the level of the apoprotein B (ApoB)-containing components very low density lipoprotein (VLDL) and low density lipoprotein (LDL). High levels of circulating advanced glycation end products (AGEs) also occur in diabetes and end-stage renal disease (ESRD). These products arise from glucose-derived Amadori products and include AGE-modified peptides (AGE-peptides) which result from the catabolism of AGE-modified tissue proteins. AGE-peptides have been shown to crosslink protein amino groups and to accumulate in plasma as a consequence of renal insufficiency. To address potential mechanisms for the dyslipidemia of diabetes and ESRD, we investigated the possibility that circulating AGEs react directly with plasma lipoproteins to prevent their recognition by tissue LDL receptors. AGE-specific ELISA showed a significantly increased level of AGE-modified LDL in the plasma of diabetic or ESRD patients compared with normal controls. AGE-LDL formed readily in vitro when native LDL was incubated with either synthetic AGE-peptides or AGE-peptides isolated directly from patient plasma. LDL which had been modified by AGE-peptides in vitro to the same level of modification as that present in the plasma of diabetics with renal insufficiency exhibited markedly impaired clearance kinetics when injected into transgenic mice expressing the human LDL receptor. These data indicate that AGE modification significantly impairs LDL-receptor-mediated clearance mechanisms and may contribute to elevated LDL levels in patients with diabetes or renal insufficiency. This hypothesis was further supported by the observation that the administration of the advanced glycation inhibitor aminoguanidine to diabetic patients decreased circulating LDL levels by 28%.

Animals↗

Noninvasive blood glucose sensors based on near-infrared spectroscopy.

Research into noninvasive devices for self-monitoring of blood glucose is mainly based on near-infrared spectroscopy. Such a device is particularly desirable in the intensive therapy of patients with diabetes mellitus to achieve optimal metabolic control through frequent glucose testing. The state of noninvasive assay technology is presented. Using diffuse reflectance spectra of mucous lip tissue has advantages and drawbacks compared with tissue transmittance experiments. Different approaches have been proposed in the patent literature; however, current technology requires further significant improvements, particularly within the lower normal and hypoglycemic glucose concentration ranges.

Blood Glucose Self-Monitoring↗

Lipid advanced glycosylation: pathway for lipid oxidation in vivo.

To address potential mechanisms for oxidative modification of lipids in vivo, we investigated the possibility that phospholipids react directly with glucose to form advanced glycosylation end products (AGEs) that then initiate lipid oxidation. Phospholipid-linked AGEs formed readily in vitro, mimicking the absorbance, fluorescence, and immunochemical properties of AGEs that result from advanced glycosylation of proteins. Oxidation of unsaturated fatty acid residues, as assessed by reactive aldehyde formation, occurred at a rate that paralleled the rate of lipid advanced glycosylation. Aminoguanidine, an agent that prevents protein advanced glycosylation, inhibited both lipid advanced glycosylation and oxidative modification. Incubation of low density lipoprotein (LDL) with glucose produced AGE moieties that were attached to both the lipid and the apoprotein components. Oxidized LDL formed concomitantly with AGE-modified LDL. Of significance, AGE ELISA analysis of LDL specimens isolated from diabetic individuals revealed increased levels of both apoprotein- and lipid-linked AGEs when compared to specimens obtained from normal, nondiabetic controls. Circulating levels of oxidized LDL were elevated in diabetic patients and correlated significantly with lipid AGE levels. These data support the concept that AGE oxidation plays an important and perhaps primary role in initiating lipid oxidation in vivo.

Adult↗

Modified low density lipoprotein from diabetic patients causes cholesterol accumulation in human intimal aortic cells.

Fifty-five serum samples from 99 Type 1 and 71 serum samples from 81 Type 2 diabetic patients (56% and 88%, respectively) brought about a 1.5-3.5-fold increase in total cholesterol content of cultured human intimal aortic cells. This atherogenic effect did not correlate with patient's age, diabetes duration or plasma lipid levels, and was mainly due to low density lipoprotein (LDL). Cholesterol accumulation in cells incubated with LDL highly correlated with that in cells exposed to corresponding patient's serum (r = 0.872 and r = 0.811, P < 0.0001, in Type 1 and Type 2 diabetic patients, respectively). In LDL from diabetic patients the sialic acid content was decreased by an average of 30% (P < 0.05), as compared with healthy subjects, and the fructosyl lysine content was increased by an average of 25% (P < 0.05). Atherogenic effect of patients' LDL significantly correlated with their fructosyl lysine content (P < 0.0001) and negatively correlated with sialic acid content (P < 0.0001). Two LDL fractions were further separated from the total LDL preparation by affinity chromatography on Ricinus communis agglutinin-agarose. The bound (desialylated) LDL fraction was characterized by an increased fructosyl lysine content and the altered neutral lipid and phospholipid composition, while non-bound (sialylated) LDL fraction did not differ from normal LDL. Desialylated, but not sialylated, LDL fraction induced massive cholesterol accumulation in cultured cells. In conclusion, the cholesterol accumulating effect of diabetic patients' blood sera is mainly related to atherogenic low density lipoprotein fraction, which is modified in various ways--by increased non-enzymatic glycosylation, desialylation and alterations in lipid composition. This multiple-modified LDL may contribute to the premature atherosclerosis development in diabetes mellitus.

Adolescent↗

Diabetes and arterial disease.

Macroangiopathy (or atherosclerosis) is a common and chronic complication in diabetic patients. Unlike other diabetic complications, atherosclerosis is not unique to diabetes, confounding analysis of its relationship with the diabetic condition. Evidence of an independent role for diabetes in the development of atherosclerosis remains equivocal. The main determinant of macrovascular disease may be an interaction between diabetes and the aging process. Similarly the question of a relationship between macrovascular disease and good metabolic control remains unanswered. Macroangiopathy in diabetic populations seems to be related to similar predictors and pathological mechanisms operating in the general population. However, after analysis of these common risk factors for macroangiopathy, a diabetes-specific risk remains. Low-density lipoprotein metabolism is markedly disturbed in poorly controlled diabetic patients. This is manifest as a concert of actions which increase formation of foam cells and fatty streaks. The next step in the atherosclerotic process, the formation of fibrous plaques, may be associated with the platelet hyperactivity seen in diabetes. This may promote overshooting of repair mechanisms at the vessel wall. Release of a specific diabetic serum growth factor from the platelets may be responsible for the later stages of fibrous plaque development and the increased atherosclerotic risk in diabetes.

Adult↗

Oral antidiabetic combination therapy with sulphonylureas and metformin.

In a multicentre trial in general practice, a total of 1823 type 2 diabetics, not adequately controlled by diet and maximal sulphonylurea therapy, were treated with additional metformin 850--2 550 mg/d for 12 weeks. The average postprandial blood sugar decreased from 15.48 mmol/l to 10.43 mmol/l, HbA1 fell from 11.0% to 9.1%. Serum triglycerides decreased from an initial level of 2.87 mmol/l to 2.41 mmol/l an mean total cholesterol from 6.76 mmol/l to 6.16 mmol/l. In addition, body weight and blood pressure declined steadily. All the described changes were statistically significant. The metformin-sulphonylurea combination therapy was generally well tolerated. Gastrointestinal side effects occurred in about 7% of patients, but mainly in the first week of treatment, generally disappearing spontaneous as therapy was continued. Side effects led to a discontinuation of the treatment in 4.2% of patients.

Administration, Oral↗

New approach to technical and clinical evaluation of devices for self-monitoring of blood glucose.

Despite the wide distribution of devices for self-monitoring of blood glucose (SMBG), there is no internationally accepted agreement on a standardized procedure for their evaluation. This is due to incomplete or even inappropriate technical evaluation and to inadequate evaluation criteria for their clinical acceptability. To provide adequate information on the performance of these devices over the whole clinically relevant range for SMBG (30-350 mg/dl), a standardized test procedure has been established for technical (accuracy, precision, and total deviation) and clinical (acceptance analysis) evaluation. To demonstrate the potency of this new approach, the following SMBG devices and test strips were evaluated: Chemstrip bG batch (n = 10), Glucostix batch (n = 2), Accu-Check II (n = 5), Diascan (n = 5), Diascan strip batch (n = 4), Glucocheck SC (n = 4), and Glucometer II (n = 4). The devices and test strips were examined by trained technicians, and in addition, 1 Chemstrip bG batch and 2 Accu-Check II meters were examined by 10 and 5 trained diabetic patients, respectively. Even the best-performing device did not achieve the American Diabetes Association's goal that SMBG measurements should be within 15% of the reference value. Instead, the maximal total deviation within the clinically relevant blood glucose range reached values that equalled deviations from the reference value between 16 and 108%. Three of 36 devices were classified as good, 29 as acceptable, and 4 as unacceptable for clinical use. In conclusion, this new approach to the technical and clinical evaluation of devices for SMBG is easy to perform and provides more realistic and comparable information for clinical use and approval than commonly used methods.

Blood Glucose Self-Monitoring↗

[Clinical testing of a new blood glucose measuring system. A cooperative study at 8 centers].

The glucometer II system is a small measurement device with built-in batch-specific pressbutton calibration. The corresponding test strip "Glucostix" uses a two-color system. The blood glucose test strip can be evaluated both visually and by instrument. The precision determined in series was between 2.0% and 6.7% using control sera. The day-to-day precision was between 1.5% and 7.9%. Comparison of the methods on the basis of 781 and 109 capillary blood samples respectively revealed a good agreement between the hexokinase method or the glucose oxidase method (Beckman analyser) and the glucometer II values. The precision of measurement by the system was comparable in the two test strip batches employed. Visual reading of the test strips revealed a good agreement with the laboratory method in the hypoglycemic and normoglycemic range; at higher concentrations of blood glucose, a trend to underestimation of the measurement values was shown. The easy handling and small size of the instrument facilitates measurement of blood glucose by the patient under everyday conditions.

Blood Glucose↗

Increased growth stimulation of human vascular cells by serum from patients with primary hyper-LDL-cholesterolemia.

Premature atherosclerosis in hypercholesterolemic patients may be due, in part, to increased growth of vascular cells. Therefore, the growth stimulating effect of serum and serum fractions from patients with primary hyper-LDL-cholesterolemia (LDL-cholesterol: 7.5 +/- 1.7 mmol/l) and from healthy subjects on human arterial smooth muscle cells and fibroblasts has been investigated over 5-7 days in culture. Human hypercholesterolemic sera increased the growth of both cell types up to a mean of 133% compared with normal sera (100%) (P less than 0.001). Removal of the dialyzable serum fraction (m.w. less than 3,500 daltons) reduced the growth effect of the hypercholesterolemic sera by 32% (P less than 0.001) and of the normal sera by 11% (P less than 0.01). Readdition of the hypercholesterolemic serum dialysate to its dialyzed serum restored completely the original growth effect. There was no significant difference in growth stimulation between the dialyzed hypercholesterolemic and normal sera excluding a major additional growth effect by LDL-cholesterol. The low molecular weight growth factor(s) of hypercholesterolemic serum (m.w. less than 3,500 daltons) showed a linear dependence of growth stimulation over a 20-fold concentration range. Increased amounts of this factor(s) might easily penetrate the arterial wall, thus contributing to atherogenesis.

Adult↗

Vascular growth factors and the development of macrovascular disease in diabetes mellitus.

The pathogenesis of macrovascular disease in diabetes mellitus is still incompletely understood. Within the various pathomechanisms abnormal growth of vascular cells is well established as an intrinsic part of the angiopathic process. In this regard, there are different groups of vascular growth factors that are of potential relevance for the development of macrovascular disease in diabetes : hormones, locally released growth factors of platelet and of arterial wall cell origin. The following hormones whose blood levels could increase under various conditions in diabetes have to be considered : growth hormone, insulin-like growth factor I and II and insulin. Human platelets contain at least eight growth peptides or proteins that all stimulate in vitro growth of arterial wall cells : platelet-derived-, epidermal-, fibroblast-, diabetic serum-, endothelial- and transforming growth factor, vascular endothelial cell proliferation factor and platelet-derived endothelial cell mitogen. In serum and plasma from type II diabetics only the diabetic serum growth factor has been shown to be increased. Platelets from type I and II diabetic patients contain increased growth stimulating activity. This increased growth activity returned to normal levels in both types of diabetes after strict metabolic control. Arterial endothelial and smooth muscle cells, fibroblasts and monocyte/macrophages of different species release at least in culture a variety of growth factors that could participate in an autocrine or paracrine manner in the growth regulation of the arterial wall. Diabetes may affect the release of these factors, but direct evidence to which degree this would contribute to the development of macrovascular disease is lacking.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗