Recent studies show that green tea polyphenols (GTPs) attenuate bone loss and microstructure deterioration in ovariectomized aged female rats, a model of postmenopausal osteoporosis. This study evaluated the efficacy of GTPs at mitigating bone loss and microstructure deterioration along with related mechanisms in androgen-deficient aged rats, a model of male osteoporosis. A 2 (sham vs. orchidectomy) × 2 (no GTP and 0.5% GTP in drinking water) factorial design was studied for 16 weeks using 40 aged male rats. An additional 10 rats (baseline group) were killed at the beginning of study to provide baseline parameters. There was no difference in femoral mineral density between baseline and the sham only group. Orchidectomy suppressed serum testosterone and tartrate-resistant acid phosphatase concentrations, liver glutathione peroxidase activity, bone mineral density, and bone strength. Orchidectomy also decreased trabecular bone volume, number, and thickness in the distal femur and proximal tibia and bone-formation rate in trabecular bone of proximal tibia but increased serum osteocalcin concentrations and bone-formation rates in the endocortical tibial shaft. GTP supplementation resulted in increased serum osteocalcin concentrations, bone mineral density, and trabecular volume, number, and strength of femur; increased trabecular volume and thickness and bone formation in both the proximal tibia and periosteal tibial shaft; decreased eroded surface in the proximal tibia and endocortical tibial shaft; and increased liver glutathione peroxidase activity. We conclude that GTP supplementation attenuates trabecular and cortical bone loss through increasing bone formation while suppressing bone resorption due to its antioxidant capacity.
Alloxan monohydrate was used to induce diabetes in rabbits, which were maintained for a 3-month period with or without daily insulin replacement along with age-matched controls. Isolated right ventricular myocardial strips were used to generate dose-response curves to isoproterenol, forskolin, and Bay K 8644. Basal developed force was significantly elevated in diabetic ventricular strips. While isoproterenol acted as a full inotropic agonist, diabetic preparations revealed a consistent but insignificant decrease in the maximum developed force. While both sensitivity to isoproterenol and beta-adrenoceptor density were decreased in preparations from diabetic rabbits, there was no associated increase in circulating plasma catecholamines. In contrast, forskolin and Bay K 8644 were partial agonists in control preparations but full inotropic agonists in diabetic preparations, demonstrating significant increases in maximum developed force. This hyperresponsiveness was not associated with altered calcium channel density. Finally, insulin replacement reduced or prevented all diabetic-related changes. These data indicate that the hyperresponsiveness to forskolin and Bay K 8644 represents an altered utilization of intracellular calcium in the diabetic rabbit, converting them into full agonists similar to isoproterenol. The decrease in sensitivity to isoproterenol correlated with a decrease in beta-adrenoceptor density but not elevated circulating catecholamines as previously observed in diabetic rats.
Diabetes Mellitus (DM) is the fifth leading cause of death in the US. Nearly 80% of diabetic mortality is secondary to cardiovascular disease resulting from atherosclerosis. Current therapy is based upon control of blood glucose, cholesterol and triglycerides, primarily through insulin replacement in Type 1 diabetes or oral hypoglycemic agents and/or insulin replacement in Type 2 diabetes. The more intensive the control, the lower the incidence of diabetic complications such as atherosclerosis. The principal investigators were interested in finding safe and effective nutritional supplements that would reduce the need for insulin replacement therapy, provide tighter glucose control, and protect against oxidative stress and the vascular pathology associated with diabetes mellitus. One such supplement is taurine.
Determination of reliable bioindicators of diabetes-induced oxidative stress and the role of dietary vitamin E supplementation were investigated. Blood (plasma) chemistries, lipid peroxidation (LPO), and antioxidant enzyme activities were measured over 12 weeks in New Zealand White rabbits (control, diabetic, and diabetic + vitamin E). Cholesterol and triglyceride levels did not correlate with diabetic state. Plasma LPO was influenced by diabetes and positively correlated with glucose concentration only, not cholesterol or triglycerides. Liver glutathione peroxidase (GPX) activity negatively correlated with glucose and triglyceride levels. Plasma and erythrocyte GPX activities positively correlated with glucose, cholesterol, and triglyceride concentrations. Liver superoxide dismutase activity positively correlated with glucose and cholesterol concentration. Vitamin E reduced plasma LPO, but did not affect the diabetic state. Thus, plasma LPO was the most reliable indicator of diabetes-induced oxidative stress. Antioxidant enzyme activities and types of reactive oxygen species generated were tissue dependent. Diabetes-induced oxidative stress is diminished by vitamin E supplementation.
The growth of rat aorta vascular smooth muscle cells (VSMCs) was measured in the presence and absence of taurine. Concentrations of taurine as low as 0.3 mM in the culture medium inhibited the proliferation of the cells, as monitored by measuring cell count, and also inhibited the rate of DNA synthesis, as examined by measuring [3H]thymidine incorporation into DNA. However, even at the highest concentration of taurine (30 mM), the doubling time of the VSMCs was only increased by 38%. Protein content of the VSMCs was decreased by 30 mM taurine. [3H]Leucine incorporation into newly synthesized protein was not affected by the highest concentration of taurine tested (30 mM), indicating that taurine did not inhibit protein synthesis but rather decreased total protein content by inhibiting cellular proliferation. The effects of other amino acids such as alanine, glycine, and serine and of various taurine analogues such as β-alanine, guanidinoethanesulfonic acid (GES), and isethionic acid also were tested at a concentration of 20 mM for their effects on the growth of the VSMCs. Alanine, glycine, and serine had only a minimal effect or no effect on cell count, quantity of protein, and incorporation of [3H]thymidine into DNA. GES, β-alanine, and isethionic acid had a significant effect on cell count, protein content, and incorporation of [3H]thymidine into DNA. β-Alanine was the only analogue tested that significantly depressed [3H]leucine incorporation into newly synthesized protein. It is concluded that taurine, GES, and isethionic acid inhibited proliferation of VSMCs but did not alter normal protein synthesis or survivability of VSMCs. In contrast, other amino acids, alanine, glycine and serine, had minimal effects on VSMC proliferation and protein synthesis, whereas β-alanine appeared to be toxic, inhibiting both VSMC synthesis and de novo protein synthesis.
We examined the effects of several protein kinase C (PKC) inhibitors on the murine 5-hydroxytryptamine3 (5-HT3) receptor to determine whether they acted directly on the receptor. The 5-HT-evoked currents in Xenopus laevis oocytes expressing the recombinant 5-HT3 receptor were measured with the two-electrode voltage-clamp technique. The PKC inhibitors bisindolylmaleimide I (BIM, GF109203x) and staurosporine, but not calphostin C or chelerythrine, decreased the 5-HT3 receptor-mediated currents when coapplied with 5-HT. BIM blocked 0.5 microM 5-HT-elicited currents with an IC50 value of 7 nM, whereas in the presence of 5 microM staurosporine, 42% inhibition of 0.5 microM 5-HT-mediated currents was observed. Increasing concentrations of BIM resulted in a rightward shift of the 5-HT concentration-response curve, without altering efficacy. A Schild plot was generated, which had a slope of -1.01, suggesting competitive antagonism. The Ki value of BIM was determined to be 29 nM. To confirm competitive antagonism, a competitive binding assay was performed on Sf21 insect cells infected with the mouse 5-HT3 receptor cDNA in a baculovirus expression vector. BIM completely displaced binding of the selective 5-HT3 receptor antagonist [3H]GR65630. BIM bound to the 5-HT3 receptor with a Ki value of 61 nM, which was slightly less potent than that of the selective 5-HT3 receptor antagonist MDL72222 (27 nM). The PKC inhibitor BIM is a potent competitive antagonist at the 5-HT3 receptor.
OBJECTIVE Diabetes mellitus is a known risk factor for atherosclerosis. Because initiation and/or progression of the atherosclerotic process is associated with alterations in vascular smooth muscle cell growth and differentiation, the present studies were conducted to evaluate the effect of diabetes mellitus on the proliferative behaviour of cultured aortic smooth muscle cells. METHODS Male New Zealand White rabbits were made diabetic with a single intravenous injection of alloxan monohydrate (100 mg.kg-1) in saline. Primary cultures of smooth muscle cells were established from thoracic aortic segments of control and diabetic rabbits and used to develop multiple cell strains. The proliferative capability of secondary cultures was determined by measurements of [3H]-thymidine incorporation into DNA, cell counts, and protein content in control and diabetic cultures. The serum dependence of cellular growth was evaluated by incubation of cultured cells in growth medium supplemented with various fetal calf serum concentrations. RESULTS Cultures of diabetic origin incorporated thymidine to a greater extent than control cultures. Although the efficiency of cell attachment was not different between control and diabetic cells, diabetic cells had a shorter population doubling time than control cells [41.08(SEM 4.15) h v 58.08(6.79) h] and achieved higher final densities than control cultures. The serum dependence of smooth muscle cell cultures for viability and growth was different between the two groups. CONCLUSIONS These findings support the hypothesis that diabetes induces changes in vascular smooth muscle cell proliferation which may be associated with the onset or progression of the atherogenic process observed in diabetes.
The present study was undertaken to compare the cardiomyopathies induced by experimental diabetes mellitus and chronic isoproterenol (ISO) pretreatment on inotropic reactivity of right ventricular strips from rats. One month after initiation of treatment, cardiac muscle was isolated and challenged with either the beta-adrenoceptor agonist ISO or the calcium channel activator Bay K 8644. Sensitivity and responsiveness to these agonists were determined. Crude membrane preparations were obtained from residual ventricular muscle and beta-adrenoceptor density determined using iodocyanopindolol. Isolated right ventricular strips from diabetic and ISO-treated rats demonstrated hyperresponsiveness to the inotropic effects of Bay K 8644 but subsensitivity to ISO. Ventricular beta-adrenoceptor density was found to be significantly depressed in membrane preparations from both diabetic and ISO-treated groups relative to controls. These data indicate that both forms of cardiomyopathy may affect inotropic reactivity through similar alterations to beta-adrenoceptors and calcium utilization.
The ion channel probe phencyclidine [1-(1-phenylcyclohexyl)piperidine; PCP] selectively inhibited aggregation, secretion and ultrastructural changes in platelets induced by adrenaline, but did not affect activation induced by other common platelet agonists such as alpha-thrombin, ADP, collagen or ionophore A23187. [3H]PCP bound to platelets with high affinity (Kd 134 +/- 33 nM; 3600 +/- 1020 sites/platelet), as did the thienyl analogue [3H]TCP (1-[1-(2-thienyl)cyclohexyl]piperidine). PCP binding to platelets was increased 3-4-fold in N-methylglucamine buffer in the absence of Na+ ions. Binding was unaffected by haloperidol and was only weakly inhibited (EC50 10-20 microM), without significant stereoselectivity by the two sets of stereoselective ligands, dexoxadrol/levoxadrol and (+)MK801/(-)MK801. Binding of PCP was not competed for by adrenaline or yohimbine. Only the high-affinity binding of [3H]PCP to platelets was blocked by prior treatment of the platelets with the covalent affinity probe Metaphit, and these platelets no longer aggregated in response to adrenaline although they responded normally to alpha-thrombin, ADP and collagen. These results suggest that platelets contain high-affinity receptors for PCP that can modulate adrenaline-induced platelet activation.
Platelets in plasma were loaded with the probe BCECF/AM, and changes in cytoplasmic pH levels induced by highly purified human alpha-thrombin (2900 NIH U/mg) were studied in washed platelets having high- and moderate-affinity receptors and in platelets from which the high-affinity alpha-thrombin receptor had been removed by treatment with Serratia marcescens protease. In intact platelets, cytoplasmic acidification reached a maximum within 2 minutes of -0.072 +/- 0.009 pH units at 0.3 nmol/L alpha-thrombin concentration (0.03 U/ml). Cytoplasmic pH values were higher at both lower and higher alpha-thrombin concentrations and were significantly (p = 0.018) higher at 2 nmol/L alpha-thrombin, which induced -0.037 +/- 0.013 pH units of acidification. Five nanomoles of alpha-thrombin, however, induced cytoplasmic alkalinization of +0.027 +/- 0.033 pH units. In platelets lacking the high-affinity receptor where there is a 10 to 20-fold reduction in sensitivity to alpha-thrombin, acidification reached a maximum of -0.175 +/- 0.033 pH units at 2 nmol/L alpha-thrombin, but alkalinization was observed at 5 nmol/L (+0.038 +/- 0.025) and 10 nmol/L (+0.042 +/- 0.007) alpha-thrombin. These results show that the transition from acidification to alkalinization occurs in the same range of alpha-thrombin concentrations (2 to 5 nmol/L) in both preparations, despite the rightward shift in sensitivity caused by the absence of the high-affinity receptor. However, the maximum acidification reached in control platelets (-0.037 pH units at 2 nmol/L) was much less than the value obtained in platelets lacking the high-affinity receptor (-0.175 pH units at 2 nmol/L alpha-thrombin).(ABSTRACT TRUNCATED AT 250 WORDS)
Atherosclerotic vascular disease is the most common complication of diabetes mellitus. Enhanced vascular smooth muscle cell proliferation plays a central role in atherosclerotic lesion formation. Studies using explant cultures have demonstrated that aortic smooth muscle cells from rats with experimental or genetic diabetes have enhanced rates of proliferation when compared to controls. However, this method of culture may select for cells with enhanced migratory potential. In the present studies, aortic smooth muscle cells were successfully cultured from control and diabetic rabbits after enzymatic and mechanical dispersion from thoracic aortic segments. The proliferative patterns of control cells were characterized and growth rates of diabetic cells were compared to controls. Primary cultures from control rabbits grew after an initial 5-day lag period to achieve threefold increases in cell number by 9 days. Subcultures of aortic smooth muscle cells entered the logarithmic phase of growth after 2 days, reaching the plateau phase of growth in 5-7 days and achieving three to fourfold increases in cell number. The final density to which cultures grew was not affected by the number of cells attached on day 1 for the range studied. Cells from diabetic rabbits displayed shorter doubling times and reached greater densities at confluence than did cells from controls. These data support the hypothesis that diabetes induces an atherogenic response. The dissociated rabbit aortic smooth muscle cell culture provides a model in which to study diabetes-induced modulation of cell proliferation that is amenable to pharmacological manipulation to investigate agonist and growth factor-induced responses.