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S S Solomon

Publications and source records attributed to S S Solomon.

At least 37 records · Page 2Linked to original sources

Islet allografts in the cryptorchid testes of spontaneously diabetic BB/Wor dp rats: response to glucose, glipizide, and arginine.

The aim of this study was to examine insulin and glucagon secretory patterns in successfully transplanted spontaneously diabetic BB/Wor dp rats. Diabetic, BB/Wor dp rats received abdominal, intratesticular islet grafts of MHC-compatible BB/Wor dr donor rats without immunosuppression. After a period of 74 +/- 15 days of normoglycemia, they were given the following challenges: 1) glucose, by mouth, 2) a single oral dose of glipizide, with glucose, and 3) arginine, by iv infusion. The pertinent results included the mean fasting plasma glucose levels of control, Sprague-Dawley (C), of transplanted BB/Wor dp (T), and nontransplanted, insulin treated, diabetic BB/Wor dp (D), and they were, respectively, 97 +/- 4 mg/dl, 110 +/- 3 mg/dl, and 350 +/- 40 mg/dl. Fasting plasma insulin levels in C and T rats were 21.9 +/- 3 microU/ml, and 20.4 +/- 2 microU/ml, respectively. Fasting plasma glucagon levels in C, T, and D, were 37.8 +/- 5.7 pg/ml, 43.4 +/- 4.6 pg/ml, and 47.4 +/- 4.9 pg/ml, respectively. During oral glucose tolerance test, the pattern of insulin secretion in the C and T rats was identical with a peak attained at 15 min. Glucose caused a 70% suppression of plasma glucagon levels in C rats (P less than 0.01); T rats suppressed 14%, but this was not statistically significant; D rats failed to suppress. Glipizide plus glucose caused an improved glucose tolerance in T rats without significantly affecting insulin levels. In the same rats, glipizide resulted in a significant suppression of glucagon compared with levels in the presence of glucose alone. Arginine caused a minimal release of insulin in T rats and a major glucagon secretory response in D rats. Pancreatic glucagon content was significantly (P less than 0.03) lower in C and T, compared with D rats. Furthermore, the transplanted testes of T contained substantial amounts of glucagon. In summary, these data suggest that grafted testes in spontaneously diabetic BB/Wor dp rats contain both beta and alpha-cells and that these cells have the capacity to respond to specific secretagogues independently.

Animals↗

Growth hormone-enhanced lipolysis in the spontaneously diabetic BB rat.

Responsiveness to lipolytic agents and glycerol output from rat adipocytes is altered by the diabetic process. We have confirmed reports that preincubation is required for growth hormone-induced lipolysis in isolated fat cells. Isolated fat cells were prepared from the epididymal fat pads of normal and spontaneously diabetic BB Wistar rats (weight, 250-400 gm) and their nondiabetic littermates by collagenase digestion. Lipolysis was measured by glycerol release after sequential perifusion with buffer alone, bovine growth hormone 1 microgram/ml, buffer alone, and epinephrine, 0.5 mumol/L. In each case isolated fat cells from control, nondiabetic, and spontaneously diabetic rats were perifused under two conditions, with and without preincubation with bovine growth hormone. Isolated fat cells from control and nondiabetic rats did not respond to bovine growth hormone without preincubation. When preincubation with bovine growth hormone, response in control rats increased from nonpreincubated glycerol values of 4.9 to 13.5 nmol glycerol released/10(6) cells/min. In contrast to controls, non-preincubated isolated fat cells from spontaneously diabetic rats that were stimulated with 1 microgram/ml bovine growth hormone went from 18.0 to 42.6 nmol of glycerol released/10(6) cells/min. No preincubation was necessary in spontaneously diabetic rats. In addition, in all situations in which preincubation or the diabetic state enhanced lipolysis with growth hormone, similar enhancement was seen with epinephrine. For nondiabetic rats both preincubated and nonpreincubated isolated fat cells respond minimally to bovine growth hormone. In conclusion, preincubation with bovine growth hormone is not required to elicit lipolysis in perifused isolated fat cells from spontaneously diabetic BB rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue↗

Expression of calmodulin gene is down-regulated in diabetic BB rats.

In past studies, we have demonstrated that in streptozotocin-induced diabetic or spontaneously diabetic (BB) animal models, low Km cAMP phosphodiesterase and calmodulin are decreased while a low MW inhibitor of calmodulin is increased. To extend these studies, we have determined the rate of [35S]-methionine incorporation into calmodulin in isolated fat cells from these diabetic animals, i.e. streptozotocin-induced diabetic and the BB rats, spontaneous diabetic rat, non-diabetic rat, and control. We found markedly decreased rates of synthesis of calmodulin in the fully diabetic BB rat. In order to investigate the mechanism of the reduced calmodulin biosynthesis, we probed poly A+ mRNA from control and diabetic rat livers with a calmodulin specific anti-sense oligonucleotide probe and found that the fully diabetic animals, streptozotocin-induced diabetic and genetically diabetic BB, contained markedly reduced levels of calmodulin transcripts. Thus, both calmodulin protein and its putative mRNA are decreased in diabetic rat liver. We believe that in uncontrolled diabetes, the observed elevation in the levels of cyclic AMP in plasma and tissue results in part from decreased activity of phosphodiesterase. The insulin-sensitive phosphodiesterase appears to be regulated by calmodulin. We hypothesize that cyclic AMP phosphodiesterase inactivation in diabetes results in part from insulin insufficiency and to a less well-defined genetic lesion leading to calmodulin down-regulation.

Actins↗

Activation of cyclic AMP phosphodiesterase by phorbol and protein kinase C pathway: differences in normal and diabetic tissue.

Diabetes mellitus is associated with high levels of adenosine 3',5'-cyclic monophosphate in tissue and plasma. Diabetes inhibits and insulin stimulates and restores low Km adenosine 3',5'-cyclic monophosphate phosphodiesterase activity. We recently reported that phorbol ester, a tumor promoting agent known to act through protein kinase C also stimulates phosphodiesterase. Here, we address the issue of whether or not the activation of phosphodiesterase by insulin and phorbol ester is different in streptozotocin diabetic adipose tissue. Rat adipose tissue was incubated with insulin, phorbol ester or other known components or effectors of the protein kinase C pathway, i.e. 1,2 dioleoyl-glycerol, 1- oleoyl, 2- acetylglycerol, Ca(++)-Ionophore A 23187, and nifedipine. After incubation, preparation and assay of adenosine 3',5'-cyclic monophosphate phosphodiesterase was made. As in previous data streptozotocin-diabetes inhibits basal phosphodiesterase by about 50% (P less than .02); insulin and phorbol ester each stimulate phosphodiesterase, in streptozotocin-diabetes less than normal (P less than .025); nifedipine inhibits phorbol stimulated phosphodiesterase in streptozotocin-diabetes but not normal (P less than .001); and nifedipine inhibits insulin stimulated phosphodiesterase in normal (84%) and diabetic (97%) (P less than .005). In normal and diabetic tissue, diacyl glycerol and oleoyl-acyl glycerol stimulate phosphodiesterase, are augmented by ionophore and inhibited by nifedipine. In addition 32P incorporation studies and measurements of tyrosine kinase activity are presented which support these differences between normal and diabetic. In summary then, these data suggest common pathways of activation for low Km adenosine 3',5'-cyclic monophosphate phosphodiesterase by insulin and phorbol ester; imply a relationship between two second messenger systems, phosphoinositides and adenosine 3',5'-cyclic monophosphate; and demonstrate a difference in activation of phosphodiesterase between normal and diabetic adipose tissue.

3',5'-Cyclic-AMP Phosphodiesterases↗

Growth hormone receptors are up-regulated in diabetic adipocytes.

Using an isolated fat cells (IFC) perifusion system and bovine growth hormone (bGH), we demonstrate that the lipolytic response in normal rat IFC is markedly enhanced after preincubation with bGH. In contrast, when IFC are prepared from diabetic animals or in the spontaneous diabetic BB rat (SDR-BB), no such preincubation is necessary. These IFC respond immediately to bGH with maximal release of glycerol. Using a binding assay established for rat growth hormone (rGH) receptors, we measured the number of GH receptors in IFC from these rats. We demonstrate a 75% increase in GH receptors after preincubation with GH in normal rat IFC, and a 125% increase in GH receptors in diabetic IFC, without preincubation. These data support the concept that enhanced sensitivity to GH is an important feature of diabetes in rats and that this sensitivity is at least in part controlled by up-regulation of GH receptors.

Adipose Tissue↗

Lime-yellow color as related to reduction of serious fire apparatus accidents--the case for visibility in emergency vehicle accident avoidance.

Fire departments have long used red as the traditional color for fire apparatus and have been reluctant to change. Optometric research and literature offers ample proof that red is a poorly detected color. This paper views the shortcomings of red. Simultaneously, it reports that the ancillary equipment and markings used to make fire vehicles detectable are not as effective as previously thought. These safety measures include flashing lights, strobe lights, retroreflective material, and audible alarms. Lime-yellow has been found to be a distinctive, highly visible safety color. Research reveals it can reduce or prevent serious fire apparatus accidents through early detection.

Accidents, Traffic↗

Hepatic steatosis during convalescence from influenza B infection in ferrets with postprandial hyperinsulinemia.

The possibility that postprandial hyperinsulinemia could play a role in the development of hepatic lipid disturbances during convalescence from influenza B infection was explored in the ferret as a possible model of the steatosis of Reye's syndrome. Postprandial hyperinsulinemia was produced by feeding young ferrets glucose/water and a regular diet (glucose-treated group), as reflected by the mean serum insulin levels attained, which were 57 and 135 microU/ml during control and postinfluenza periods, respectively. By comparison, ferrets fed water and a regular diet (untreated group) had mean insulin levels of 19 and 22 microU/ml, while postprandial glucose levels were comparable in the two groups of animals for each period. In contrast to untreated animals, grossly visible fatty livers were found in glucose-treated ferrets during convalescence. The total lipid content of these livers had doubled compared with preinfection samples and compared with livers of untreated ferrets. By electron microscopy hepatic mitochondria showed striking changes with diminution of matrix density and reduction in cristae surface area only in convalescent samples from glucose-treated animals. Serum free fatty acid (FFA) levels were considerably higher in the glucose-treated animals during fasting before influenza and also after feeding during convalescence. Serum triglyceride (TG) levels were also high during convalescence in the glucose-treated group. Adipose tissue lipoprotein lipase activities were similar between groups, but hormone-sensitive lipase activity was twelvefold higher in glucose-treated ferrets before and after influenza B. These findings indicate that for a given stimulus, glucose-treated ferrets would mobilize more FFA than untreated ferrets. The total capacity for beta-oxidation of FA by the mitochondrial pathway was identical in all groups of animals. Total carnitine palmitoyl transferase (CPT) activity was the same in both control groups, but was significantly diminished in glucose-treated animals during convalescence. As CPT regulates the entry of FA into the mitochondrial matrix, its reduction in response to higher insulin concentrations would limit the oxidation of FA and stimulate TG accumulation. Therefore, the accumulation of lipid in the liver in this model is regarded to have been caused by the simultaneous occurrence of increased lipolysis and increased hepatic TG synthesis owing, in part, to diversion of activated FA by CPT, which is reduced in activity due to the regulatory action of insulin. These findings may have pathophysiologic relevance for the lipid changes that occur in Reye's syndrome and to fatty liver formation in hyperinsulinemic states.

Adipose Tissue↗

Insulin control of cyclic AMP phosphodiesterase.

Cyclic AMP phosphodiesterase (PDE) is an enzyme involved in cellular homeostasis of cyclic AMP. It exists as multiple isozymes in cells, but only the high affinity, membrane-bound isozyme is sensitive to hormonal modulation. Several isozymes or isoforms of the low Km PDE have been detected. Data suggest that several mechanisms exist for hormonal modulation of PDE. Activity of the low Km PDE species may be modulated by phosphorylation/dephosphorylation, phospholipid substrate concentration, insulin second messenger, cyclic GMP, guanine nucleotide binding proteins, calmodulin, or aggregation/disaggregation of monomeric forms. Modulation of PDE isoforms by different hormones may be through different regulatory components or mechanisms.

3',5'-Cyclic-AMP Phosphodiesterases↗

Allocating research space in the university medical center: use of a mathematical formula.

Allocation of research space often is one of the most emotional and contentious issues facing a university medical center. With decreasing dollars available for building new research laboratories in medical schools, the assignment of laboratory space to basic science and clinical departments presents a difficult problem for deans, chairmen, and faculty. In this article, the authors outline a formula in which net square feet of traditional research space (ie, wet-bench laboratories) may be allocated on the basis of research dollars, output of manuscripts and abstracts averaged over 3 years, and the number of personnel who will use the space. Caution is urged for arbitrarily applying a space formula when it does not apply, ie, nontraditional research, and when insufficient consideration has been given to the individual case. The formula is most useful when applied within a specific institution and primarily for comparative purposes. Nonetheless, once the formula is established, it provides an objective mechanism by which the need for space and the relative merits of space assignments within a department or among departments can be more effectively determined and managed.

Academic Medical Centers↗

Studies of insulin resistance in the streptozotocin diabetic and BB rat: activation of low Km cAMP phosphodiesterase by insulin.

The streptozotocin diabetic rat (STZ-DM) has been the best animal model for the study of insulin-deficient diabetes. A spontaneous diabetic BB Wistar Rat (SDR) has now been evaluated as a model for insulin-dependent diabetes that more closely reflects this disease in humans. The authors assessed the ability of insulin to stimulate the Vmax of a low Km cAMP phosphodiesterase (PDE) in adipose tissue of control, streptozotocin diabetic (STZ-DM) rats, and spontaneous diabetic BB rats (SDR). In addition, the authors examined the effect of streptozotocin on the nondiabetic littermates of the SDR animal, the NDR rat. Insulin stimulated Vmax of low Km cAMP PDE in control rat adipose tissue by 20% at 5 minutes. Insulin also stimulated Vmax of both SDR and NDR by 50% at 5 minutes. In contrast to control and both subgroups of the BB rat (SDR and NDR), insulin stimulated adipose tissue from STZ-DM less than 10% at 5 minutes. NDR animals rendered diabetic with streptozotocin were more responsive to insulin. The data demonstrate some similarities and differences between streptozotocin-induced diabetes and spontaneous diabetes in the BB rat. Reduced responsiveness to insulin appears to be more a part characteristic of streptozotocin diabetes than diabetes in the BB rat. The absence of significant insulin resistance in the spontaneous diabetic BB rat also is more consistent with the pathophysiological mechanisms usually seen both in other insulin-dependent diabetic rat models and insulin-dependent diabetes in man. However, both animal models of diabetes, ie, STZ-DM and BB, like man, respond to insulin therapy.

3',5'-Cyclic-AMP Phosphodiesterases↗

The insulin-like effects of phorbol myristate acetate (PMA) in the isolated fat cell.

Recent data from many laboratories suggest that insulin stimulates diacylglycerol formation. Data presented in this manuscript demonstrate an insulin-like effect of PMA, a tumor promoting agent that mimics the action of diacylglycerol, in isolated adipocytes on; (a) glucose oxidation using uniformly labelled, C-1-labelled and C-6-labelled glucose, (b) epinephrine-induced lipolysis and (c) low Km cAMP phosphodiesterase activity. Additionally, a lipolytic effect of PMA is identified when unopposed by epinephrine. These data not only demonstrate an insulin-like effect of phorbol esters in adipose tissue but they lend support to the concept of diacylglycerol involvement in the mechanism of insulin action.

Adipose Tissue↗

Growth hormone and carbohydrate intolerance in cirrhosis.

Patients with cirrhosis of the liver often have insulin resistance and elevated circulating growth hormone levels. This study was undertaken (a) to evaluate glucose intolerance, insulin resistance and abnormal growth hormone secretion and (b) to determine if GH suppression improves insulin resistance. Glucose tolerance tests (GTT), intravenous insulin tolerance tests (IVITT), arginine stimulation tests (AST) and glucose clamp studies before and during GH suppression with somatostatin were performed in a group of patients with alcohol-induced liver cirrhosis. During GTT cirrhotic subjects had a 2-hour plasma glucose of 200 +/- 9.8 ng/dl (N = 14) compared to 128 +/- 8.0 ng/dl in normal controls (N = 15), P less than 0.001. Basal GH was elevated in cirrhotic patients and in response to arginine stimulation reached a peak of 17.0 +/- 5.4 ng/ml (N = 7), compared to a peak of 11.3 +/- 1.8 ng/ml in 5 normal controls (P = NS). During IVITT patients with cirrhosis had a glucose nadir of 60.0 +/- 4.0 mg/dl (N = 9), compared to 29.0 +/- 7.0 mg/dl in controls (N = 5), P less than 0.001. Peak GH levels during IVITT were not significantly different in cirrhotics and controls. Glucose utilization rates in 4 patients with cirrhosis of the liver before somatostatin mediated GH suppression was 3.1 +/- 0.5 mg/kg/min and 6.5 +/- 1.5 mg/kg/min during somatostatin infusion, P less than 0.025. We conclude that patients with alcohol induced cirrhosis have sustained GH elevations resulting in insulin resistance which improves after GH suppression.

Adult↗

Stimulation of in vitro triglyceride synthesis in the rat hepatocyte by growth hormone treatment in vivo.

Hepatic fatty acid metabolism in the rat is sexually differentiated. Rates of esterification by the liver of fatty acid into triglyceride and other esterification products (phospholipid, diglyceride, cholesteryl esters) are higher in the female than in the male. There is evidence to suggest that GH feminizes other hepatic systems that exhibit sexual dimorphism, including hepatic steroid metabolism, PRL receptors, and estrogen binding. To investigate the role of GH in maintenance of the high rates of fatty acid esterification observed in the female, we assessed rates of [1-14C]oleic acid utilization by hepatocytes prepared from hypophysectomized (hypox) cortisol/T3-replaced female rats with an without continuous in vivo infusion of human (h) GH (5 micrograms/h). In addition, we assessed the effect of in vivo hGH treatment (5 micrograms/h) on [1-14C]oleic acid utilization in the normal male rat. Hypophysectomy was accompanied by a reduction in incorporation of [1-14C]oleic acid into products of esterification (triglyceride, phospholipid, diglyceride) and oxidation (CO2, ketone bodies). Continuous infusion of hGH (5 micrograms/h; 14 days) restored rates of fatty acid esterification in the hypox-cortisol/T3-replaced female rat, with the exception of cholesteryl esters. hGH infusion partially restored rates of fatty acid oxidation in the hypox cortisol/T3-replaced female rat. Treatment of the adult male rat with continuous infusion of hGH (5 micrograms/h; 7 days) resulted in increased rates of incorporation of [1-14C] oleic acid into triglyceride. In contrast, incorporation of oleic acid into phospholipid, diglyceride, and cholesteryl esters was unaltered. These results suggest that GH may be an important regulator of hepatic fatty acid metabolism.

Animals↗

Insulin-like effects of vanadate in isolated rat adipocytes.

Vanadate has been shown to have a number of insulin-like effects in various cells, including isolated rat adipocytes. In the present study we compared the activities of vanadate and insulin in isolated fat cells using a number of different assays of insulin-like activity. Both insulin and vanadate stimulated [2-3H]glucose incorporation into fat cell lipid in a dose-dependent manner, but the maximal effect of vanadate was markedly greater than that of insulin. At 10(-2) M vanadate the effect was 3-4 times as great as the maximal effect of insulin. This effect was dependent on specific glucose transport. Combinations of insulin and vanadate were not more effective than vanadate alone. Vanadate also produced antilipolysis with an effect somewhat greater than that of insulin. Using [U-14C]glucose both vanadate and insulin stimulated 14CO2 production and [14C]glucose incorporation into lipid, and again the effect of vanadate was greater than that of insulin. Vanadate had a greater effect on 14CO2 production than on [14C]glucose incorporation into lipid. When [1-14C]glucose was used vanadate again had a significantly greater effect on 14CO2 production than did insulin, but when [6-14C]glucose was used the effects of vanadate and insulin were equal. These results demonstrate that vanadate has insulin-like effects in isolated fat cells, but it selectively stimulates certain pathways to a greater extent than does insulin. The greater effect of vanadate than insulin appears to be primarily on the pentose phosphate shunt, suggesting that this agent may be useful for examination of this intracellular pathway in fat cells.

Adipose Tissue↗

Suggested mechanism for the selective excretion of glucosylated albumin. The effects of diabetes mellitus and aging on this process and the origins of diabetic microalbuminuria.

In previous studies in the Sprague-Dawley rat, Williams and coworkers reported the phenomenon of selective urinary excretion of glucosylated albumin (editing, i.e., the percent glucosylation of urinary albumin is more than that of plasma albumin) by the mammalian kidney. Ghiggeri and coworkers subsequently found that the extent of editing is reduced in human diabetics. Moreover, the reduction in editing in diabetes correlates inversely with levels of microalbuminuria. We also find reduction in the extent of editing in diabetic humans. We find a striking inverse correlation not only with the magnitude of microalbuminuria but also with the extent of plasma albumin glucosylation. In contrast, we found little correlation between the reduction in editing and the duration of diabetes in human subjects. Stz induced diabetes in the Sprague-Dawley rat is associated with a striking and rapid reduction in editing which develops virtually with the same kinetics exhibited by the appearance of hyperglycemia. This loss of editing is rapidly reversed by daily administration of insulin but not by aldose reductase inhibitors. Mannitol infusion in anesthetized Wistar rats resulted in an increase in urine volume, GFR, and microalbuminuria, and was also accompanied by a marked reduction in editing. This reduction was rapidly reversed by a cessation of mannitol infusion. We propose here that glucosylated albumin (in contrast to unmodified albumin) is not reabsorbed by the proximal tubule, and thus, is preferentially excreted in the urine. We postulate that the increase in GFR which emerges as a consequence of increased plasma osmolality in diabetes mellitus delivers more albumin to the proximal tubule than can be reabsorbed. This results in a dilution of excreted glucosylated albumin molecules by excreted unmodified albumin, which appears as the early microscopic albuminuria of diabetes. Paradoxically, the fall in apparent editing is accompanied by an absolute increase in the total quantity of glucosylated albumin excreted. In contrast, we found that editing of glucosylated albumin by the normal kidney is found to gradually decline as a function of age without the appearance of microalbuminuria. This suggests that a different mechanism operates to produce the loss of editing seen with aging in man, and as clearly (but in a shorter absolute time intervals) in the Fischer-344 rat.

Adolescent↗

Deprivation and repletion of androgen in vivo modifies triacylglycerol synthesis by rat hepatocytes.

Given the same quantity of fatty acid, livers from male rats esterify less fatty acid and secrete less triacylglycerol in very-low-density lipoprotein than do livers from female animals. To elucidate the role of testosterone in maintenance of this male pattern, conversion of [1-14C]oleic acid into triacylglycerol was assessed in vitro by rat hepatocytes (male) following gonadectomy and replacement with testosterone. Following castration, incorporation of fatty acid into triacylglycerol was increased. In contrast, esterification of exogenous fatty acid into phospholipid, cholesteryl esters, and diacylglycerol was unchanged. Treatment with testosterone (75 micrograms/day) reduced incorporation of exogenous fatty acid into triacylglycerol. Higher doses of testosterone (200 or 100 micrograms/day) modified the effect, such that inhibition was observed only at low oleate (0.5 mM) concentrations. At higher substrate concentrations (1.0-2.0 mM) the inhibitory effect was no longer observed. Further, a similar dose-dependent effect of testosterone was observed following in vivo treatment of castrate females with testosterone. These data support the concept of a regulatory role of testosterone in hepatic triacylglycerol synthesis. These findings also demonstrate a biphasic effect of testosterone, an effect that is dependent not only upon the dose of testosterone administered, but also on the concentration of fatty acid to which the hepatocyte is exposed in vitro.

Animals↗

Insulin resistance and delayed clearance of peptide hormones in cirrhotic rat liver.

Clearance of porcine insulin, glucagon, and human growth hormone was measured in intact perfused cirrhotic and normal rat livers. Binding and degradation of 125I-insulin by hepatocytes isolated from cirrhotic and normal livers were also studied. The half-lives (t1/2) of immunoreactive insulin and glucagon were 14.0 +/- 3.1 and 9.6 +/- 2.1 min in normal livers and 26.0 +/- 6.1 and 25.0 +/- 7.1 min in cirrhotic livers (P less than 0.001). Insulin binding and degradation by hepatocytes from control and cirrhotic livers showed no significant differences. Intraportal insulin infusion in perfusion studies suppressed glucagon-stimulated increases in glucose output from control livers but failed to suppress glucose production by cirrhotic livers, suggesting the presence of hepatic insulin resistance in cirrhosis. Impaired clearance of insulin and glucagon by the intact cirrhotic liver and normal binding and degradation of insulin by isolated hepatocytes suggest that factors such as intrahepatic fibrosis and shunting and postbinding defects may be responsible for the impaired hormone clearance and hepatic insulin resistance.

Animals↗

Lipolysis in diabetic adipocytes: differences in response to growth hormone and adenosine.

The sensitivity to lipolytic agents is altered in diabetic vs. control animals. Because of its role as a diabetogenic hormone and its ability to elicit lipolysis, GH was studied in isolated fat cells (IFC) from control and streptozotocin-diabetic (STZ-DM) rats. IFCs from the epididymal fat of 150 to 200-g normal and STZ-DM Holtzman rats were prepared by collagenase digestion. Lipolysis was measured by glycerol release after either incubation or perifusion with the following concentrations: epinephrine (EPI), 0.01-0.1 microM; theophylline, 0.01-1.0 mg/ml; adenosine deaminase (ADA), and bovine GH (bGH), 0.01-1.0 microgram/ml. Rats, rendered diabetic by STZ (65 mg/kg), were used on day 3. In a dose-response study comparing glycerol release from control and STZ-DM IFC, IFC were preincubated with 1.0 microgram/ml bGH and then incubated with varying concentrations of EPI or bGH. In STZ-DM, we noted increased lipolytic sensitivity to low concentrations of EPI or bGH. Furthermore, in perifusion, STZ-DM IFC did not require obligatory preincubation with bGH for optimal glycerol release. The addition of ADA increased glycerol release from incubated IFC (STZ-DM and controls). In both systems an enhanced lipolytic response to theophylline was seen in the presence of bGH in control and STZ-DM. It was thus concluded that IFC from normal animals do not respond to GH without preincubation. IFC from STZ-DM rats show a lipolytic response to GH without preincubation. Preincubation with GH increases the lipolytic response of IFC from STZ-DM to all lipolytic agents compared to control responses. In addition, ADA greatly enhanced lipolysis in IFC from STZ-DM compared to that in controls. Together these data demonstrate enhanced sensitivity to both lipolytic stimuli and adenosine suppression of lipolysis in IFC from STZ-DM.

Adenosine↗