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J T Tamsma

Publications and source records attributed to J T Tamsma.

12 recordsLinked to original sources

Regulation of glomerular epithelial cell production of fibronectin and transforming growth factor-beta by high glucose, not by angiotensin II.

Accumulation of matrix proteins is a prominent feature of diabetic nephropathy. Glomerular visceral epithelial cells (GVECs) are important contributors to extracellular matrix (ECM) production in the glomerulus. Factors involved with increased accumulation of ECM proteins are high glucose, angiotensin II (ANG II), and transforming growth factor (TGF)-beta. Therefore, we investigated the effects of high glucose and ANG II on fibronectin and TGF-beta production by human GVECs in vitro. We found that ANG II had no effect on the production of fibronectin and TGF-beta by GVECs. Using reverse transcriptase-polymerase chain reaction analysis, no ANG II receptor could be detected on these cells. However, high glucose induced a twofold increase in fibronectin (P < 0.01) and a three- to sixfold increase in TGF-beta (P < 0.001) production. Similar results were obtained by analyzing the mRNA levels of fibronectin (increased 2.7-fold) and TGF-beta (increased 3.5-fold). Addition of increasing concentrations of rTGF-beta to control cells resulted in increased fibronectin production. Neutralizing antibodies against TGF-beta significantly reversed the increase in fibronectin protein and mRNA caused by high glucose back to control levels. We conclude that high glucose concentrations stimulate the synthesis of fibronectin and that this effect is mediated by induction of TGF-beta. These results suggest that in diabetic nephropathy, high glucose levels play a role in changing the matrix composition of the glomerular basement membrane through induction of TGF-beta. Our results indicate that a contribution to this process by an effect of ANG II on GVECs seems unlikely.

Angiotensin II

Effects of high glucose on the production of heparan sulfate proteoglycan by mesangial and epithelial cells.

Changes in heparan sulfate metabolism may be important in the pathogenesis of diabetic nephropathy. Recent studies performed on renal biopsies from patients with diabetic nephropathy revealed a decrease in heparan sulfate glycosaminoglycan staining in the glomerular basement membrane without changes in staining for heparan sulfate proteoglycan-core protein. To understand this phenomenon at the cellular level, we investigated the effect of high glucose conditions on the synthesis of heparan sulfate proteoglycan by glomerular cells in vitro. Human adult mesangial and glomerular visceral epithelial cells were cultured under normal (5 mM) and high glucose (25 mM) conditions. Immunofluorescence performed on cells cultured in 25 mM glucose confirmed and extended the in vivo histological observations. Using metabolic labeling we observed an altered proteoglycan production under high glucose conditions, with predominantly a decrease in heparan sulfate compared to dermatan sulfate or chondroitin sulfate proteoglycan. N-sulfation analysis of heparan sulfate proteoglycan produced under high glucose conditions revealed less di- and tetrasaccharides compared to larger oligosaccharides, indicating an altered sulfation pattern. Furthermore, with quantification of glomerular basement membrane heparan sulfate by ELISA, a significant decrease was observed when mesangial and visceral epithelial cells were cultured in high glucose conditions. We conclude that high glucose concentration induces a significant alteration of heparan sulfate production by mesangial cells and visceral epithelial cells. Changes in sulfation and changes in absolute quantities are both observed and may explain the earlier in vivo observations. These changes may be of importance for the altered integrity of the glomerular charge-dependent filtration barrier and growth-factor matrix interactions in diabetic nephropathy.

Adult

Differential effects of angiotensin II and transforming growth factor beta on the production of heparan sulfate proteoglycan by mesangial cells in vitro.

This study approaches the question of whether angiotensin II (AngII) and transforming growth factor beta (TGF-beta) are important mediators for mesangial heparan sulfate proteoglycan (HSPG) production. This might explain the beneficial effects of angiotensin-converting enzyme inhibitors observed in several kidney diseases independent from their hemodynamic effects. Metabolic-labeling studies revealed that AngII induced a decrease of HSPG synthesis with decreases in N-sulfation of the glycosaminoglycan side chains. ELISA measurements with a heparan sulfate (HS)-specific monoclonal antibody confirmed that AngII decreased HS production. AngII increased TGF-beta production in a dose-dependent fashion. Specific mRNA for the large basement membrane HSPG (perlecan) decreased, whereas mRNA for TGF-beta increased after incubation with AngII. Blockade of the Subtype 1 Ang-II receptor (ATR1) reversed both the effects of AngII on HSPG and TGF-beta production. Coincubation of the mesangial cells with neutralizing antibodies against TGF-beta significantly reduced the production of HS as compared with control and AngII. These results indicate that the decrease in HS synthesis induced by AngII is not mediated by an increase in TGF-beta, but on the contrary, the increase in TGF-beta partially counteracts the inhibition of HS production by AngII. Considering the important role of HSPG in maintaining the glomerular charge barrier, cell proliferation, and matrix interaction, downregulation of the production of this molecule by increased local AngII concentrations could have important consequences, such as albuminuria and matrix expansion.

Adult

Effect of sulphated glycosaminoglycans on albuminuria in patients with overt diabetic (type 1) nephropathy.

Decreased expression of heparan sulphate has been shown in the glomerular basement membrane of patients with over diabetic nephropathy. Low- molecular-weight heparin (LMWH) is a highly sulphated glycosaminoglycan with strong structural and functional similarities to heparan sulphate. In a first study, we set out to assess if LMWH could decrease the urinary albumin excretion rate (AER) in diabetic patients with over nephropathy. Six patients entered a randomized, double-blind, placebo-controlled crossover study with treatment episodes of 1 month, separated by a 1-month wash-out. Patients self-administered prefilled syringes with either placebo or LMWH (enoxaparin 40 mg/0.4 ml) at bedtime. Baseline AER levels before either treatment period were similar. In contrast to placebo, AER significantly decreased from 447 (181-1102) to 295 (100-873) micrograms/min after 1 month treatment with LMWH (P < 0.05). Compared to placebo, the effect of LMWH did not reach statistical significance in these six patients after 1 month treatment (P = 0.16). Haemodynamic variables including glomerular filtration rate and filtration fraction did not change during enoxaparin treatment. We observed a favourable effect on AER during LMWH treatment in diabetic patients with over nephropathy. These data suggest that long-term treatment trials in a larger group of patients may potentially demonstrate a new therapeutic option for patients with over diabetic nephropathy.

Adult

Proteoglycan production by human glomerular visceral epithelial cells and mesangial cells in vitro.

Proteoglycans metabolically labelled with [35S]sulphate and [3H]glucosamine or [3H]leucine were isolated from the incubation medium and cell layer of human adult mesangial cells and glomerular visceral epithelial cells using sequential DEAE chromatography purification steps followed by gel-filtration chromatography. The proteoglycan composition of each peak was analysed by treatment with HNO2, chondroitinase ABC or chondroitinase AC followed by chromatography on Sephadex G-50 columns. Heparan sulphate proteoglycan (HSPG) and dermatan sulphate proteoglycan were detected in both the culture medium and cell layer of mesangial cells. Culture medium of glomerular visceral epithelial cells contained HSPG and a second proteoglycan with the properties of a hybrid molecule containing HS and chondroitin sulphate (CS). The cell layer contained HSPG and CSPG. Detailed analysis of the hybrid molecule revealed that it had an apparent molecular mass of 400 kDa. SDS/PAGE of hybrid molecules, after treatment with heparitinase and chondroitinase ABC, revealed a core protein of 80 kDa. Using 1.8% polyacrylamide/0.6% agarose-gel electrophoresis, we deduced that the HS and CS were independently attached to one core protein. Because glomerular-basement-membrane HSPG is thought to be derived from mesangial cells and glomerular visceral epithelial cells and this molecule is involved in several kidney diseases, we investigated its synthesis in more detail. Anti-(rat glomerular-basement-membrane HSPG) monoclonal antibodies (JM403) and anti-(human glomerular-basement-membrane HSPG) polyclonal antibodies (both antibodies known to react with the large basement-membrane HSPG, perlecan) reacted strongly with HSPG obtained from both mesangial cells and glomerular visceral epithelial cells. However, the hybrid molecule did not react with these antibodies, suggesting that the HS side chain and the core protein were different from glomerular-basement-membrane HSPG. To quantify HS we performed an inhibition ELISA using mouse antibodies specific for glomerular-basement-membrane HS glycosaminoglycan side chains. Glomerular visceral epithelial cells produced significantly higher levels of HS (between 197.56 and 269.40 micrograms/72 h per 10(6) cells) than mesangial cells (between 29.8 and 45.5 micrograms/72 h per 10(6) cells) (three different cell lines; n = 3; P < 0.001). HS production by these cells was inhibited by cycloheximide, revealing that it was synthesized de novo. Expression of perlecan mRNA, demonstrated using reverse transcriptase PCR, was different in the two cell types. We conclude that glomerular visceral epithelial cells and mesangial cells have characteristic patterns of proteoglycan production. Glomerular visceral epithelial cells produced a hybrid proteoglycan containing CS and HS independently attached to its core protein.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Decreased interstitial apolipoprotein A-I levels in IDDM patients with diabetic nephropathy.

The risk of cardiovascular morbidity and mortality is highly increased in patients with diabetic nephropathy. Postulating that the generalized vasculopathy observed in these patients may enhance transcapillary filtration of lipids and lipoproteins resulting in a more atherogenic interstitial lipid profile, we set out to analyze the composition of their interstitial fluid. We studied healthy control subjects (n = 9), normoalbuminuric insulin-dependent diabetes mellitus (IDDM) patients (n = 16), and IDDM patients with diabetic nephropathy (n = 11) matched for age, body mass index, smoking habits, duration of diabetes, and metabolic control. Interstitial fluid was collected after an overnight fast by applying mild suction (200 mmHg) to the skin. Interstitial apolipoprotein A-I (apoA-I) levels were significantly lower in patients with nephropathy (0.18 +/- 0.10 milligram [mean +/- SD]) compared with normoalbuminuric diabetic patients (0.29 +/- 0.08 milligram) and healthy control subjects (0.30 +/- 0.09 milligram). Interstitial apolipoprotein B:apoA-I ratios tended to be higher in patients with diabetic nephropathy. In these patients, normal interstitial low-density lipoprotein cholesterol concentrations were observed in the presence of lower apoA-I levels. Transcapillary filtration of apoA-I was significantly lower in patients with diabetic nephropathy. Furthermore, an altered multiple regression model explaining interstitial apoA-I levels was observed in diabetic nephropathy. In this model, transcapillary protein (IgG) filtration and serum apoA-I levels no longer explained interstitial apoA-I levels. If we assume that interstitial apoA-I is involved in reverse cholesterol transport, these data suggest a more atherogenic interstitial lipoprotein profile in IDDM patients with nephropathy.

Adult

Expression of glomerular extracellular matrix components in human diabetic nephropathy: decrease of heparan sulphate in the glomerular basement membrane.

Diabetic nephropathy is characterized by albuminuria which proceeds to overt proteinuria. The highly negatively stained HS side chain of heparan sulphate proteoglycan (HSPG) is a major determinant of the charge-dependent permeability of the GBM. We set out to study the presence of HS and HSPG in the GBM of patients with diabetic nephropathy using newly developed monoclonal antibodies, and to compare HSPG expression to the expression of other previously investigated glomerular extracellular matrix compounds. Immunohistochemically, glomerular extracellular matrix components were analysed in 14 renal biopsies of patients with diabetic nephropathy and compared with those of normal control subjects. Monoclonal antibodies used were: JM403 against the HS side chain of GBM HSPG and JM72 against the HSPG-core protein. Also, a polyclonal antiserum (B31) against human GBM-HSPG-core protein was used. Additionally, antibodies were used against collagen types I, III, IV and against alpha 1 (IV)NC, alpha 3(IV)NC and fibronectin. Staining was scored for intensity and for staining pattern by four independent observers who had no previous knowledge of the sample origin. No glomerular staining was seen for collagen type I. Collagen type III was present in some diabetic nodules. Anti-collagen type IV showed a decreased GBM staining in patients with diabetic nephropathy (p = 0.04). With anti-alpha 1 (IV)NC no changes in GBM staining intensity were observed; with anti-alpha 3 (IV)NC brilliant GBM staining was seen in both groups. Increased mesangial staining (p = 0.003) was seen with anti-collagen type IV in biopsies with nodular lesions.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

Islet cell hormone release immediately after human pancreatic transplantation. A marker of tissue damage associated with cold ischemia.

Pancreatic graft procurement, preservation, and transplantation surgery may result in damage to and loss of the integrity of endocrine cells and consequently in leakage of cell products into the insular vascular capillaries. Thus, the amount of alpha-, beta-, and pancreatic polypeptide (PP) cell products released into the vascular space of the recipient immediately after graft reperfusion may reflect islet cell injury. To test this hypothesis, we assessed glucagon, PP, C-peptide, and insulin levels in a prospective study of 22 consecutive renal-pancreatic transplantations. Transplantation-related parameters were used to account for differences in hormone release. Five grafts were preserved using Euro-Collins preservation fluid and 17 grafts were preserved using University of Wisconsin solution (UW). The first sign of a reinstalled physiological axis was the decrease of the blood glucose concentration after a median duration of 40 min (range 5-90 min) and the association of the recipient's ambient blood glucose levels with insulin release between 25 and 180 min after reperfusion. The delay period before a fall in blood glucose was observed correlated with cold ischemia time (rs = 0.73, P < 0.001, n = 21). An immediate and marked increase in plasma levels of glucagon (from 180 +/- 18 to 585 +/- 99 ng/L, mean +/- SEM), PP (from 57 +/- 8 to 122 +/- 13 pmol/L), C-peptide (from < 0.06 +/- 0.02 to 5.43 +/- 0.63 nmol/L), and insulin (from 0.15 +/- 0.21 to 2.05 +/- 0.26 nmol/L) was observed. C-peptide release correlated with glucagon (r = 0.76, P < 0.001) and PP (r = 0.60, P < 0.01). The hormone release was compared with computed tomography scans that were performed in the immediate postoperative period in 15 UW-preserved allografts. The diameter of the pancreatic head was increased and ranged from 4.5 to 7.7 cm (mean 6.2 cm). Peroperative C-peptide release significantly correlated with morphological graft changes reflected by the pancreatic head diameter (r = 0.58, P = 0.02). In a stepwise multiple regression analysis, cold ischemia time was a significant factor for the release of PP (r2 = 0.18, P = 0.049) and C-peptide (r2 = 0.35, P = 0.004). We suggest that peroperative hormone release reflects endocrine tissue damage. Furthermore, cold ischemia time may jeopardize the pancreatic allograft after relatively short preservation times, even when UW is used.

Adult

Simultaneous pancreas and kidney transplantation: a feasible procedure in selected patients.

We analyzed the overall results of 24 simultaneous pancreas and kidney transplantations (SPK), performed in our hospital between April 1986 and June 1990. All patients had type I diabetes mellitus and end-stage renal failure. We used bladder drainage of the pancreatic exocrine secretions through a duodenocystostomy. The blood vessels of both grafts were anastomosed to the iliac vessels. The immunosuppressive management was triple-therapy with cyclosporin, azathioprine and prednisone. All organs were transplanted without matching donors and recipients for HLA. At the time of transplantation, mean recipient age was 37 yr; the average duration of diabetes was 22 yr. After disappointing results in the first 4 patients, the pancreas was placed intraperitoneally instead of extraperitoneally and the antibiotic drug regimen was altered. In the second group (n = 20), patient survival was 100%; 1-yr pancreas and kidney graft survival were 65 and 62%, respectively. Duration of hospitalization and pancreas and kidney graft loss were positively correlated with the number of rejection episodes. After 1 yr of follow-up, the mean creatinine clearance was 62 ml/min and the mean HbA1c was 5.5%. Blood glucose levels and oral glucose tolerance tests were also normal. We conclude that patient and graft survival after SPK are satisfactory, although rejection-related morbidity is still a major problem.

Adult

Nontropical pyomyositis as a cause of subacute, multifocal myalgia in the acquired immunodeficiency syndrome.

We report a case of nontropical pyomyositis in a patient with acquired immunodeficiency syndrome and disseminated Mycobacterium avium infection, in which severe myalgia was the presenting symptom over several weeks. Multifocal muscle lesions were identified by gallium scanning and magnetic resonance imaging techniques. The epidemiology, possible pathogenesis, clinical features, diagnostic imaging, and therapy are reviewed. Early suspicion of nontropical pyomyositis in severely immunocompromised patients with "cryptic" myalgia is recommended.

Acquired Immunodeficiency Syndrome