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Biomedical subjects

J R Diamond

Publications and source records attributed to J R Diamond.

At least 19 recordsLinked to original sources

Increased renal expression of monocyte chemoattractant protein-1 and osteopontin in ADPKD in rats.

BACKGROUND: Human autosomal-dominant polycystic kidney disease (ADPKD) is variable in the rate of deterioration of renal function, with end-stage renal disease (ESRD) occurring in only approximately 50% of affected individuals. Evidence suggests that interstitial inflammation may be important in the development of ESRD in ADPKD. Han:SPRD rats manifest ADPKD that resembles the human disease. Homozygous cystic (Cy/Cy) rats develop rapidly progressive PKD and die near age 3 weeks. Heterozygous (Cy/+) females develop slowly progressive PKD without evidence of renal dysfunction until the second year of life, whereas heterozygous (Cy/+) males develop more aggressive PKD with renal failure beginning by 8 to 12 weeks of age. METHODS: To examine the relationship between proinflammatory chemoattractants and the development of interstitial inflammation and ultimately renal failure in ADPKD, we evaluated monocyte chemoattractant protein-1 (MCP-1) and osteopontin mRNAs and proteins in kidneys from Han:SRPD rats. RESULTS: MCP-1 and osteopontin mRNAs, expressed at low levels in kidneys from normal (+/+) animals at all ages, were markedly elevated in kidneys from 3-week-old Cy/Cy animals. In kidneys from heterozygous (Cy/+) adults of either gender, MCP-1 and osteopontin mRNAs were more abundant than normal; MCP-1 mRNA was more abundant in Cy/+ males than in females. Thus, chemoattractant mRNA expression correlated with the development of renal failure in Cy/Cy and Cy/+ rats. Osteopontin mRNA, localized by in situ hybridization, was moderately expressed in the renal medulla of normal animals; however, this mRNA was expressed at very high levels in the cystic epithelia of Cy/+ and Cy/Cy animals. MCP-1 and osteopontin proteins, localized by immunohistochemistry, were weakly detected in +/+ kidneys but were densely expressed in Cy/Cy and in adult Cy/+ kidneys, primarily over cystic epithelium. Increased expression of chemoattractants was associated with the accumulation of ED-1 positive cells (macrophages) in the interstitium of cystic kidneys. CONCLUSIONS: We suggest that proinflammatory chemoattractants have a role in the development of interstitial inflammation and renal failure in ADPKD.

Animals↗

Chemokine expression in the obstructed kidney.

Chemokines are chemotactic cytokines that are important mediators of leukocyte extravasation and chemotaxis. Herein, we provide evidence that after 1 day of unilateral ureteral obstruction (UUO), the mouse obstructed kidney (OBK) expresses MCP-1 (monocyte chemoattractant protein-1), RANTES (Regulated on activation normal T-cell expressed and secreted) and IP-10 (interferon-gamma-induced protein-10). In addition, by day 7, MIP-2 (macrophage inflammatory protein-2) expression is elevated in the obstructed kidneys compared to the contralateral control kidneys (CLK). After 7 days of obstruction, RANTES was the most abundant of the four chemokines detected in the OBK. In situ hybridization results indicate that several cellular compartments contribute to the expression of RANTES in the OBK. However, clearly cortical tubules within the OBK contribute substantially to the elevated expression of RANTES. These data support the contention that the cortical tubular epithelium plays a pivotal role in the inflammation associated with experimental hydronephrosis.

Animals↗

Variation in the PPARalpha gene is associated with altered function in vitro and plasma lipid concentrations in Type II diabetic subjects.

AIMS/HYPOTHESIS: Peroxisome proliferator activated receptor alpha (PPARalpha) regulates genes involved in lipid metabolism, haemostasis and inflammation, in response to fatty acids and fibrates, making it a candidate gene for risk of dyslipidaemia, atherosclerosis and coronary artery disease. Plasma non-esterified fatty acids are increased in subjects with Type II (non-insulin-dependent) diabetes mellitus, suggesting that PPARalpha could link Type II diabetes and dyslipidaemia, and affect response to fibrates. This has been investigated in association studies in healthy and diabetic subjects and in vitro studies. METHODS: The human PPARalpha gene was isolated and screened for variation by single strand conformation polymorphism analysis. Genotypes were determined for 129 Type II diabetic subjects and 2508 healthy men. The association with plasma lipid concentrations was examined. The function of the V162 variant was examined in co-transfection assays. RESULTS: We identified two polymorphisms, one in intron 3 and a missense mutation, leucine 162 to valine, in the DNA binding domain. In Type II diabetic patients, V162 allele carriers had higher total cholesterol, HDL cholesterol and apoAI whereas intron 3 rare allele carriers had higher apoAI concentrations. By contrast, no effect was observed in healthy rare allele carriers. In vitro, the V162 variant showed greater transactivation of a reporter gene construct. CONCLUSION/INTERPRETATION: Naturally occurring variation alters PPARalpha function, influencing plasma lipid concentrations in Type II diabetic patients but not healthy people. This demonstrates that PPARalpha is a link between diabetes and dyslipidaemia, and so could influence the risk of coronary artery disease, the greatest cause of morbidity and mortality in Type II diabetes.

Apolipoprotein A-I↗

Angiotensinogen and AT(1) antisense inhibition of osteopontin translation in rat proximal tubular cells.

Antisense oligonucleotide inhibition of angiotensinogen and ANG II type 1 receptor (AT(1)) mRNA translation in rat proximal tubules (PT) was examined to provide direct evidence for a role of the renin-angiotensin system (RAS) in upregulated osteopontin expression observed following mechanical cell stretch. Male Sprague-Dawley rats underwent unilateral ureteral obstruction (UUO) under Brevital anesthesia. In situ hybridization and Western blot analysis demonstrated angiotensinogen mRNA and angiotensin converting enzyme (ACE) protein localized to PTs and upregulated in obstructed kidneys, respectively, confirming an increased expression of renal RAS in vivo. In vitro studies were performed to provide mechanistic insight into ANG II-dependent osteopontin expression following mechanical cell stretch, which putatively mimics the increased PT luminal pressure post-UUO. A cationic transfection method was used to introduce either angiotensinogen or AT(1) antisense oligonucleotide into cultured rat PT cells prior to 1 h of cyclic mechanical cell stretch. Northern blot analysis revealed that PT cells subjected to cyclic mechanical stretch with/without prior transfection with a sense oligonucleotide exhibited increased osteopontin mRNA expression compared with unstretched cells. Blockade of either angiotensinogen or AT(1) mRNA translation by antisense oligonucleotide inhibition prior to cell stretch was found to significantly decrease osteopontin mRNA levels 2.4-fold (P<0.004) and 1.6-fold (P<0.001), respectively, compared with values observed in control unstretched cells. This study provides evidence that stretch-induced upregulation of osteopontin mRNA expression is mediated, in part, via production of ANG II. These results lend insight into upregulation of osteopontin via a local PT RAS leading to macrophage infiltration in the tubulointerstitium in experimental hydronephrosis.

Angiotensin II↗

Regulation of proximal tubular osteopontin in experimental hydronephrosis in the rat.

BACKGROUND: Osteopontin is a tubular-derived glycoprotein with macrophage chemoattractant properties. Our previous observations demonstrate that osteopontin is involved in the accumulation of macrophages within the renal cortex of rats following unilateral ureteral obstruction (UUO). METHODS: The present study performed Northern and Western blot analyses of isolated proximal tubular cells exposed to exogenous angiotensin II, and cultured rat proximal tubular cells subjected to one hour of cyclic mechanical stretch, which provided insight into mechanisms involving the proximal tubular renin-angiotensin system in the increased expression of cortical osteopontin following hydronephrosis. RESULTS: In situ hybridization, using a 35S-labeled antisense riboprobe, showed osteopontin mRNA transcription localized to the cortical tubules of the obstructed kidney. Freshly isolated proximal tubules incubated with angiotensin II (10-5 M) for one hour had increased osteopontin mRNA and protein expression by Northern and Western blot analyses, respectively. Pre-treatment of proximal tubules with losartan (10-5 M) for one hour prior to the addition of exogenous angiotensin II (10-5 M) decreased osteopontin mRNA and protein expression. Rat proximal tubule cells subjected to cyclic mechanical stretch for one hour exhibited a 2.1-fold increment in osteopontin mRNA levels, which was normalized following pre-treatment with losartan. CONCLUSIONS: This study provides evidence that angiotensin II, produced by the proximal tubule in the obstructed kidney as a result of mechanical injury, possibly mechanical stretch, may stimulate angiotensin II type I receptor activation, leading to up-regulated osteopontin expression and secretion by the proximal tubule, thereby facilitating macrophage recruitment into the renal interstitium.

Animals↗

Cardiovascular outcomes in type 2 diabetes. A double-blind placebo-controlled study of bezafibrate: the St. Mary's, Ealing, Northwick Park Diabetes Cardiovascular Disease Prevention (SENDCAP) Study.

OBJECTIVE: To determine whether serum lipid intervention, in addition to conventional diabetes treatment, could alter cardiovascular outcomes in type 2 diabetes. RESEARCH DESIGN AND METHODS: There were 164 type 2 diabetic subjects (117 men, 47 women) without a history of clinical cardiovascular disease randomized to receive either bezafibrate or placebo daily on a double-blind basis in addition to routine diabetes treatment and followed prospectively for a minimum of 3 years. Serial biochemical and noninvasive vascular assessments, carotid and femoral artery B-mode ultrasound measurements, and those pertaining to coronary heart disease (CHD)--clinical history, the World Health Organization (WHO) cardiovascular questionnaire, and resting and exercise electrocardiogram (ECG)--were recorded. RESULTS: Bezafibrate treatment was associated with significantly greater reductions over 3 years in median serum triglyceride (-32 vs. 4%, P = 0.001), total cholesterol (-7 vs. -0.3%, P = 0.004), and total-to-HDL cholesterol ratio (-12 vs. -0.0%, P = 0.001), and an increase in HDL cholesterol (6 vs. -2%, P = 0.02) as compared with placebo. There was a trend toward a greater reduction of fibrinogen (-18 vs. -6%, P = 0.08) at 3 years. No significant differences between the two groups were found in the progress of ultrasonically measured arterial disease. In those treated with bezafibrate, there was a significant reduction (P = 0.01, log-rank test) in the combined incidence of Minnesota-coded probable ischemic change on the resting ECG and of documented myocardial infarction. CONCLUSIONS: Improving dyslipidemia in type 2 diabetic subjects had no effect on the progress of ultrasonically measured arterial disease, although the lower rate of "definite CHD events" in the treated group suggests that this might result in a reduction in the incidence of coronary heart disease.

Adult↗

Mechanisms of interstitial fibrosis in obstructive nephropathy.

Numerous pathological processes are involved in the renal tubulointerstitial fibrogenic reaction that occurs after ureteral ligation. Central to these maladaptive events is a florid interstitial monocytic infiltration of the tubulointerstitium, which is preceded by a proximal tubular up-regulation of macrophage chemoattractants. Once within the peritubular and periglomerular space, these macrophages are capable of releasing a potent armamentarium of peptide growth factors. TGF-beta has been singled out as a pivotal growth factor mediating fibrogenesis owing to its multifaceted effects on fibroblasts, tubular cells, matrix metalloproteinases, and TIMPs. A growing body of experimental studies using the rat hydronephrosis model is now demonstrating that angiotensin II may, in addition to its well-known hemodynamic effect, also be pro-inflammatory and pro-fibrogenic.

Angiotensin Receptor Antagonists↗

The role of macrophages and reactive oxygen species in experimental hydronephrosis.

A common feature to a number of immune and non-immune renal diseases of diverse etiology is the infiltration of the glomerular and tubulointerstitial compartments by infiltrating macrophages. This review will focus on experimental data supporting the role of the infiltrating renal macrophage as a mediator of interstitial fibrosis during the course of obstructive nephropathy as it pertains to the unilateral ureteral obstruction model in the rat. The mechanical disturbance resulting from complete ureteral obstruction causes tubular injury/dysfunction resulting in a florid pro-inflammatory and fibrogenic response. The central pathobiological theme drawn from data in this model is that macrophage-derived pro-inflammatory mediators, including fibrogenic cytokines and reactive oxygen species, represent pivotal links between the pro-inflammatory state of ureteral obstruction and the late development of interstitial fibrosis. We propose that increased intrarenal oxidant stress, owing to an overproduction of reactive oxygen species and dysregulated tubular antioxidant enzymes, can induce overexpression of fibrogenic cytokines and chemoattractants, as well as increased transcription and synthesis of extracellular matrix proteins, leading to tubular loss and fibrogenesis.

Animals↗

Endotheliopathy: a continuum of hemolytic uremic syndrome due to mitomycin therapy.

Hemolytic uremic syndrome (HUS) is a rare, often fatal complication of mitomycin C therapy. It is generally accepted that HUS is, in part, caused by endothelial cell dysfunction. Endothelial cells modulate blood flow, blood pressure, and myointimal proliferation. Endothelial cells synthesize and release products that modulate vascular tone and regulate vascular smooth muscle cell growth. We describe a patient who developed HUS secondary to mitomycin C, resulting in end-stage renal disease and necessitating chronic hemodialysis. Over several months, the patient subsequently developed multisystem organ failure involving the heart, liver, and intestine that was associated with angiographically documented small, distal vessel occlusive disease and ultrasonographically identified coronary artery intimal hyperplasia. We propose that a diffuse ongoing endothelial cell dysfunction (ie, endotheliopathy) is the putative mechanism for this patient's clinical course. To our knowledge, this continuum of HUS presenting as a multisystem, progressive disorder has not been previously reported.

Adult↗

Increased expression of decorin in experimental hydronephrosis.

Transforming growth factor (TGF)-beta1 is a potential mediator of tubulointerstitial (TI) fibrosis in the rat unilateral ureteral obstruction (UUO) model. Decorin is a protein composed of a core protein and a chondroitin sulfate side chain and is capable of inactivating TGF-beta. Since TGF-beta strongly induces the synthesis of decorin in experimental glomerulonephritis, it was our intent to investigate whether altered decorin expression is operant in the rat UUO model. Renal cortical decorin mRNA levels initially became elevated (2.5-fold) in obstructed kidney (OBK) versus contralateral unobstructed kidney (CUK) 24 hours post-UUO and remained greater in the OBK specimens at 48 (2.3-fold), 96 (2.2-fold), and 168 (1.9-fold) hours post-ureteral ligation. Whole-body X-irradiation 11 days prior to UUO significantly reduced decorin mRNA at 24 and 96 hours post-UUO. On immunolabeling, decorin was only evident in the adventitia of blood vessels in CUK specimens at any time point after UUO. In contrast, OBK specimens initially demonstrated periglomerular and peritubular interstitial localization of decorin at 96 hours post-ureteral ligation, which became even more intense and diffuse in the tubulointerstitium at 168 hours post-UUO. On Western analysis, there were highly significant increases in decorin protein expression in the OBK versus the CUK specimens at 96 and 168 hours post-UUO. Levels of active TGF-beta1 in the renal cortex of OBK were 1.9- and 3.6-fold higher than CUK at 48 and 96 hours post-UUO. In summary, we demonstrated that post-UUO, decorin mRNA and protein expression is up-regulated in the renal cortex of OBK, but not CUK, specimens in a temporal parallel with active TGF-beta1 levels and macrophage infiltration. We postulate that the development of TI fibrosis in this model may be related to only a physiologic induction of decorin by TGF-beta, and that pharmacologic levels may be required to retard or prevent scarring via TGF-beta inhibition.

Animals↗

Oxidized LDL stimulates the expression of TGF-beta and fibronectin in human glomerular epithelial cells.

Abnormal lipid accumulation in glomeruli is a recognized early event in the development of glomerulosclerosis. The presence of LDL and scavenger receptors has recently been demonstrated in glomerular cells, including the visceral epithelial cells. To explore the possible molecular mechanisms of lipid-induced glomerular injury, the present investigation was conducted to examine the effects of oxidized LDL (ox-LDL) on the expression of transforming growth factor (TGF)-beta and fibronectin by cultured human glomerular epithelial cells (GEC). Cultured GEC were exposed to human ox-LDL (0 to 100 micrograms/ml) for various time points. Ox-LDL induced a dose- and time-dependent increase in the expression of TGF-beta mRNA. Actinomycin D, a transcriptional inhibitor, but not cycloheximide, a protein synthesis inhibitor, inhibited the response. GEC exposed to ox-LDL also demonstrated elevated levels of fibronectin mRNA. In addition, treatment of GEC with ox-LDL resulted in increased TGF-beta and fibronectin protein expression as detected by immunocytochemistry. Addition of anti-TGF-beta antibody significantly inhibited the increase in fibronectin message level induced by ox-LDL. These data suggest that ox-LDL stimulates matrix protein fibronectin in GEC by a mechanism involving expression of TGF-beta. Thus, accumulation of lipids in human glomerular epithelial cells may contribute to the pathogenesis of glomerulosclerosis through TGF-beta mediated mechanism(s).

Antibody Specificity↗

Antioxidant expression in experimental hydronephrosis: role of mechanical stretch and growth factors.

We assessed whether levels of renal reactive oxygen species (ROS) and antioxidant enzymes are perturbed in rats following unilateral ureteral obstruction (UUO). The mechanism of catalase perturbation was investigated using proximal tubule suspensions following stimulation with transforming growth factor (TGF)-beta and interleukin (IL)-1 and in a proximal tubular cell line (OKC) subjected to cyclic mechanical stretch, which mimics the early hydrodynamic derangement after UUO. Levels of catalase and copperzinc superoxide dismutase (Cu,Zn-SOD) mRNA from 96-h UUO rats showed a 5.5-fold (P < 0.001) and 5.0-fold (P < 0.001) decrease, respectively, compared with the contralateral unobstructed kidney (CUK). Levels of superoxide anion and hydrogen peroxide showed a significant 1.8-fold (P < 0.0001) and 14.0-fold (P < 0.0001) increase, respectively, in 96-h UUO kidney slice cultures. In situ hybridization and immunohistochemistry showed Cu,Zn-SOD and catalase mRNA and protein transcription expressed in proximal tubules of UUO and CUK specimens. Catalase mRNA levels were markedly downregulated following a 1-h exposure of isolated proximal tubules to TGF-beta (0.1-10 ng) and IL-1 (1-5 ng), in comparison to control proximal tubular suspensions. OKC subjected to cyclic mechanical stretch for 1-24 h had marked decrements in catalase mRNA levels, compared with unstretched cells at the same time point. These results indicate that a primary downregulation of proximal tubular Cu,Zn-SOD and catalase expression develops in the proximal tubules of UUO with consequent increments in cortical oxidant levels. These findings suggest that either an early mechanical disturbance produced by UUO or local tubular generation of cytokines can reduce tubular catalase expression. The downregulation of catalase mRNA expression, together with increased oxidant stress in the rat renal cortex post-UUO, may amplify the proinflammatory state of experimental hydronephrosis culminating in tubulointerstitial injury and fibrosis.

Animals↗

Obstructive nephropathy as a result of retroperitoneal fibrosis: a review of its pathogenesis and associations.

Retroperitoneal fibrosis is a rare disease, typically with an insidious clinical course. It is thought that this disease process is perhaps an exaggerated reaction to an inciting inflammatory event. In this study, a case of retroperitoneal fibrosis is reported, in which the patient presented with typical symptoms of retroperitoneal fibrosis, along with some atypical vasculitic symptomatology. Retroperitoneal fibrosis is a disease process with an unknown etiology, which has been observed to be associated with a number of different possible inciting factors. Two factors that have been documented in the literature as being associated with retroperitoneal fibrosis include the use of beta-blocking agents, and connective tissue disease processes such as systemic lupus erythematosus. The patient discussed was using beta-blocker medication and also had signs and symptoms suggestive of a lupus syndrome. There are no reported cases of the combined association of beta-blocker usage, lupus, and retroperitoneal fibrosis.

Diagnosis, Differential↗

Relative fasting hypoinsulinaemia and ultrasonically measured early arterial disease in type 2 diabetes. The SENDCAP Study Group, St. Mary's, Ealing, Northwick Park Diabetes Cardiovascular Disease Prevention Study.

Macrovasular disease is the most important cause of morbidity and mortality in Type 2 (non-insulin-dependent) diabetes. Dyslipidaemia and hyperinsulinaemia have been proposed as aetiological factors. This paper describes the interrelationships between fasting serum insulin, serum lipids, and the extent of ultrasonically measured early arterial disease in Type 2 diabetic subjects screened for entry into a prospective study set up to ascertain whether improving serum lipids can alter the progress of arterial disease in Type 2 diabetes. Measurements were made of the initima media thickness (IMT) in the carotid artery, and an arterial ultrasound score (AUS) based on appearances of both carotid and femoral arteries was calculated for 192 established Type 2 diabetic subjects, males and females, mean age 51 (range 35-66) years, median duration of diabetes 3.5 years, with no known cardiovascular disease. Multiple regression analysis showed that carotid IMT increased with age and was inversely related to serum insulin (variance accounted for, R2, = 8.8%, p = 0.0002). AUS increased with age and was related inversely to serum insulin, or to C-peptide when this was substituted in the model. In addition to age and serum insulin, AUS was positively associated with non-HDL cholesterol and negatively with HDL 3 cholesterol (R2 = 26%, p = 0.0001). Early thickening and damage to the arterial wall in Type 2 diabetes may be related to relative fasting hypoinsulinaemia.

Adult↗

Expression of adhesion molecules in rat renal cortex during experimental hydronephrosis.

Unilateral ureteral obstruction (UUO) is associated with an early and steadily increasing infiltration of macrophages into the renal cortical interstitium. As adhesion molecules may play an important role in macrophage recruitment following the mechanical disturbance after UUO, we delineated the time course of intercellular adhesion molecule (ICAM)-1 and vascular adhesion molecule (VCAM)-1 mRNA and protein expression. A significant 6.6- (P < 0.001), 2.6- (P < 0.025), 2.6- (P < 0.01), and 2.0-fold (P < 0.005) increase in ICAM-1 mRNA expression was observed at 12, 24, 48, and 96 hours after obstruction, respectively, in comparison to the contralateral unobstructed kidney (CUK). Despite an apparent relief of obstruction, four weeks following reversal of obstruction mRNA levels of ICAM-1 remained equivalent to the 96-hour obstructed kidney group. No significant difference in VCAM-1 mRNA expression was observed between the obstructed kidneys and CUK specimens. Immunohistochemistry revealed focal labeling of ICAM-1 on the apical and basolateral surface of the renal tubules, peritubular interstitium, and vessels of the renal cortex by 12 hours after UUO. In contrast, only faint staining for ICAM-1 protein was observed in the cortex from CUK specimens. The obstructed and CUK specimens exhibited diffuse immunolocalization of VCAM-1 in the cortical tubules and Bowman's capsular epithelium. In situ hybridization showed mRNA transcription for ICAM-1 localized in the peritubular interstitium and cortical tubules from obstructed kidneys. To lend mechanistic insight into the response of ICAM-1 to the mechanical disturbance after UUO, the expression of ICAM-1 mRNA was examined when freshly isolated proximal tubules were exposed to angiotensin II (1 to 100 microM) immediately after preparation. Levels of ICAM-1 mRNA were elevated 1.4-, 7.1-, and 3.7-fold when exposed to 10 microM, 100 microM, and 1000 microM of angiotensin II for one hour, respectively, when compared to control cultures. The addition of losartan to proximal tubules for one hour prior to angiotensin II stimulation decreased ICAM-1 levels to control values. In summary, this investigation demonstrates that ICAM-1 is important in the initiation of macrophage recruitment into the renal cortex of the obstructed kidney. These findings provide evidence that angiotensin II, produced after ureteral ligation as a result of tubular injury and dysfunction, may play a central role in the release of ICAM-1 from the proximal tubule epithelial cells.

Angiotensin II↗