Neuropilin-1 (NRP1) and neuropilin-2 (NRP2) are transmembrane glycoproteins with large extracellular domains that interact with class 3 semaphorins, vascular endothelial growth factor (VEGF) family members, and ligands, such as hepatocyte growth factor, platelet-derived growth factor BB, transforming growth factor-β1 (TGF-β1), and fibroblast growth factor2 (FGF2). Neuropilins (NRPs) have been implicated in tumor growth and vascularization, as novel mediators of the primary immune response and in regeneration and repair; however, their role in renal pathophysiology is largely unknown. Here, we report upregulation of tubular and interstitial NRP2 protein expression in patients with focal segmental glomerulosclerosis (FSGS). In an additional cohort of patients with minimal change disease (MCD), membranous nephropathy (MN), and FSGS, elevated NRP2 mRNA expression in kidney biopsies inversely correlated with estimated glomerular filtration rate (eGFR) at the time of biopsy. Furthermore, upregulation of NRP2 mRNA correlated with post-bioptic decline of kidney function. Expression of NRP1 and NRP2 in human proximal tubular cells (PTCs) was differentially affected after stimulation with TGF-β1, interleukin-1β (IL-1β), and oncostatin M (OSM). Although the pro-fibrotic mediators, TGF-β1 and IL-1β, induced upregulation of NRP2 expression but downregulation of NRP1 expression, OSM stimulated the expression of both NRP1 and NRP2. Basal and OSM-induced NRP1 mRNA expression, as well as TGF-β1-induced NRP2 mRNA and protein expression were partially mediated by MEK1/2-ERK1/2 signaling. This is the first report suggesting a differential role of NRP1 and NRP2 in renal fibrogenesis, and TGF-β1, IL-1β, and OSM represent the first ligands known to stimulate NRP2 expression in mammalian cells.
The chemokine CX(3)C-L/FKN is expressed in both soluble and transmembrane/mucin hybrid forms, thus combining chemoattractant functions together with receptor/adhesion molecule properties. In contrast to other chemokine receptors, CX(3)C-R is expressed not only on lymphoid cell populations, but also on several intrinsic cells including tubular epithelial cells and renal fibroblasts where it regulates various aspects of cell viability, matrix synthesis and degradation, migration, inflammation as well as oxidative stress. In the kidney, the chemokines/receptor pair has been shown to play a role in nephrogenesis as well as in the pathogenesis primary and secondary nephropathies. In several animal models and human specimens with acute and chronic renal failure including allograft nephropathy, CX(3)C-L/CX(3)C-R has been shown to exert immune and non-immune mediated renal damages. A blockade of this chemokine system ameliorated acute and chronic renal damages, though the latter to a more robust extent. There seems to a role of the CX(3)C-L/CX(3)C-R pair in mediating acute renal inflammation as well as in progressive chronic renal failure. However, functional studies are lacking for many aspects and further studies are necessary to better define the functional properties of CX(3)C-L/FKN and its receptor.
Das Tubulointerstitium macht etwa 85–90% des Nierenvolumens aus, es besteht aus Tubuli und dem dazwischen liegenden Interstitium. Das Tubulussystem reguliert die Ausscheidung der mit der Nahrung aufgenommenen Salze und hält die Konzentration dieser Ionen und die Osmolalität des Blutes innerhalb enger Grenzen konstant, es reguliert den Wasser-, den Säure-Basen- und den Kalzium-Phosphat-Haushalt, bildet Hormone und baut sie ab, ist an der Blutdruckregulation und übernimmt Funktionen im Prozess der Endharnbildung. Als Tubulopathien werden ganz allgemein tubuläre Funktionsstörungen beschrieben, deren Manifestationen und Ausprägungen wiederum sehr unterschiedlich sein können. Das Interstitium besteht im Wesentlichen aus extrazellulärer Matrix und residenten interstitiellen Fibroblasten, selten auch aus anderen zellulären Elementen. Entzündungen des Tubulointerstitiums können in akute und chronische Formen differenziert werden, darüber hinaus in primäre und sekundäre Formen. Zur Therapie der medikamentös induzierten akuten interstitiellen Nephritis bietet sich neben dem Weglassen des induzierenden Medikamentes eine frühe Glukokortikoidtherapie an.
Tubulointerstitial fibrosis is an integral part of the structural changes of the kidney in chronic progressive renal failure. The accumulation of the extracellular matrix in the tubulointerstitial space is mediated mainly by myofibroblasts. These are derived from resident interstitial fibroblasts, tubular epithelial cells, periadventitial cells, and possibly also mesenchymal stem cells and endothelial cells. Fibrosis is usually preceded by tubulointerstitial infiltration of mononuclear inflammatory cells. Proteinuria is one of several mechanisms of primary glomerular or vascular disease to transmit the disease process to the interstitial space. Increased protein filtration may have direct toxic effects on tubular epithelial cells, induce chemokine and cytokine secretion and result in increased expression of adhesion molecules, all contributing to the influx of mononuclear cells. Inflammatory cells in return secrete cytokines, which stimulate resident fibroblasts and tubular epithelial cells to differentiate into matrix-producing cells. The phenotypic conversion of primary epithelial cells into mesenchymal cells, termed epithelial-mesenchymal transition (EMT), has been studied in great detail in recent years. Several signal transduction pathways of this process have been clarified and may eventually result in novel therapeutic approaches. The severity of proteinuria and the extent of EMT have both been associated with the decline in renal function in clinical studies. Limiting proteinuria results in a slower decline of renal function deterioration, whereas reducing EMT has had beneficial effects in a number of animal studies, including those indicating reversal of fibrotic lesions. However, the association between proteinuria and EMT and vice versa is far from clear and has not been carefully studied.
The relationship between blood-lipid levels and severity of proteinuria was examined retrospectively in 30 patients (12 males, 18 females; mean age 39 [18-58] years). All patients had histologically confirmed glomerulonephritis (minimal change: n = 7, perimembranous: n = 8, focal sclerosing: n = 6, rapid progressive: n = 3, mesangio-proliferative: n = 4, membrano-proliferative: n = 1, diabetic glomerulosclerosis: n = 1). None was taking lipid-lowering drugs. Patients were classified according to the degree of proteinuria. In group 1 (proteinuria less than 5 g/d, n = 13) the LDL-HDL ratio averaged 4.4; in group 2 (proteinuria 5.0-10.0 g/d, n = 10) the average ratio was 8.8, and in group 3 (proteinuria greater than 10.0 g/d, n = 7) 13.3. Total cholesterol concentration also rose with increasing proteinuria (to 300 +/- 87 mg/dl, 375 +/- 168 mg/dl and 464 +/- 143 mg/d, respectively). The size of the LDL-HDL ratio and the level of total cholesterol did not correlate with the degree of excretory renal failure. These results point to an impressive correlation between the degree of proteinuria and the level of LDL-HDL ratio as a measure of atherogenic risk for a given patient.
OBJECTIVE:Growth differentiation factor-5 (GDF-5), a member of the transforming growth factor (TGF)-beta family, is involved in joint development during embryogenesis and has the potential to regenerate cartilage in adult animals. As progression of chronic joint diseases is influenced by cytokines of the synovial tissue, we examined the expression and effects of GDF-5 in this tissue. METHODS:Microarray experiments were investigated for differential expression of GDF-5 in synovial tissues, synovial fibroblasts, and peripheral blood cells. GDF-5 expression was validated by semiquantitative reverse transcriptase polymerase chain reaction (RT-PCR), immunohistochemistry, double immunofluorescence, and in situ hybridization in synovial tissue of normal donors (ND) and patients with osteoarthritis (OA) and rheumatoid arthritis (RA). Effects of inflammation and therapy were investigated in RA and OA fibroblasts after stimulation with interleukin (IL)-1beta, tumour necrosis factor (TNF)-alpha, methotrexate (MTX), and prednisolone. The influence of GDF-5 on macrophages was studied by chemotaxis assay. RESULTS:Microarray analysis and immunostaining revealed expression predominantly in synovial fibroblasts. Compared to patients without immunomodulating drugs, expression of GDF-5 was decreased significantly in patients receiving glucocorticoids and/or disease-modifying antirheumatic drugs (DMARDs) (p = 0.007), but did not differ between the total group of ND, OA, and RA. Stimulation with prednisolone and TNFalpha reduced GDF-5 expression in OA and RA fibroblasts, whereas MTX and IL-1beta revealed minor or no relevant change. GDF-5 also reduced cell migration of macrophages (p<0.001). CONCLUSION:GDF-5 is expressed in synovial fibroblasts and may counteract macrophage infiltration. Its modulation by inflammation and therapy suggests that glucocorticoids play a conflicting role by suppressing not only inflammation but also putative mechanisms of repair.
The inhibition of several chemokine/chemokine receptors has been shown to reduce progressive renal interstitial fibrosis. In this study, we examined the expression of the CX(3)C receptor in human renal biopsies with interstitial fibrosis and from normal kidneys by real-time polymerase chain reaction (PCR) and immunohistochemistry. The CX(3)C receptor was not only detected in mononuclear, tubular epithelial, and dendritic cells but also in alpha-smooth muscle actin and vimentin-positive interstitial myofibroblasts in fibrotic kidneys. Real-time PCR indicated a significant upregulation of CX(3)C receptor mRNA in fibrotic kidneys compared with non-fibrotic nephropathies or donor biopsies. In renal fibroblasts in vitro, hydrogen peroxide increased the expression of the CX(3)C receptor, an increase that was inhibited by N-acetylcysteine and catalase. However, neither proinflammatory nor profibrotic cytokines resulted in this upregulation. Stimulation of fibroblasts by CX(3)C ligand led to a significant enhancement of migration, which was abrogated by pre-incubation with a blocking anti-CX(3)C receptor antibody. Our studies indicate that renal fibrosis is associated with the expression of CX(3)C receptors on human renal fibroblasts. The expression is induced by reactive oxygen species suggesting a role of oxidative stress.
A 38-year-old pregnant woman (19th week of pregnancy) complained of fatigue, cold inducible paresthesias, generalized edema and mild arterial hypertension. Her past medical history was notable for frequent episodes of polyarthralgia and positivity for rheumatoid factor. On admission, acanthocyturia and unselective glomerular-tubular proteinuria with 19 g/d were detected with a slight decrease in creatinine clearance. Rheumatoid factor was robustly elevated and a cryocrit of 1.5 vol%, caused by a so far unknown replicative hepatitis C, was detected. Renal biopsy yielded membrano-proliferative glomerulonephritis. During pregnancy, high-dose corticosteroid therapy was administered. Edema disappeared and blood pressure normalized under albumin substitution and low-dose furosemide application. However, Cesarian section became necessary due to placental insufficiency at 27 weeks of gestation. Thereafter, neither virus load, cryocrit nor proteinuria decreased significantly under a combined therapy with pegylated interferon-a and ribavirin. Thus, cryoprecipitate apheresis was initiated resulting in robust decreases of clinical complaints, viral load, cryocrit and proteinuria. Cryoglobulinemia with renal involvement caused by hepatitis C is difficult to treat due to limitations of immunosuppressive and anti-viral therapy. In our patient, cryoprecipitate apheresis was a safe and effective therapeutic addition to standard therapy.
In rats, adult bodyweight is modulated by the intrauterine environment as well as early postnatal nutritional conditions. Along with fetal glucocorticoid overexposure or postnatal overfeeding persistent increases of bodyweight, blood pressure, liver enzymes (PEPCK) and a decrease in glucose tolerance are observed. Moreover, there is also evidence for a resistance against satiety signals in distinct brain regions. Whether prenatal glucocorticoid overexposure promotes obesity in primates is still matter of debate. We therefore investigated in offspring of marmoset monkeys the effect of intrauterine overexposure with the synthetic glucocorticoid dexamathasone (DEX) either during early or late pregnancy on weight gain, blood pressure and biochemical measures in a two year follow-up study. Marmoset monkeys (Callithrix jacchus) are small (˜400g) non-endangered South American non-human primates. They are of increasing interest in biomedical research because they share many similarities with humans and are easy to handle and to breed under standardized laboratory housing conditions. Three groups of pregnant marmoset monkeys were treated orally for one week with vehicle (CON; N=10) or with dexamethasone (5mg/kg daily) during early (E-DEX; pregnancy day 42–48; N=10) or late pregnancy (L-DEX; pregnancy day 90–96; N=10), respectively. In male offspring (N=30 experimental animals in total) bodyweight was recorded in weekly to monthly intervals. Blood pressure was measured and blood samples were collected at 6, 12, 18 and 24 months of age. Triglycerides, HDL-cholesterol, total cholesterol, fasting glucose, glucose after an oral glucose load (OGTT) and HbA1c were determined. In newborns, weight did not differ between groups. During the first two months after birth L-DEX offspring gained significantly (p<0.02) more weight than E-DEX and CON. In adulthood bodyweight correlated directly with maternal non-pregnant bodyweight (p<0.05) and the weight gain during two months after birth (p=0.01). Metabolic parameters and blood pressure correlated significantly (p<0.005) with bodyweight (negative correlation for HDL-cholesterol, positive correlation for all other parameters). As a consequence, offspring that showed rapid early weight gain and had an obese mother were likely to develop obesity with symptoms of metabolic syndrome, i.e. increased blood pressure, triglycerides, total cholesterol, fasting glucose, HbA1c and decreased HDL-cholesterol. Epidemiological studies in humans are consistent with these results showing that an obese mother and rapid early weight gain are risk factors for the development of obesity in later life. In contrast to the findings in rats, prenatal DEX overexposure seems to play a less important role for bodyweight development in marmosets. Due to the similarities to humans the marmoset monkey seems to be an ideal model for further studies on the regulation of early postnatal weight gain and its role for the development of metabolic disorders in adulthood. Supported by a European Commission Grant (QLRI-CT-2002–02758, EUPEAH).
Platelet-derived growth factor (PDGF)-BB and PDGF-DD mediate mesangial cell proliferation in vitro and in vivo. While PDGF-BB is a ligand for the PDGF alpha- and beta-receptor chains, PDGF-DD binds more selectively to the beta-chain, suggesting potential differences in the biological activities. Signal transduction and regulation of gene expression induced by PDGF-BB and -DD were compared in primary human mesangial cells (HMCs), which expressed PDGF alpha- and beta-receptor subunits. The growth factor concentrations used were chosen based on their equipotency in inducing HMCs proliferation and binding to the betabeta-receptor. Both growth factors, albeit at different concentrations induced phosphorylation and activation of extracellular signal-regulated kinase 1 (ERK1) and ERK2. In addition, PDGFs led to the phosphorylation and activation of signal transducers and activators of transcription 1 (STAT1) and STAT3. HMCs proliferation induced by either PDGF-BB or -DD could be blocked by signal transduction inhibitors of the mitogen-activated protein kinase-, Janus kinase (JAK)/STAT-, or phosphatidyl-inositol 3-kinase pathways. Using a gene chip array and subsequent verification by real-time reverse transcriptase (RT)-polymerase chain reaction, we found that in HMC genes for matrix metalloproteinase 13 (MMP-13) and MMP-14 and, to a low extent, cytochrome B5 and cathepsin L were exclusively regulated by PDGF-BB, whereas no exclusive gene regulation was detected by PDGF-DD. However, at the protein level, both MMP-13 and -14 were equally induced by PDGF-BB and -DD. PDGF-BB and -DD effect similar biological responses in HMCs albeit at different potencies. Rare apparently differential gene regulation did not result in different protein expression, suggesting that in HMCs both PDGFs exert their biological activity almost exclusively via the PDGF beta-receptor.
Introduction: The hypothesis of the foetal origin of disease proposes that small size at birth is associated with a predisposition to obesity, metabolic syndrome and hypertension in adult life. Experimental studies with rodents and sheep showed that prenatal treatment with synthetic glucocorticoids such as dexamethasone (DEX) induced low birth weight, hypertension and/or obesity in the offspring. It is not clear, however, whether prenatal exposition to glucocorticoids would have adverse effects on body mass or blood pressure also in other species, such as non-human primates.