## Abstract Our objective was to characterize the variation in gene expression for key genes associated with chondrogenic phenotype of osteochondrosis (OC)‐affected and normal chondrocytes, and to identify whether OC chondrocytes can redifferentiate and regain a phenotype similar to normal chondroc
Mesangial cells are able to produce catecholamines in vitro
✍ Scribed by Giovana Seno Di Marco; Maria da Graça Naffah-Mazzacoratti; Carlos P. Vio; Oscar Fernando Pavão Dos Santos; Nestor Schor; Dulce Elena Casarini
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 224 KB
- Volume
- 89
- Category
- Article
- ISSN
- 0730-2312
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✦ Synopsis
Abstract
Mesangial cells (MC) participate in the control of the glomerular function due to their ability to synthesize hormones and induce cell contraction. Since MC can produce various kinds of hormones, the purpose of the present study was to determine if they are able to synthesize catecholamines. For this evaluation, the levels of norepinephrine, epinephrine, dopamine, and biopterin, the enzymatic cofactor of tyrosine hydroxylase (TH), were analyzed by HPLC in the intracellular compartment and in the medium of primary cultured MC. To identify and locate the enzymes responsible for monoamine synthesis, TH, dopa decarboxylase, and dopamine β‐hydroxylase, Western blotting and immunocytochemistry were employed using monoclonal and polyclonal antibodies. Concentrations of NE = 57 ± 8, EPI = 82 ± 10, and DA = 52 ± 9 pg/mg protein (X ± SEM) were found in the cell homogenate. The culture medium showed concentrations of NE = 25 ± 3, EPI = 33 ± 3, and DA = 62 ± 15 pg/mg protein. Western blotting analysis and immunocytochemistry evidenced the presence of all enzymes. Moreover, biopterin was also detected in the intracellular compartment and in the medium (0.28 ± 0.03 and 5.70 ± 2 nmol/mg cell protein, respectively). Overall, the data indicate that MC have the biosynthetic machinery necessary to produce catecholamines, suggesting that they can act as a paracrine/autocrine hormone system, contributing to the regulation of glomerular hemodynamic and renal microcirculation. J. Cell. Biochem. 89: 144–151, 2003. © 2003 Wiley‐Liss, Inc.
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