Substance P induces the secretion of gelatinase A from human synovial fibroblasts.

A Hecker-Kia, H Kolkenbrock, D Orgel, B Zimmermann, M Sparmann, N Ulbrich
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引用次数: 19

Abstract

We investigated the secretion of the matrix metalloproteinases, interstitial collagenase (matrix metalloproteinase-1), gelatinase A (matrix metalloproteinase-2) and stromelysin-1 (matrix metalloproteinase-3) in human synovial fibroblasts after stimulation with the neuropeptide substance P. Human synovial fibroblasts were stimulated with substance P or interleukin-1 beta (IL-1 beta). In the cell culture media gelatinase A, interstitial collagenase and stromelysin-1 were identified and their activities towards different substrates were determined. Substance P in synovial fibroblasts induced an increase in the overall matrix metalloproteinase activity towards the dinitrophenyl-labelled peptide by 85%, against an increase of 124% after stimulation with IL-1 beta. In case of substance P stimulation, the increase in activity reflects a significantly enhanced secretion of gelatinase A, whereas no significant increase of stromelysin-1 and collagenase secretion could be observed. The matrix metalloproteinase pattern showing the highest gelatinase A secretion was obtained after stimulation with substance P. This pattern was very pronounced and differed very clearly from the pattern seen after IL-1 beta stimulation which caused a significant rise in collagenase and stromelysin-1 activity. We assume that distinct stimulation pathways are involved and that the neuropeptide (substance P), which is always present in the inflamed joint, plays its own and separate role in proliferative processes leading to the cartilage destruction.

P物质诱导人滑膜成纤维细胞分泌明胶酶A。
我们研究了P物质刺激人滑膜成纤维细胞后基质金属蛋白酶、间质胶原酶(基质金属蛋白酶-1)、明胶酶A(基质金属蛋白酶-2)和基质金属蛋白酶-1(基质金属蛋白酶-3)的分泌情况。在细胞培养基中鉴定了明胶酶A、间质胶原酶和基质溶素-1,并测定了它们对不同底物的活性。滑膜成纤维细胞中的P物质诱导基质金属蛋白酶对二硝基苯标记肽的总体活性增加85%,而IL-1 β刺激后增加124%。在P物质刺激下,活性增加反映明胶酶a分泌显著增加,而基质溶素-1和胶原酶分泌未见显著增加。在p物质刺激后,基质金属蛋白酶模式显示出最高的明胶酶A分泌,这一模式非常明显,与IL-1刺激后的模式截然不同,后者导致胶原酶和基质溶素-1活性显著升高。我们假设有不同的刺激途径参与其中,并且始终存在于发炎关节中的神经肽(P物质)在导致软骨破坏的增殖过程中发挥其自身和单独的作用。
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