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ATP induces Ca(2+) signaling in human chondrons cultured in three-dimensional agarose films.

机译:ATP在三维琼脂糖膜中培养的人软骨中诱导Ca(2+)信号传导。

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OBJECTIVE: In vivo, chondrocytes are surrounded by an extracellular matrix, preventing direct cell-to-cell contact. Consequently, intercellular communication through gap junctions is unlikely. However, signaling at a distance is possible through extracellular messengers such as nitric oxide (NO) and nucleotides and nucleosides, adenosine triphosphate (ATP), uridine triphosphate (UTP), or adenosine diphosphate (ADP). We hypothesized that chondrons, chondrocytes surrounded by their native pericellular matrix, increase their intracellular calcium concentration ([Ca(2+)]ic) in response to ATP and other signaling molecules and that the source of Ca(2+) is from intracellular stores. The objectives of this study were to determine if chondrons in a 3-D gel respond to ATP by increasing [Ca(2+)]ic through a purinoceptor mechanism and to test whether chondrons in whole tissue samples would respond to ATP in a similar fashion. DESIGN: Human chondrons, cultured in a three-dimensional agarose gel or in whole cartilage loaded with Fura-2AM, a calcium sensitive dye, were stimulated with 1, 5 and 10 microM ATP. A ratio-imaging fluorescence technique was used to quantitate the [Ca(2+)]ic. RESULTS: ATP-stimulated chondrons increased their [Ca(2+)]ic from a basal level of 60 nM to over 1000 nM. Chondrons incubated in calcium-free medium also increased their [Ca(2+)]ic in response to ATP, indicating the source of Ca(2+) was not extracellular. ATP-induced calcium signaling was inhibited in chondrons pre-treated with suramin, a generic purinoceptor blocker. In addition, UTP and adenosine 5'-O-(3-thiotriphosphate) (ATPgammas) induced a calcium response, but 2-methylthio-ATP (2-MeSATP), ADP, and adenosine did not induce a significant increase in [Ca(2+)]ic, substantiating that the P2Y2 purinoceptor was dominant. Chondrons in whole cartilage increased [Ca(2+)]ic in response to ATP. CONCLUSIONS: We conclude that chondrons in 3-D culture respond to ATP by increasing [Ca(2+)]ic via P2Y2 receptor activation. Thus, ATP can pass through the agarose gel and the pericellular matrix, bind purinoceptors and increase intracellular Ca(2+) in a signaling response. Copyright 2001 OsteoArthritis Research Society International.
机译:目的:体内,软骨细胞被细胞外基质包围,防止细胞对细胞接触。因此,通过间隙连接的细胞间通信不太可能。然而,通过诸如一氧化氮(NO)和核苷酸(NO)和核苷酸,腺苷三磷酸(ATP),尿苷三磷酸(UTP)或腺苷二磷酸(ADP)的腺苷二磷酸(ADP)的信号传导。我们假设胶囊,由其天然围绒基质包围的软骨细胞,响应于ATP和其他信号分子,增加其细胞内钙浓度([Ca(2 +)IC),并且Ca(2+)的来源来自细胞内储存。本研究的目的是通过增加[Ca(2 +)] IC通过嘌呤蛇机制增加[Ca(2 +)] IC并测试整个组织样本中的肺泡是否会以类似的方式响应ATP,确定ATP是否会反应ATP。 。设计:用1,5和10微米ATP刺激在三维琼脂糖凝胶中或装载富伤敏感染料的全软骨中的人胶囊。使用比率成像荧光技术定量[Ca(2 +)] IC。结果:ATP刺激的软骨量从30nm的基础水平增加到[Ca(2 +)] IC至超过1000nm。在无钙培养基中孵育的软骨也增加了它们的[Ca(2 +)] IC响应于ATP,表明Ca(2+)的来源不是细胞外。在用素素丙氨酸预处理预处理的软骨中抑制ATP诱导的钙信号传导。此外,UTP和腺苷5'-O-(3-硫二磷酸)(ATPγ)诱导钙响应,但2-甲基硫基-ATP(2-甲基),ADP和腺苷没有诱导[CA( 2 +)] IC,实质上是P2Y2嘌呤蛇占主导地位。整个软骨中的胶囊响应ATP增加了[CA(2 +)] IC。结论:我们得出结论,通过P2Y2受体激活增加[Ca(2 +)] IC,3-D培养中的胶囊反应ATP。因此,ATP可以通过琼脂糖凝胶和围粒体基质,结合嘌呤对应器并在信号响应中增加细胞内Ca(2+)。版权2001年骨关节炎研究协会国际。

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