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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Collagen Organization Within the Cartilage of Trpv4(-/-) Mice Studied with Two-Photon Microscopy and Polarized Second Harmonic Generation
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Collagen Organization Within the Cartilage of Trpv4(-/-) Mice Studied with Two-Photon Microscopy and Polarized Second Harmonic Generation

机译:TRPV4( - / - )小鼠软骨中的胶原蛋白组织用双光子显微镜和极化的第二次谐波产生研究

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摘要

The polymodal channel TRPV4 has been shown to regulate development and maintenance of cartilage. Here we investigate whether TRPV4 activity regulates the early deposition and structure of collagen matrix in the femoral head cartilage by comparing the 3D morphology and the sub-micrometer organization of the collagen matrix between wild type and Trpv4(-/-) mice pups four to five days old. Two-photon microscopy can be used to conduct label-free imaging of cartilage, as collagen generates a second harmonic signal (second harmonic generation [SHG]) under pulsed infrared excitation. In one set of measurements, we use circularly polarized laser light to reconstruct the 3D morphology of the femoral head cartilage and to measure the tissue thickness. Second, by rotating the direction of the linearly polarized light and using polarized SHG detection, we investigate the sub-micrometer orientation of collagen fibers in the cartilage. At this developmental stage, we cannot detect statistically significant differences between the two mice strains, although a tendency toward a more random orientation of collagen fibers and a higher thickness of the whole cartilage seems to characterize the Trpv4(-/-) mice. We discuss possible reasons for these observations. (c) 2019 The Authors. Cytometry Part A published by Wiley Periodicals, Inc. on behalf of International Society for Advancement of Cytometry.
机译:已经证明了多种通道TRPV4调节软骨的开发和维持。在这里,我们研究了TRPV4活性是否通过将野生型和TRPV4( - / - )小鼠幼仔4到5之间的胶原蛋白基质的3D形态和亚微米组织进行了股骨头软骨中的股骨头部软骨中胶原蛋白基质的早期沉积和结构天老。由于胶原蛋白在脉冲红外激发下产生第二谐波信号(第二谐波发电[SHG]),双光子显微镜可用于进行无标签的软骨成像。在一组测量中,我们使用圆偏振激光来重建股骨头软骨的3D形态并测量组织厚度。其次,通过旋转线性偏振光的方向并使用偏振SHG检测,我们研究了软骨中胶原纤维的亚微米取向。在这种发展阶段,我们不能检测到两只小鼠菌株之间的统计学显着差异,尽管胶原纤维的更随机取向的趋势和更高厚度的整个软骨似乎表征了TRPV4( - / - )小鼠。我们讨论了这些观察的可能原因。 (c)2019年作者。 Cytometry部分A由Wiley期刊,Inc。代表国际调节仪推进的国际社会。

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