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In recent years, bioresearch about ECM indicated that there some kinds of matrix effector cells play key roles in the formation of organic fibrosis and the activation of them is the main source of collagenation cells.

近年来关于ECM的生物学研究表明,在器官纤维化的形成过程中,往往有一些间质效应细胞发挥关键作用,它们的激活已成为胶原生成细胞的主要来源。

The results show that the compound conductive fiber has typical structure of sheath-core consists of black greened polyaniline electric conductive deposition as the skin and the white polypropylene matrix fiber as the core, which makes the compound fiber preferable physical mechanical property. The intensity and the elongation ratio of the electric conductive fiber are decreased but the thermal stability is enhanced after modified. The compound fiber has the good acid resistance but poor base resistance. The thermal stability of the compound fiber prepared by 4-methyl-benzene sulfonic acid is better than that prepared by hydrochloride acid. Moreover, the compound fiber can be re-doped by other organic or inorganic acid after freed from the adsorbed acid. Furthermore, the electric conductivity of the compound fiber decreases with the temperature increasing but hardly changed with the humidity. The adsorptive ability and therefore the content of the polyaniline, the constant of electric conduction, and the durability of the compound fiber can be enhanced by thinning the diameter, section heteromorphosis, section heteromorphosis and plasma treatment of the surface or blending with COPET of the fiber.

结果表明:复合纤维是聚丙烯与聚苯胺的共混体系,具有典型的皮芯型结构,皮层为墨绿色的聚苯胺沉积层,形成连续的导电通道,芯层为白色的聚丙烯基质纤维,提供物理机械性能;导电改性后纤维的强度、强力和伸长率均有下降,但热稳定性得到提高;复合纤维的耐酸性比耐碱性好,以对甲苯磺酸做掺杂酸比盐酸掺杂聚苯胺热稳定性好,脱掺杂后的复合纤维,可用其它无机酸或有机酸进行再掺杂;复合导电纤维的电导率随温度升高降低幅度较大,但几乎不受湿度影响;基质纤维细旦化、截面异形化、表面等离子体处理或共混COPET等改性处理均能提高纤维的吸附性,进而提高复合纤维表面聚苯胺含量、电导率和耐久性。

Nanofiber scaffolds can mimic the structure and function of extracellular matrix,and have advantages for tendon tissue engineering.

纳米纤维材料可以模拟细胞外基质的结构和功能,作为肌腱组织工程的支架有明显的优越性。

Majority of aderent cells from BM were fibroblast-like cells, and small parts were endothelioid cells. Aderent cells from PB and CB at the fifth generation contained more endothelioid cells and mononuclear and macrophage-like cells besides fibroblast-like cells.

初始培养和传代培养后,骨髓间充质干细胞多为成纤维样细胞,仅有少量内皮样细胞;而传至第5代的外周血、脐带血间充质干细胞除有成纤维样细胞外,还有较多的内皮样细胞和单核-巨噬样细胞。

And the most severe pathological change was shown in patients of Speen –kidney Yang Deficiency , all grade 3 renal interstitial fibrosis belonged to it.

1、BMP-7表达与慢性肾小球肾炎肾间质纤维化程度有密切关系,它可以作为慢性肾小球肾炎肾间质纤维化程度的标志。

Complex surface structures stripes or bandings were found in those of A. dichotoma, but less in P. inclinatus. The trabeculae consisted of three parts the surface part, the cylindrical layer and the central part. The surface and the central part were mainly protein substances which could be dissolved by KOH.

其中心部主要是溶解于KOH溶液的物质蛋白一类的物质,环状纤维层中的几丁质纤维,在层和层之间相互不同的方向排列着,并各自与前翅的上下层中的几丁质纤维连续地连接着2独角仙前翅小柱的表面有复杂的纹样,而锹形虫的小柱表面只有非常简单的几乎没有纹样。

Bakers use this nutty-flavored seed mainly to add flavor and fiber.

面包师用具有坚果风味的亚麻籽来增加面包的滋味和纤维质。

Flaxseed. Bakers use this nutty-flavored seed mainly to add flavor and fiber.

二、亚麻籽。面包师用具有坚果风味的亚麻籽来增加面包的滋味和纤维质。

Poplar(Populus cv.I4551 from France and Populus deltoids cv.I-69/55 from China) was chosen as plant material,because poplar is known to have a characteristic tension wood with G-layer and to produce a high longitudinal stress.

本研究选择杨树(从法国采的Populus cv.I4551和从中国采的Populus deltoids cv.I-69/55)作为实验材料,因为杨树中很容易产生有胶质纤维的应拉木并伴有大的纵向生长应力;另外,杨树也是一个在全球都非常重要的速生人工林树种。

Results 1、 Generally, we can see the original blue and white, shiny, no cracks in the articular surface of the cartilage after the stress increases gradually yellow, surface roughness, cracks appear; when the pressure decreases, the yellowing, rough, the color of the fracture restore gradually and become shiny.2、the shiny smooth surface can be seen under a light microscope, formation, cell distribution, tidy, clear the level of cartilage at the articular surface stress increases, the surface roughness changes, defects, disordered cells, uneven dyeing ; when the articular surface of the pressure gradually decreased, the cartilage gradually repair and the surface of cells at the surface appear only disorder.3、immunohistochemical observation can be seen throughout the observation period, cartilage cells are type Ⅱ collagen expression and expression after 3 weeks gradually weakening, when the seventh week begin to strong gradually.4、 electron microscopy shows that when stress increases the articular surface, the cartilage cells became flat, the cytoplasm in the endoplasmic reticulum, Golgi apparatus decreased with collagen disorders; and when stress decreases the articular surface, cartilage cells gradually returned normal, cytoplasm in the endoplasmic reticulum, Golgi body gradually restore quantity; collagen fibers with a gradual rules.

结果:①大体观察可见到原本蓝白色、有光泽、无裂纹的软骨在关节面压力增大后,逐渐呈灰黄色,表面粗糙,出现裂隙;当压力逐渐减小后,变黄、粗糙、有裂隙的软骨颜色逐渐恢复,变得有光泽②光镜下可见表面光滑、平整,细胞分布均匀、整齐,层次清楚的软骨在关节面压力增大后,表面变粗糙、缺损,细胞排列紊乱、染色不均;当关节面压力逐渐减小后,软骨表面逐渐修复,细胞仅在表层排列紊乱③免疫组织化学观察可见整个观察期内软骨细胞胞浆内均有Ⅱ型胶原表达,术后3周内表达逐渐变弱,从第7周时开始逐渐变强。④电镜下可见当关节面压力增大后,软骨细胞逐渐变扁,胞质中内质网膜、高尔基体减少,胶原排列紊乱;当关节面压力减小,软骨细胞形态逐渐恢复正常,胞质中内质网膜、高尔基体数量逐渐恢复;胶原纤维排列逐渐有规则。

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