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Proteoglycan synthesis in organ cultures from regions of bovine tendon subjected to different mechanical forces.

机译:来自牛腱区域的器官培养物中蛋白聚糖的合成受到不同的机械力。

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摘要

Synthesis of proteoglycans by morphologically and chemically distinct regions of bovine flexor tendon was investigated in explant cultures. Proximal regions of the flexor tendon which experience only tensile forces and have low contents of proteoglycans initially exhibited relatively low rates of proteoglycan synthesis but high rates of collagen synthesis. The predominant proteoglycan produced by all proximal explants was of small hydrodynamic size and appeared similar to that extracted from proximal tissue. In contrast, explants derived from the distal tendon region, which experiences frictional and compressive forces in addition to tensile forces, and has a high content of proteoglycans, showed relatively high initial rates of proteoglycan synthesis and lower rates of collagen synthesis. These distal explants produced primarily large proteoglycans on the first day in culture. Turnover of newly synthesized proteoglycans was not detectable in proximal tissue, and was low in distal tissue. Loss of unlabelled proteoglycan from proximal and distal explants was not detected during the 12 days of culture. These observations suggest that the increase in specific types of proteoglycans in regions of tendon subjected to frictional and compressive forces is the result of elevated synthesis rates in this tissue. Two alterations in proteoglycan synthesis occurred during the 12-day culture period. (1) The rate of proteoglycan synthesis by all explants increased with time in culture. (2) The proportion of small proteoglycans synthesized by distal explants increased from 32% of the total proteoglycan produced on day 1, to 80% of that produced on day 12. Explants from proximal tendon continued to produce only small proteoglycans throughout the 12 days in culture. This switch in proteoglycan phenotype, resulting in decreased synthesis of large proteoglycans by the distal tissue, may be due to a lack of compressive forces on the cultured explants.
机译:在外植体培养物中研究了通过牛屈肌腱的形态和化学上不同的区域合成蛋白聚糖。屈肌腱的仅经受拉力并且具有低蛋白聚糖含量的近端区域起初显示出相对低的蛋白聚糖合成速率,但是高的胶原蛋白合成速率。所有近端外植体产生的主要蛋白聚糖的流体动力学尺寸较小,并且看起来与从近端组织提取的蛋白聚糖相似。相反,源自远侧肌腱区域的外植体,除了拉伸力外还经受摩擦和压缩力,并且具有高含量的蛋白聚糖,显示出相对较高的蛋白聚糖合成初始速率和较低的胶原蛋白合成速率。这些远端外植体在培养的第一天主要产生大的蛋白聚糖。在近端组织中未检测到新合成蛋白聚糖的周转率,而在远端组织中周转率较低。在培养的12天中,未检测到来自近端和远端外植体的未标记蛋白聚糖的损失。这些观察结果表明,在受到摩擦力和压力作用的肌腱区域中特定类型蛋白聚糖的增加是该组织中合成速率提高的结果。在12天的培养期间,蛋白聚糖合成发生了两次改变。 (1)所有外植体蛋白聚糖的合成率随培养时间的增加而增加。 (2)远端外植体合成的小蛋白聚糖的比例从第1天产生的总蛋白聚糖的32%增加到第12天产生的80%。在12天内,近端肌腱的外植体继续仅产生小蛋白聚糖。文化。蛋白聚糖表型的这种转换,导致远端组织对大蛋白聚糖的合成减少,可能是由于对培养的外植体缺乏压缩力所致。

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