首页> 外文期刊>The Journal of Experomental Medicine >THE ORIGIN AND STRUCTURE OF A FIBROUS TISSUE WHICH APPEARS IN LIVING CULTURES OF ADULT FROG TISSUES
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THE ORIGIN AND STRUCTURE OF A FIBROUS TISSUE WHICH APPEARS IN LIVING CULTURES OF ADULT FROG TISSUES

机译:活人成年组织中出现的纤维组织的起源和结构

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In living cultures of various kinds of adult frog tissues, which have been made according to the hanging drop method, there occurs, in many cases, a transformation of the plasma clot by which it becomes entirely changed from a typical fibrin net both in appearance and structure.The changes in the fibrin net generally begin when the culture is from two to three days old. During these changes it appears that the elements of the fibrin net fuse or consolidate, and as a result a great number of fine wavy fibrils are formed which unite to form wavy bundles of fibers, and these freely intertwine and anastomose as they ramify through the area of the plasma clot. The transformation of the fibrin net occurs first in the region of the clot which lies next to the imbedded tissue, gradually extends to the distal regions of the clot, and in time—as a rule in about two weeks—the entire plasma clot becomes changed from the fibrin net into a structure which to all appearances is identical with regular connective tissue. Photographs of both living and preserved cultures have been made to show the course of the transformation of the plasma clot and the development of the fibers.Experiments have been made which show that the fibers which are formed are not outgrowths of the imbedded tissue. Also they are not formed by an intracellular action, but arise directly by a transformation of the fibrin elements of the plasma clot.Experiments have been made which indicate that the transformation of the fibrin net will not occur unless it has come under the influence of living tissues or of living isolated cells. However, mechanical means, such as exerting tension on the clot with needles, may hasten the formation of the fibers. Also, in some cultures, movements of living isolated cells appear to aid in the formation of the fibers. The living tissues alone, however, are able to cause the fibers to form without the aid of any apparent mechanical factor. This is shown by cultures of various tissues in which no cell movement occurs and in which the plasma clot is undisturbed and yet a prolific formation of fibers may take place.Experiments have been made in order to determine the true nature of the transformed plasma clot and to see if the new fibrous tissue were still fibrin in character. The results that have so far been obtained from these tests have not been entirely conclusive and leave the question unsettled.The transformation of the fibrin net results in a shrinkage of the clot. It also becomes very tough and resistant to injury and, therefore, entirely different from the fragile and easily destroyed fibrin net when in its original condition. It is believed that such a reaction must play an important part in wound healing. A study of the relation between connective tissue fibers formed in wound healing and in embryonic development to the fibers formed in the plasma clot is being made, and the results will appear in a later paper.
机译:在根据悬滴法制成的各种成年青蛙组织的活体培养物中,在许多情况下会发生血浆凝块的转化,通过这种转化,血浆的凝结性从外观和形态上都完全由典型的纤维蛋白网完全改变。纤维蛋白网的变化通常始于培养两到三天的时候。在这些变化过程中,似乎纤维蛋白网的元素融合或固结,结果形成了许多细小的波浪状原纤维,这些细纤维原状结合在一起形成了波浪状的纤维束,并且这些纤维束在整个区域中自由缠绕和吻合。血浆凝块。血纤蛋白网的转化首先发生在凝块附近的包埋组织区域,然后逐渐延伸到凝块的远侧区域,通常在大约两周的时间内,整个血浆凝块发生了变化从纤维蛋白网到所有外观都与常规结缔组织相同的结构。已经拍摄了活的和保存的培养物的照片以显示血浆凝块的转化过程和纤维的发育。已经进行的实验表明所形成的纤维不是包埋组织的长出。它们也不是由细胞内作用形成的,而是直接由血浆凝块中纤维蛋白成分的转化而产生的。实验表明,除非受到生命的影响,否则不会发生纤维蛋白网的转化。组织或活的分离细胞。但是,机械手段,例如用针在血块上施加张力,可能会加速纤维的形成。同样,在某些文化中,活的离体细胞的运动似乎有助于纤维的形成。然而,仅活体组织能够在不借助任何明显机械因素的情况下使纤维形成。这是由各种组织的培养所显示的,其中没有细胞运动发生,血浆凝块没有受到干扰,但仍可能发生大量的纤维形成。已经进行了实验以确定转化的血浆凝块的真实性质。看看新的纤维组织是否仍然是纤维蛋白。到目前为止,从这些测试中获得的结果还没有完全确定,还没有解决这个问题。血纤蛋白网的转化导致血凝块缩小。它也变得非常坚韧并且耐损伤,因此,与处于原始状态的脆弱且易于破坏的纤维蛋白网完全不同。相信这种反应必须在伤口愈合中起重要作用。对伤口愈合和胚胎发育中形成的结缔组织纤维与血浆凝块中形成的纤维之间的关系进行了研究,其结果将在以后的论文中发表。

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