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三维生长的自我调节。

Self-regulation of growth in three dimensions.

作者信息

Folkman J, Hochberg M

出版信息

J Exp Med. 1973 Oct 1;138(4):745-53. doi: 10.1084/jem.138.4.745.

Abstract

Multi-cell spheroids were grown in soft agar. When each spheroid was cultured in a large volume of medium, frequently renewed, all spheroids eventually reached a dormant phase at a diameter of approximately 3-4 mm and a population of approximately 10(6) cells. In the dormant spheroid, newly generated cells at the periphery balanced those lost by necrosis in the center. We propose that this dormant phase is due to a gradual reduction in the ratio of surface area to volume: a size is achieved beyond which there is insufficient surface area for the spheroid to eliminate catabolites and absorb nutrients. Thus, in the face of unlimited space and of new medium, three-dimensional cell populations become self-regulating. This phenomenon contrasts with standard tissue culture in which cell populations, living on a flat plane in two dimensions, will not stop growing in the face of unlimited space and new medium because the ratio of surface area to volume remains constant. These experiments provide a mechanism for our observations in vivo: before vascularization, solid tumors live by simple diffusion as three-dimensional spheroids or ellipsoids. They become dormant at a diameter of only a few millimeters; once vascularized, they are released from this dormant phase and begin exponential growth. Thus, tumor dormancy resulting from absence of angiogenesis in vivo, may operate by the same mechanism responsible for dormancy of spheroids in vitro.

摘要

多细胞球体在软琼脂中生长。当每个球体在大量频繁更换的培养基中培养时,所有球体最终都会进入休眠期,此时直径约为3 - 4毫米,细胞数量约为10⁶个。在休眠球体中,周边新生成的细胞与中心因坏死而损失的细胞达到平衡。我们认为这种休眠期是由于表面积与体积之比逐渐降低所致:当达到一定大小后,球体没有足够的表面积来清除分解代谢产物和吸收营养物质。因此,在空间无限且有新培养基的情况下,三维细胞群体能够自我调节。这种现象与标准组织培养形成对比,在标准组织培养中,二维平面上的细胞群体在空间无限且有新培养基的情况下不会停止生长,因为表面积与体积之比保持不变。这些实验为我们在体内的观察提供了一种机制:在血管形成之前,实体瘤作为三维球体或椭球体通过简单扩散生存。它们在直径仅为几毫米时进入休眠;一旦血管形成,它们就从这个休眠期解除并开始指数生长。因此,体内因缺乏血管生成导致的肿瘤休眠,可能与体外球体休眠的机制相同。

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Self-regulation of growth in three dimensions.三维生长的自我调节。
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