Andersson A
Acta Endocrinol Suppl (Copenh). 1976;205:283-94.
The ability of the pancreatic B-cell to synthesize and secrete insulin in tissue culture has been established in several studies, most of which involved culture of different preparations of fetal pancreas. In all these studies, however, a substantial admixture of non-endocrine cells complicated a more detailed study of the islet cell. In order to overcome these difficulties we have developed a method for in vitro culture of isolated pancreatic islets, which is well suited for evaluating both morphologic and metabolic changes of the islet cells induced during prolonged culture periods. The present paper will review briefly the work performed on culture of isolated pancreatic islets with special attention to the influence of different culture conditions on the in vitro survival of the explanted islet specimens. It was shown that various kinds of pancreatic islet specimen including isolated human pancreatic islets can be successfully cultured provided that they do not exceed an upper critical size limit and that calf serum is added to the culture medium. The functional characteristics of the cultured islet cells were markedly influenced by the glucose concentration of the culture medium. Thus several signs of hyperactivity were observed in islet cells subjected to a high glucose concentration, while exposure for one week to a subnormal extracellular glucose concentration led to an impairment of their specific functions. Furthermore it was found that L-leucine and B-hydroxybutyric acid were able to replace glucose as a long-term stimulus of the insulin biosynthesis, while succinate and HB 419 did not share this property.
胰腺β细胞在组织培养中合成和分泌胰岛素的能力已在多项研究中得到证实,其中大多数研究涉及不同制备方法的胎儿胰腺培养。然而,在所有这些研究中,大量非内分泌细胞的混合使得对胰岛细胞进行更详细的研究变得复杂。为了克服这些困难,我们开发了一种体外培养分离胰腺胰岛的方法,该方法非常适合评估长时间培养过程中诱导的胰岛细胞的形态和代谢变化。本文将简要回顾关于分离胰腺胰岛培养的工作,特别关注不同培养条件对移植胰岛标本体外存活的影响。结果表明,只要不超过临界大小上限并在培养基中添加小牛血清,包括分离的人胰腺胰岛在内的各种胰腺胰岛标本都可以成功培养。培养基中的葡萄糖浓度对培养的胰岛细胞的功能特性有显著影响。因此,在高葡萄糖浓度下的胰岛细胞中观察到了几种活性过高的迹象,而暴露于低于正常水平的细胞外葡萄糖浓度一周会导致其特定功能受损。此外,还发现L-亮氨酸和β-羟基丁酸能够替代葡萄糖作为胰岛素生物合成的长期刺激物,而琥珀酸和HB 419则没有这种特性。