Cameron D F, Hushen J J, Nazian S J
Department of Anatomy, University of South Florida College of Medicine, Tampa 33612, USA.
In Vitro Cell Dev Biol Anim. 2001 Sep;37(8):490-8. doi: 10.1290/1071-2690(2001)037<0490:FOISSE>2.0.CO;2.
Pancreatic islets, isolated from neonatal pigs, and Sertoli cells, isolated from prepubertal rats, were cocultured in simulated microgravity utilizing the NASA-developed highly accelerating, rotating vessel (HARV) biochamber. Following 5 d of incubation, three-dimensional Sertoli-islet cell aggregates (SICA) retained the ability to secrete insulin when exposed to elevated glucose. SICA contained FasL-positive Sertoli cells and insulin-positive beta-cells randomly organized within the spherical construct. The addition of 1% Matrigel induced the reorganization of aggregates (SICAs formed in the presence of Matrigel [SICAmgs]) showing the peripherialization and epithelialization of Sertoli cells and the centralization of islets in association with lumen-like spaces. The Sertoli cells, but not Matrigel, aided in preserving the structural integrity of HARV-incubated islets. Neither Matrigel nor Sertoli cells appeared to interfere with the ability of SICA or SICA mg to secrete insulin and express FasL.
从新生猪分离的胰岛和从青春期前大鼠分离的支持细胞,利用美国国家航空航天局研发的高加速旋转容器(HARV)生物舱在模拟微重力条件下进行共培养。培养5天后,三维支持细胞-胰岛细胞聚集体(SICA)在暴露于高血糖时仍保留分泌胰岛素的能力。SICA包含FasL阳性的支持细胞和胰岛素阳性的β细胞,它们在球形结构中随机排列。添加1%的基质胶可诱导聚集体重组(在基质胶存在下形成的SICA [SICAmgs]),表现为支持细胞的外周化和上皮化以及胰岛与管腔样空间相关的集中化。支持细胞而非基质胶有助于维持HARV培养的胰岛的结构完整性。基质胶和支持细胞似乎均未干扰SICA或SICAmg分泌胰岛素和表达FasL的能力。