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一种新型的鼠胰腺腺泡细胞外植体生长培养模型,可长期维持分泌表型。

A novel explant outgrowth culture model for mouse pancreatic acinar cells with long-term maintenance of secretory phenotype.

机构信息

Department of Gastroenterology and Alimentary Tract Surgery and Tampere Pancreas Laboratory, Tampere University Hospital, Teiskontie 35, FIN-33521 Tampere, Finland.

出版信息

Eur J Cell Biol. 2011 Dec;90(12):1052-60. doi: 10.1016/j.ejcb.2011.07.004. Epub 2011 Sep 8.

Abstract

The development of in vitro models able to support the long-term viability and function of acinar cells is critical for exploring pancreatic pathophysiology. Despite considerable efforts, no long-term culture models for non-transformed pancreatic acini exist. Our aim was to develop and validate culture conditions for this purpose. An explant outgrowth culture design was established in which mouse pancreatic explants were cultured at the gas-liquid interphase. An enriched culture medium, pH 7.8, was employed to promote the selective outgrowth of acinar cells and to support their differentiated phenotype. After 7 days, the outgrown primary acinar cells were subcultured and maintained up to an additional 7 days as secondary monolayers on tissue culture plastic. Measurements of basal and caerulein-induced amylase secretion, phase-contrast microscopy and immunohistochemical analyses were used to characterize the cultures. Explants retained their pancreatic cytoarchitecture for 2 days in vitro. A triphasic dose response to caerulein was detected in 7-day primary cultures. The maximal rate of secretion was 1.2-fold versus basal (p=0.009) and 1.7-fold versus 1 pM caerulein (p=0.014). In secondary cultures the response was biphasic with maximal rates of secretion being 1.9-fold in 3- to 4-day cultures at 0.01 nM (p=0.049) and 2-fold in 6- to 7-day cultures at 0.1 nM (p=0.003). The present culture model provides a means to obtain functionally competent normal mouse acinar cells for long-term in vitro experimentation.

摘要

体外模型的开发能够支持腺泡细胞的长期存活和功能,对于探索胰腺病理生理学至关重要。尽管已经做出了相当大的努力,但仍然没有用于非转化胰腺腺泡的长期培养模型。我们的目的是为此开发和验证培养条件。建立了一种离体培养物外生设计,其中将小鼠胰腺培养物在气-液界面进行培养。使用富含培养基(pH7.8)促进腺泡细胞的选择性外生,并支持其分化表型。7 天后,外生的原代腺泡细胞被传代,并在组织培养塑料上作为次级单层培养至另外 7 天。使用基础和蛙皮素诱导的淀粉酶分泌、相差显微镜和免疫组织化学分析来表征培养物。培养物在体外保留其胰腺细胞结构 2 天。在 7 天的原代培养物中检测到蛙皮素的三相剂量反应。分泌的最大速率比基础水平高 1.2 倍(p=0.009),比 1 pM 蛙皮素高 1.7 倍(p=0.014)。在次级培养物中,反应呈双相,在 3-4 天的培养物中,0.01 nM 时最大分泌速率为 1.9 倍(p=0.049),在 6-7 天的培养物中,0.1 nM 时最大分泌速率为 2 倍(p=0.003)。本培养模型为获得功能齐全的正常小鼠腺泡细胞进行长期体外实验提供了一种方法。

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