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整合的大鼠肠-肝细胞培养物的组装。

The assembly of integrated rat intestinal-hepatocyte cultures.

作者信息

Kothari Anjaney, Rajagopalan Padmavathy

机构信息

School of Biomedical Engineering and Sciences Virginia Tech Blacksburg Virginia.

Department of Chemical Engineering Virginia Tech Blacksburg Virginia.

出版信息

Bioeng Transl Med. 2019 Nov 9;5(1):e10146. doi: 10.1002/btm2.10146. eCollection 2020 Jan.

Abstract

The jejunum is the segment of the small intestine responsible for several metabolism and biotransformation functions. In this report, we have cultured rat jejunum explants and integrated them with hepatocyte cultures. We have also investigated the changes in jejunum function at different locations since spatial variations in intestinal functions have been reported previously. We divided the length of the rat jejunum into three distinct regions of approximately 9 cm each. We defined the regions as proximal (adjacent to the duodenum), medial, and distal (adjacent to the ileum). Spatiotemporal variations in functions were observed between these regions within the jejunum. Alkaline phosphatase activity (a marker of enterocyte function), decreased twofold between the proximal and distal regions at 4 hr. Lysozyme activity (a marker of Paneth cell function) increased from the proximal to the distal jejunum by 40% at 24 hr. Mucin-covered areas, a marker of goblet cell function, increased by twofold between the proximal and distal segments of the jejunum at 24 hr. When hepatocytes were integrated with proximal jejunum explants, statistically higher urea (~2.4-fold) and mucin (57%) production were observed in the jejunum explants. The integrated intestine-liver cultures can be used as a platform for future investigations.

摘要

空肠是小肠中负责多种代谢和生物转化功能的部分。在本报告中,我们培养了大鼠空肠外植体,并将其与肝细胞培养物整合。由于此前已报道肠道功能存在空间差异,我们还研究了空肠不同位置功能的变化。我们将大鼠空肠的长度分为三个不同区域,每个区域约9厘米。我们将这些区域定义为近端(毗邻十二指肠)、中间和远端(毗邻回肠)。在空肠内的这些区域之间观察到了功能的时空变化。碱性磷酸酶活性(肠上皮细胞功能的标志物)在4小时时,近端和远端区域之间下降了两倍。溶菌酶活性(潘氏细胞功能的标志物)在24小时时从空肠近端到远端增加了40%。黏液覆盖面积(杯状细胞功能的标志物)在24小时时空肠近端和远端节段之间增加了两倍。当肝细胞与近端空肠外植体整合时,在空肠外植体中观察到统计学上更高的尿素(约2.4倍)和黏液(57%)产生。整合的肠-肝培养物可作为未来研究的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f4f/6971435/6690e9861939/BTM2-5-e10146-g001.jpg

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