免疫缺陷小鼠胎猪肠道组织的成熟与发育

Acta cirurgica brasileira Pub Date : 2024-02-26 eCollection Date: 2024-01-01 DOI:10.1590/acb390624
Atsushi Harada, Naoto Matsumoto, Yoshitaka Kinoshita, Kenji Matsu, Yuka Inage, Keita Morimoto, Shuichiro Yamanaka, Masashi Kurobe, Takashi Yokoo, Haruki Kume, Takao Ohki, Eiji Kobayashi
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摘要

目的:本研究旨在比较胎猪节段性肠道组织的成熟和发育程度,以及将离体的胎儿肠道细胞移植到免疫缺陷小鼠体内后在体外重新聚集形成的球形组织的成熟和发育程度:方法:将胎猪小肠分段移植到免疫缺陷小鼠的网膜和肾下囊,或经酶处理生成单细胞。将这些细胞在体外重新聚集而成的球状细胞移植到免疫缺陷小鼠的肾下囊。移植后 4 周和 8 周分别收获节段性移植物和球形体,并对这些标本的结构成熟度和体内发育情况进行组织学评估:结果:球体被移植并供应宿主小鼠的血管,但没有明显观察到肠道分层结构,大小也几乎没有变化。另一方面,节段性移植物在粘膜、内圆层和外纵肌中形成了深隐窝。与第四周收获的移植物相比,八周收获的移植物的隐窝更深,平滑肌层和肠神经系统更成熟,但未观察到肠蠕动波:结论:用胎儿小肠细胞制作的球形组织不能形成分层结构,也不能充分成熟。结论:用胎儿小肠细胞制作的球状体不能形成分层结构,也不能充分成熟,相反,节段组织在体内移植后结构成熟并发育,因此是潜在的移植组织。
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Maturation and development of fetal pig intestinal tissue in immunodeficient mice.

Purpose: This study aimed to compare the degree of maturation and development of fetal pig segmental intestinal tissue with that of spheroids created by in-vitro reaggregation of dissociated fetal intestinal cells after transplantation into immunodeficient mice.

Methods: Fetal pig small intestines were transplanted as segmental grafts into the omentum and subrenal capsules of immunodeficient mice or enzymatically treated to generate single cells. Spheroids made by in-vitro reaggregation of these cells were transplanted into the subrenal capsules of immunodeficient mice. The segmental grafts and spheroids were harvested four and eight weeks after transplantation, and the structural maturity and in-vivo development of these specimens were histologically evaluated.

Results: The spheroids were engrafted and supplied blood vessels from the host mice, but an intestinal layered structure was not clearly observed, and there was almost no change in size. On the other hand, the segmental grafts formed deep crypts in the mucus membrane, the inner circular layer, and outer longitudinal muscles. The crypts of the transplanted grafts harvested at eight weeks were much deeper, and the smooth muscle layer and the enteric nervous system were more mature than those of grafts harvested at the fourth week, although the intestinal peristaltic wave was not observed.

Conclusions: Spheroids created from fetal small intestinal cells could not form layered structures or mature sufficiently. Conversely, segmental tissues structurally matured and developed after in-vivo transplantation and are therefore potential grafts for transplantation.

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