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Selection of a chemically defined medium for culturing fetal mouse small intestine
Abstract:
We evaluated six commercially available tissue culture media in their capacity to support villi morphogenesis and enterocyte differentiation during duodenal development of the fetal mouse in vitro: McCoy's 5A, Medium 199, Swim's S77, Trowell T8, Leibovitz L-15, and RPMI-1640. The duodenal segments were resected at 15 d gestation, before the formation of intestinal villi. In the segments cultured with the first four media, no villi differentiated even at 72 h culture. The number of epithelial cells per transverse section of the explants did not increase at 24 h and thereafter the number of epithelial cells decreased, except with McCoy's 5A. With the Leibovitz and RPMI media, rudimentary villi differentiated at 24 h of culture and they attained their longest length at 48 h. With the RPMI medium, the number of epithelial cells doubled at 24 h of culture and with Leibovitz medium it doubled at 48 h. At the fine structural level absorptive cells remained poorly differentiated with all the media studied. Goblet cells were easily identified after 24 h culture; they had a well developed rough endoplasmic reticulum and numerous mucous granules. Endocrine cells differentiated in culture and they were loaded with secretion granules. It was concluded that the small intestine of the fetal mouse can be kept in organ culture for at least 72 h. Full maturation of absorptive cells seemed to require some additional factor(s) as they remained poorly differentiated with all the media studied. Because well differentiated endocrine cells were present in all the explants, it appeared that gastrointestinal hormones do not affect villi morphogenesis and absorptive cells differentiation.
Insights
This study compared six tissue culture media for fetal mouse duodenal development. RPMI-1640 and Leibovitz L-15 best supported villi morphogenesis and cell proliferation in vitro.
Area of Science:
- Developmental Biology
- Gastroenterology
- Tissue Engineering
Background:
- Villi morphogenesis and enterocyte differentiation are critical for fetal duodenal development.
- Understanding optimal in vitro culture conditions is essential for studying early intestinal development.
Purpose of the Study:
- To evaluate six commercially available tissue culture media for supporting fetal mouse duodenal development in vitro.
- To assess the capacity of these media to promote villi morphogenesis and enterocyte differentiation.
Main Methods:
- Fetal mouse duodenal segments (15 days gestation) were cultured in six different media: McCoy's 5A, Medium 199, Swim's S77, Trowell T8, Leibovitz L-15, and RPMI-1640.
- Explants were analyzed at 24, 48, and 72 hours for villi formation, epithelial cell proliferation, and differentiation of absorptive, goblet, and endocrine cells.
Main Results:
- Leibovitz L-15 and RPMI-1640 media supported rudimentary villi morphogenesis and significant epithelial cell proliferation.
- Goblet and endocrine cells differentiated well in culture across all media, but absorptive cells remained poorly differentiated.
- The first four tested media failed to support villi differentiation.
Conclusions:
- Fetal mouse small intestine can be maintained in organ culture for up to 72 hours.
- RPMI-1640 and Leibovitz L-15 are superior for supporting villi morphogenesis and cell proliferation in vitro.
- Additional factors are likely required for complete absorptive cell maturation in vitro.