Thoreux K, Senegas-Balas F, Bernard-Perrone F, Giannarelli S, Denariaz G, Bouley C, Balas D
Laboratoire d'Histologie, Faculté de Médecine de Nice, France.
J Dairy Sci. 1996 Jan;79(1):33-43. doi: 10.3168/jds.S0022-0302(96)76331-2.
Trophic effects of milk fermented with Lactobacillus helveticus, Lactobacillus paracasei ssp. paracasei, Bifidobacterium sp., or the combination of Lactobacillus bulgaricus and Streptococcus thermophilus (yogurt) were studied on the IEC-6 intestinal epithelial cell line. Incorporation of [methyl-3H]thymidine, mitochondrial dehydrogenase activities, cyclic AMP production, and differentiation of levels of the IEC-6 strain were evaluated between the 15th and 30th passage in culture. All fermented and unfermented milks enhanced trophic responses of IEC-6 cells in a dose-dependent manner. Compared with the corresponding milks, supernatant fractions were more effective in stimulating mitochondrial dehydrogenase response. Fermented milk supernatants were also more effective than the corresponding unfermented fractions. Increases in DNA synthesis and cyclic AMP confirmed the activation observed with mitochondrial dehydrogenase. Yogurt induced the more trophic response with an increased number of the more differentiated cell morphotype. Fermentation with L. casei also demonstrated an important trophic adaptation of IEC-6 cells. Milk processing by lactic acid bacteria enhanced trophic and proliferation responses of intestinal epithelial cell line IEC-6. These results suggested that IEC-6 cells could represent an accurate and easy in vitro model for testing the trophic quality of various nutrients and for an optimization of physiological digestive functions.
研究了瑞士乳杆菌、副干酪乳杆菌亚种副干酪乳杆菌、双歧杆菌,或保加利亚乳杆菌和嗜热链球菌组合(酸奶)发酵的牛奶对IEC-6肠上皮细胞系的营养作用。在培养的第15代至第30代之间,评估了[甲基-3H]胸苷掺入、线粒体脱氢酶活性、环磷酸腺苷产生以及IEC-6菌株的分化水平。所有发酵和未发酵的牛奶均以剂量依赖的方式增强了IEC-6细胞的营养反应。与相应的牛奶相比,上清液部分在刺激线粒体脱氢酶反应方面更有效。发酵乳上清液也比相应的未发酵部分更有效。DNA合成和环磷酸腺苷的增加证实了线粒体脱氢酶观察到的激活作用。酸奶诱导了更强的营养反应,具有更多分化细胞形态型的数量增加。干酪乳杆菌发酵也证明了IEC-6细胞的重要营养适应性。乳酸菌对牛奶的加工增强了肠上皮细胞系IEC-6的营养和增殖反应。这些结果表明,IEC-6细胞可以代表一种准确且易于操作的体外模型,用于测试各种营养素的营养质量以及优化生理消化功能。