首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Live encapsulated Lactobacillus acidophilus cells in yogurt for therapeutic oral delivery: preparation and in vitro analysis of alginate-chitosan microcapsules.
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Live encapsulated Lactobacillus acidophilus cells in yogurt for therapeutic oral delivery: preparation and in vitro analysis of alginate-chitosan microcapsules.

机译:用于口服治疗的酸奶中的活包裹的嗜酸乳杆菌细胞:藻酸盐-壳聚糖微胶囊的制备和体外分析。

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摘要

Targeted delivery of live microencapsulated bacterial cells has strong potential for application in treating various diseases, including diarrhea, kidney failure, liver failure, and high cholesterol, among others. This study investigates the potential of microcapsules composed of two natural polymers, alginate and chitosan (AC), and the use of these artificial cells in yogurt for delivery of probiotic Lactobacillus acidophilus bacterial live cells. Results show that the integrity of AC microcapsules was preserved after 76 h of mechanical shaking in MRS broth and after 12 h and 24 h in simulated gastric and intestinal fluids. Using an in vitro computer-controlled simulated human gastrointestinal (GI) model, we found 8.37 log CFU/mL of viable bacterial cells were present after 120 min of gastric exposure and 7.96 log CFU/mL after 360 min of intestinal exposure. In addition, AC microcapsules composed of chitosan 10 and 100 at various concentrations were subjected to 4-week storage in 2% milk fat yogurt or0.85% physiological solution. It was found that 9.37 log CFU/mL of cells encapsulated with chitosan 10 and 8.24 log CFU/mL of cells encapsulated with chitosan 100 were alive after 4 weeks. The AC capsule composed of 0.5% chitosan 10 provided the highest bacterial survival of 9.11 log CFU/mL after 4 weeks. Finally, an investigation of bacterial viability over 72 h in different pH buffers yielded highest survival of 6.34 log CFU/mL and 10.34 log CFU/mL at pH 8 for free and AC-encapsulated cells, respectively. We conclude from these findings that encapsulation allows delivery of a higher number of bacteria to desired targets in the GI tract and that microcapsules containing bacterial cells are good candidates for oral artificial cells for bacterial cell therapy.
机译:靶向递送活的微囊化细菌细胞具有强大的潜力,可用于治疗各种疾病,包括腹泻,肾衰竭,肝衰竭和高胆固醇等。这项研究调查了由两种天然聚合物藻酸盐和壳聚糖(AC)组成的微胶囊的潜力,以及在酸奶中使用这些人造细胞递送益生菌嗜酸乳杆菌细菌活细胞。结果表明,AC微胶囊的完整性在MRS肉汤中进行机械摇动76 h后以及在模拟的胃液和肠液中分别经过12 h和24 h后得以保留。使用体外计算机控制的模拟人胃肠(GI)模型,我们发现胃暴露120分钟后存在8.37 log CFU / mL的活细菌细胞,而肠暴露360分钟后存在7.96 log CFU / mL。此外,将由各种浓度的壳聚糖10和100组成的AC微胶囊在2%乳脂酸奶或0.85%生理溶液中储存4周。发现在4周后存活9.37log CFU / mL的被壳聚糖10包裹的细胞和8.24log CFU / mL的被壳聚糖10包裹的细胞还活着。由0.5%的壳聚糖10组成的AC胶囊在4周后的最高细菌存活率为9.11 log CFU / mL。最后,对不同pH缓冲液中72 h的细菌生存力进行研究,得出游离和AC封装细胞在pH 8下的最高存活率分别为6.34 log CFU / mL和10.34 log CFU / mL。从这些发现我们得出结论,包囊允许将更多数量的细菌递送至胃肠道中的期望靶标,并且包含细菌细胞的微胶囊是用于细菌细胞治疗的口服人工细胞的良好候选者。

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