'In vitro' assessments of microencapsulated viable cells as a result of primary bile acid-encapsulated formulation for inflammatory disorders

Q4 Medicine
A. Mooranian, Melissa Jones, Daniel Walker, C. Ionescu, S. Wagle, B. Kovacevic, Jacqueline Chester, Thomas Foster, Edan Johnston, M. Mikov, H. Al‐Salami
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引用次数: 1

Abstract

Background / Aim: Metformin is widely used in type 2 diabetes and exhibits many positive biological effects on pancreatic b-cells and muscle cells, such as supporting insulin release by b-cells and glucose uptake by muscle cells and reducing oxidative stress, particularly due to diabetes-associated hyperglycaemia. Interestingly, for type 1 diabetes, transplantation of healthy b-cells has been proposed as a novel way to replace insulin therapy. Recently, bile acid-formulations containing transplantable b-cells showed best stability. Hence, this study aimed to explore the effects of metformin-bile acid formulations in b-cell encapsulation and on the biological activities of b-cells and muscle-cells. Methods: Two sets of biological effects were examined, using metformin-bile acid formulations, on encapsulated b-cells and on muscle cells exposed to the formulations. Results: Various encapsulated b-cell formulations' cell viability, insulin levels, cellular oxidative stress, cellular inflammatory profile and bioenergetics at the normoand hyperglycaemic states showed differing results based upon the metformin concentration and the inclusion or absence of bile acid. Similar effects were observed with muscle cells. Low ratios of metformin and bile acids showed best biological effects, suggesting a formulation dependent result. The formulations' positive effects were more profound at the hyperglycaemic state suggesting efficient cell protective effects. Conclusion: Overall, metformin had positive impacts on the cells in a concentration-dependent manner, with the addition of chenodeoxycholic acid further improving results.
“体外”评估微囊化活细胞作为原发性胆汁酸囊化制剂治疗炎症性疾病的结果
背景/目的:二甲双胍广泛应用于2型糖尿病,对胰腺b细胞和肌肉细胞有许多积极的生物学作用,如支持b细胞释放胰岛素和肌肉细胞摄取葡萄糖,减少氧化应激,特别是糖尿病相关的高血糖。有趣的是,对于1型糖尿病,健康b细胞移植被认为是替代胰岛素治疗的一种新方法。最近,含有可移植b细胞的胆汁酸制剂显示出最好的稳定性。因此,本研究旨在探讨二甲双胍-胆汁酸制剂在b细胞包封过程中对b细胞和肌肉细胞生物活性的影响。方法:采用二甲双胍-胆汁酸制剂对包膜的b细胞和暴露于该制剂的肌肉细胞进行两组生物学效应检测。结果:不同包封的b细胞制剂在正常和高血糖状态下的细胞活力、胰岛素水平、细胞氧化应激、细胞炎症谱和生物能量学显示出基于二甲双胍浓度和胆汁酸包含或不包含的不同结果。在肌肉细胞中也观察到类似的效果。低比例的二甲双胍和胆汁酸表现出最好的生物学效果,提示配方依赖的结果。在高血糖状态下,该制剂的积极作用更为深远,表明其具有有效的细胞保护作用。结论:总体而言,二甲双胍对细胞有正向影响,且呈浓度依赖性,添加鹅去氧胆酸进一步改善了效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
13
审稿时长
4 weeks
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