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Bacterial Ghosts as antigen and drug delivery system for ocular surface diseases: Effective internalization of Bacterial Ghosts by human conjunctival epithelial cells

机译:细菌鬼魂作为眼表疾病的抗原和药物递送系统:人结膜上皮细胞对细菌鬼魂的有效内化

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摘要

The purpose of the presented investigation was to examine the efficiency of the novel carrier system Bacterial Ghosts (BGs), which are empty bacterial cell envelopes of Gram-negative bacteria to target human conjunctival epithelial cells, as well as to test the endocytic capacity of conjunctival cells after co-incubation with BGs generated from different bacterial species, and to foreclose potential cytotoxic effects caused by BGs. The efficiency of conjunctival cells to internalize BGs was investigated using the Chang conjunctival epithelial cell line and primary human conjunctiva-derived epithelial cells (HCDECs) as in vitro model. A high capacity of HCDECs to functionally internalize BGs was detected with the level of internalization depending on the type of species used for BGs generation. Detailed analysis showed no cytotoxic effect of BGs on HCDECs independently of the used bacterial species. Moreover, co-incubation with BGs did not enhance expression of both MHC class I and class II molecules by HCDECs, but increased expression of ICAM-1. The high rates of BG's internalization by HCDECs with no BG-mediated cytotoxic impact designate this carrier system to be a promising candidate for an ocular surface drug delivery system. BGs could be useful for future therapeutic ocular surface applications and eye-specific disease vaccine development including DNA transfer
机译:本研究的目的是检查新型载体系统细菌幽灵(BG)的效率,该系统是革兰氏阴性细菌的空细菌细胞膜,可靶向人结膜上皮细胞,并测试结膜的内吞能力与不同细菌物种产生的BG共同孵育后,可去除细胞,并阻止由BG引起的潜在细胞毒性作用。使用Chang结膜上皮细胞系和原代人结膜来源的上皮细胞(HCDECs)作为体外模型,研究了结膜细胞将BG内化的效率。根据用于BG生成的物种类型,检测到HCDEC具有高功能将BG内在化。详细分析显示,与所用细菌种类无关,BG对HCDEC没有细胞毒性作用。此外,与BG的共孵育不会通过HCDEC增强MHC I类和II类分子的表达,但会增加ICAM-1的表达。 HCDEC对BG的内在化率很高,而没有BG介导的细胞毒性作用,这使该载体系统成为眼表药物递送系统的有希望的候选者。 BG可用于未来的治疗性眼表应用和特定于眼睛的疾病疫苗开发,包括DNA转移

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