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Bioadhesive Bacterial Microswimmers for Targeted Drug Delivery in the Urinary and Gastrointestinal Tracts

机译:生物粘附性细菌微泳剂在泌尿和胃肠道中靶向药物的递送

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Abstract Bacteria-driven biohybrid microswimmers (bacteriabots), which integrate motile bacterial cells and functional synthetic cargo parts (e.g., microparticles encapsulating drug), are recently studied for targeted drug delivery. However, adhesion of such bacteriabots to the tissues on the site of a disease (which can increase the drug delivery efficiency) is not studied yet. Here, this paper proposes an approach to attach bacteriabots to certain types of epithelial cells (expressing mannose on the membrane), based on the affinity between lectin molecules on the tip of bacterial type I pili and mannose molecules on the epithelial cells. It is shown that the bacteria can anchor their cargo particles to mannose-functionalized surfaces and mannose-expressing cells (ATCC HTB-9) using the lectin?¢????mannose bond. The attachment mechanism is confirmed by comparing the adhesion of bacteriabots fabricated from bacterial strains with or without type I pili to mannose-covered surfaces and cells. The proposed bioadhesive motile system can be further improved by expressing more specific adhesion moieties on the membrane of the bacteria.
机译:摘要细菌驱动的生物杂交微游泳器(bacteriabots)结合了运动细菌细胞和功能性合成货物部件(例如包裹药物的微粒),用于靶向药物输送。然而,尚未研究这种细菌机器人对疾病部位组织的粘附(这可以增加药物递送效率)。在此,本文基于细菌I型菌毛尖端的凝集素分子与上皮细胞上的甘露糖分子之间的亲和力,提出了一种将细菌机器人附着于某些类型的上皮细胞(在膜上表达甘露糖)的方法。结果表明,细菌可以利用凝集素-β-甘露糖键将其货物颗粒锚定在甘露糖官能化的表面和表达甘露糖的细胞(ATCC HTB-9)上。通过比较由带有或不带有I型菌毛的细菌菌株制造的细菌机器人对甘露糖覆盖的表面和细胞的粘附力,可以确认其附着机制。通过在细菌的膜上表达更特异性的粘附部分,可以进一步改善提出的生物粘附运动系统。

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