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Design and development of biodegradable bacterial-based microrobot for anti-tumour therapy

机译:抗肿瘤治疗生物降解性细菌微管状的设计与发展

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Flagellated bacteria are a promising and powerful source for the development of reliable and efficient micro-robots. These bio-actuated devices have a wide variety of application in medical field including targeted drug delivery into the tumour. As of now drugs are delivered into the tumour through the blood vessels on the outside but it's hard to infiltrate the tumour itself. Our goal is to develop bacterial driven micro-beads which would deliver the drugs inside the tumour and degrade it from inside out. For this purpose we have developed 10 µm size polyethylene glycol (PEG) beads using chemical cross linking and incorporated inside it nanoparticles carrying the anticancer drug. For the providing the propulsion force and tumour targeting capability to the microbeads we have attached the genetically engineered Salmonella Typhimurium bacteria onto the surface of beads. These bacterial driven microbeads were found to be highly mobile and have high tumour targeting capability.
机译:被鞭挞的细菌是开发可靠和高效的微机器人的有希望和强大的来源。这些生物致动装置在包括靶向药物输送到肿瘤中的医学领域具有各种各样的应用。截至目前,药物通过外面的血管递送到肿瘤中,但难以渗透肿瘤本身。我们的目标是开发细菌驱动的微珠,可以在肿瘤内部递送药物并从内部降解它。为此目的,我们使用化学交叉连接并掺入携带抗癌药物的IT纳米颗粒内部的10μm尺寸的聚乙二醇(PEG)珠子。对于提供给微珠的推进力和肿瘤靶向能力,我们已经将遗传工程化的沙门氏菌毛孢菌细菌附着到珠子表面上。发现这些细菌驱动的微珠非常移动并且具有高肿瘤靶向能力。

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