微藻驱动的微型机器人:革新生物制药中的药物输送和靶向治疗。

Xianmin Wang, Songlin Ma, Renwu Liu, Tiexin Zhang, Xinyu Mao, Yuxue Chen, Pengcheng Wan, Zhanyou Chi, Fantao Kong
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引用次数: 0

摘要

微藻是一类被归类为一般公认安全(GRAS)的光合自养微生物。它们富含高价值的生物活性化合物,在食品、医疗保健和制药领域有着广泛的应用。最近的研究表明,微藻作为生物医学应用的创新生物材料具有巨大的潜力。微藻独特的光致运动使它们能够控制药物递送到患者的目标组织。此外,微藻在光照下通过光合作用产生氧气,克服了肿瘤缺氧的限制,改善了生物医学成像。此外,微藻固有的生物物理特性和可修饰性可以用于生物混合机器人和生物打印的开发,扩大其临床应用。本文综述了目前微藻在医学应用方面的工程创新,如药物输送、肿瘤缺氧靶向、伤口愈合和免疫治疗。微藻卓越的生物相容性、多样的生物功能和成本效益为未来靶向给药和精准医疗的应用提供了广阔的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microalgae-driven microrobots: revolutionizing drug delivery and targeted therapy in biopharmaceuticals.

Microalgae are a group of photosynthetic autotrophic microorganisms that are classified as Generally Recognized as safe (GRAS). They are rich in high-value bioactive compounds with broad applications in food, healthcare and pharmaceuticals. Recent research demonstrated that microalgae have significant potential as innovative biomaterials for biomedical applications. The unique phototactic movement of microalgae enables them controlled drug delivery to targeted tissues in patients. Furthermore, microalgae produce oxygen via photosynthesis when exposed to light, overcoming tumor hypoxia limitations and improving biomedical imaging in vivo. Additionally, the intrinsic biophysical properties and modifiability of microalgae can be harnessed for the development of biohybrid robots and bioprinting, expanding their clinical applications. This review highlights current engineering innovations in microalgae for medical applications, such as drug delivery, tumor hypoxia targeting, wound healing, and immunotherapy. The remarkable biocompatibility, diverse biological functionalities, and cost-effectiveness of microalgae provide a promising platform for future application of targeted drug delivery and precision medicine.

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