细菌-纳米药物癌症治疗系统:双剑结合,针尖对抗

WeiYi Cheng , Li He , WeiYe Ren , TianXiang Yue , XiaoWei Xie , Jiang Sun , XinXin Chen , Zhibing Wu , Fanzhu Li , Ji-Gang Piao
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摘要

由于传统治疗方法的局限性和毒副作用,癌症仍然是一个巨大的健康挑战。最近在肿瘤微生物群领域的研究揭示了细菌在肿瘤中发挥的重要作用。细菌的独特特性使它们成为抗癌治疗的潜在载体。这是由于它们在肿瘤组织中积累的能力,靶向血脑屏障,并在缺氧环境中茁壮成长。与此同时,对肿瘤微环境内细菌的探索也取得了进展,针对关键的肿瘤内细菌成为癌症治疗的中心焦点。此外,多功能纳米颗粒在癌症治疗策略中的作用日益突出。这归功于它们出色的生物相容性、可定制的特性和精确的靶向能力。这些纳米颗粒不仅被更广泛地采用,而且在应用上也日趋成熟,使它们成为癌症治疗的最佳选择。本文概述了利用细菌作为载体递送纳米药物用于靶向肿瘤治疗的策略。它还深入探讨了这些策略在设计智能给药系统中的优势和潜力。本文强调肿瘤内部细菌环境对肿瘤的影响,重点研究利用纳米药物靶向关键肿瘤相关细菌,有效治疗肿瘤。这些发现具有实用价值,为开发基于纳米药物和细菌的创新癌症疗法提供了参考。
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Bacteria-nanodrug cancer treatment system: The combination of dual swords and the confrontation of needle tips

Cancer remains a formidable health challenge due to the limitations and toxic side effects associated with conventional treatment approaches. Recent research in the field of tumor microbiota has revealed the significant role bacteria play within tumors. The unique characteristics of bacteria position them as potential carriers for anticancer therapies. This is due to their ability to accumulate within tumor tissues, target the blood-brain barrier, and thrive in hypoxic environments. Meanwhile, the exploration of bacteria within the tumor microenvironment has gained momentum, with targeting key intratumoral bacteria becoming a central focus in cancer therapy. Moreover, multifunctional nanoparticles are increasingly prominent in cancer treatment strategies. This is attributed to their excellent biocompatibility, customizable properties, and precise targeting capabilities. These nanoparticles are not only being more widely adopted but are also maturing in application, positioning them as an optimal choice for cancer treatment. This article offers an overview of strategies that utilize bacteria as carriers to deliver nanodrugs for targeted tumor therapy. It also delves into the advantages and potential of these strategies in designing intelligent drug delivery systems. Emphasizing the impact of the tumor's internal bacterial environment on cancer, the article focuses on the utilization of nanodrugs to target key tumor-associated bacteria for effective cancer treatment. The findings presented carry practical value and provide a reference for the development of innovative cancer therapies based on nanodrugs and bacteria.

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