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The choice of anti-tumor strategies based on micromolecules or drug loading function of biomaterials

机译:基于生物材料的微分或药物载体功能的抗肿瘤策略选择

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摘要

With advances in modern medicine, diverse tumor therapies have been developed. However, because of a lack of effective methods, the delivery of drugs or micromolecules in the human body has many limitations. Biomaterials are natural or synthetic functional materials that are prone to contact or interact with living systems. Therefore, the application of biomaterials provides innovative anti-tumor strategies, especially in tumor targeting, chemotherapy sensitization, tumor immunotherapy. The combination of biomaterials and drugs provides a promising strategy to overcome the biological barriers of drug delivery. Nanomaterials can target specific tumor sites to enhance the efficiency of tumor therapies and decrease the toxicity of drug through passive targeting, active targeting and direct targeting. Additionally, biomaterials can be used to enhance the sensitivity of tumor cells to chemotherapy drugs. Furthermore, modifiable biomaterials can induce effective anti-tumor immune response. Currently, the developmental trend of biomaterial for drug delivery is motivated by the combination and diversification of different therapies. With interdisciplinary development, a variety of anti-tumor strategies will emerge in an endless stream to bring great hope for tumor therapy. In this review, we will discuss the anti-tumor strategies based on nanoparticles and injectable scaffolds.
机译:随着现代医学的进展,已经开发了不同的肿瘤疗法。然而,由于缺乏有效的方法,人体中的药物或微麻痹的递送具有许多限制。生物材料是天然或合成功能材料,易于接触或与生活系统相互作用。因此,生物材料的应用提供了创新的抗肿瘤策略,尤其是肿瘤靶向,化疗敏感,肿瘤免疫疗法。生物材料和药物的组合提供了克服药物递送生物障碍的有希望的策略。纳米材料可以靶向特异性肿瘤部位,以提高肿瘤疗法的效率,通过被动靶向,活性靶向和直接靶向降低药物的毒性。另外,生物材料可用于增强肿瘤细胞对化疗药物的敏感性。此外,可修饰的生物材料可以诱导有效的抗肿瘤免疫反应。目前,药物递送生物材料的发育趋势是由不同疗法的组合和多样化的激励。随着跨学科的发展,各种抗肿瘤策略将出现在无休止的溪流中,为肿瘤治疗带来了极大的希望。在本综述中,我们将根据纳米颗粒和可注射支架讨论抗肿瘤策略。

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