胍基多肽树枝状聚合物:癌症治疗领域的先锋纳米载体

Dilpreet Singh, Lalu Muhammad Irham, Amrinder Singh, Balak Das Kurmi
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引用次数: 0

摘要

::随着创新型递送系统的出现,癌症治疗的模式发生了转变,而基于胍基肽的树枝状聚合物已成为这一转变历程中的先锋。这些树枝状聚合物具有独特的分子结构和内在的生物相容性,为癌症治疗中靶向输送治疗药物提供了一条前景广阔的途径。本综述深入探讨了基于胍基肽的树枝状聚合物的复杂世界,揭示了它们错综复杂的结构、作用机制以及将它们从实验室奇物推向潜在临床冠军的进展。这些树枝状聚合物利用胍的强效特性,在封装和运输从传统化疗药物到尖端核酸等各种货物分子方面表现出无与伦比的精确性。这篇综述深入探讨了它们的设计原理,研究了它们穿越复杂的细胞屏障以实现最佳货物输送的能力。此外,它还深入探讨了个性化治疗方法、多模态成像和生物信息学驱动设计等新兴趋势,强调了它们重新定义未来癌症疗法的潜力。最重要的是,该综述探讨了生物兼容性和安全性等关键问题,研究了细胞毒性概况、免疫反应和体内研究。它强调了将科学奇迹与临床应用的严格要求相结合的重要性。文章通过每个部分的叙述,强调了胍基肽树枝状聚合物的前景和可能性,以及它们如何可能重塑癌症精准治疗的格局。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Guanidinium-based Integrated Peptide Dendrimers: Pioneer Nanocarrier in Cancer Therapy
:: The landscape of cancer therapy has witnessed a paradigm shift with the emergence of innovative delivery systems, and Guanidinium-based Peptide Dendrimers have emerged as a vanguard in this transformative journey. With their unique molecular architecture and intrinsic biocompatibility, these dendrimers offer a promising avenue for the targeted delivery of therapeutic cargo in cancer treatment. This comprehensive review delves into the intricate world of Guanidinium- based Peptide Dendrimers, unraveling their structural intricacies, mechanisms of action, and advancements that have propelled them from laboratory curiosities to potential clinical champions. Exploiting the potent properties of guanidinium, these dendrimers exhibit unparalleled precision in encapsulating and transporting diverse cargo molecules, ranging from conventional chemotherapeutics to cutting-edge nucleic acids. The review navigates the depths of their design principles, investigating their prowess in traversing the complex terrain of cellular barriers for optimal cargo delivery. Moreover, it delves into emerging trends, such as personalized therapeutic approaches, multimodal imaging, and bioinformatics-driven design, highlighting their potential to redefine the future of cancer therapy. Crucially, the review addresses the pivotal concerns of biocompatibility and safety, examining cytotoxicity profiles, immune responses, and in vivo studies. It underscores the importance of aligning scientific marvels with the stringent demands of clinical applications. Through each section, the narrative underscores the promises and possibilities that Guanidinium-based Peptide Dendrimers hold and how they can potentially reshape the landscape of precision cancer therapy.
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