Exosome-mediated delivery of siRNA molecules in cancer therapy: triumphs and challenges

IF 3.9 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Frontiers in Molecular Biosciences Pub Date : 2024-09-18 DOI:10.3389/fmolb.2024.1447953
Philemon Ubanako, Sheefa Mirza, Paul Ruff, Clement Penny
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Abstract

The discovery of novel and innovative therapeutic strategies for cancer treatment and management remains a major global challenge. Exosomes are endogenous nanoscale extracellular vesicles that have garnered increasing attention as innovative vehicles for advanced drug delivery and targeted therapy. The attractive physicochemical and biological properties of exosomes, including increased permeability, biocompatibility, extended half-life in circulation, reduced toxicity and immunogenicity, and multiple functionalization strategies, have made them preferred drug delivery vehicles in cancer and other diseases. Small interfering RNAs (siRNAs) are remarkably able to target any known gene: an attribute harnessed to knock down cancer-associated genes as a viable strategy in cancer management. Extensive research on exosome-mediated delivery of siRNAs for targeting diverse types of cancer has yielded promising results for anticancer therapy, with some formulations progressing through clinical trials. This review catalogs recent advances in exosome-mediated siRNA delivery in several types of cancer, including the manifold benefits and minimal drawbacks of such innovative delivery systems. Additionally, we have highlighted the potential of plant-derived exosomes as innovative drug delivery systems for cancer treatment, offering numerous advantages such as biocompatibility, scalability, and reduced toxicity compared to traditional methods. These exosomes, with their unique characteristics and potential for effective siRNA delivery, represent a significant advancement in nanomedicine and cancer therapeutics. Further exploration of their manufacturing processes and biological mechanisms could significantly advance natural medicine and enhance the efficacy of exosome-based therapies.
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外泌体介导的 siRNA 分子在癌症治疗中的应用:成功与挑战
发现治疗和控制癌症的新型创新疗法仍然是一项重大的全球性挑战。外泌体是一种内源性纳米级细胞外囊泡,作为先进的药物输送和靶向治疗的创新载体,已引起越来越多的关注。外泌体具有诱人的物理化学和生物学特性,包括渗透性增加、生物相容性、循环半衰期延长、毒性和免疫原性降低以及多种功能化策略,因此成为癌症和其他疾病的首选药物递送载体。小干扰 RNAs(siRNAs)能够显著靶向任何已知基因:利用这一特性来敲除癌症相关基因是治疗癌症的一种可行策略。外泌体介导的 siRNAs 针对不同类型癌症的广泛研究为抗癌治疗带来了可喜的成果,一些制剂已进入临床试验阶段。本综述介绍了外泌体介导的 siRNA 给药在几种癌症中的最新进展,包括这种创新给药系统的多重益处和最小缺点。此外,我们还强调了植物提取的外泌体作为治疗癌症的创新药物递送系统的潜力,与传统方法相比,它具有生物相容性、可扩展性和毒性降低等诸多优势。这些外泌体具有独特的特性和有效递送 siRNA 的潜力,是纳米医学和癌症疗法的一大进步。进一步探索外泌体的制造工艺和生物机制将极大地推动天然药物的发展,并提高基于外泌体的疗法的疗效。
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来源期刊
Frontiers in Molecular Biosciences
Frontiers in Molecular Biosciences Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.20
自引率
4.00%
发文量
1361
审稿时长
14 weeks
期刊介绍: Much of contemporary investigation in the life sciences is devoted to the molecular-scale understanding of the relationships between genes and the environment — in particular, dynamic alterations in the levels, modifications, and interactions of cellular effectors, including proteins. Frontiers in Molecular Biosciences offers an international publication platform for basic as well as applied research; we encourage contributions spanning both established and emerging areas of biology. To this end, the journal draws from empirical disciplines such as structural biology, enzymology, biochemistry, and biophysics, capitalizing as well on the technological advancements that have enabled metabolomics and proteomics measurements in massively parallel throughput, and the development of robust and innovative computational biology strategies. We also recognize influences from medicine and technology, welcoming studies in molecular genetics, molecular diagnostics and therapeutics, and nanotechnology. Our ultimate objective is the comprehensive illustration of the molecular mechanisms regulating proteins, nucleic acids, carbohydrates, lipids, and small metabolites in organisms across all branches of life. In addition to interesting new findings, techniques, and applications, Frontiers in Molecular Biosciences will consider new testable hypotheses to inspire different perspectives and stimulate scientific dialogue. The integration of in silico, in vitro, and in vivo approaches will benefit endeavors across all domains of the life sciences.
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