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首页> 外文期刊>Targeted oncology >Aptamer-Functionalized Nanoparticles as 'Smart Bombs': The Unrealized Potential for Personalized Medicine and Targeted Cancer Treatment
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Aptamer-Functionalized Nanoparticles as 'Smart Bombs': The Unrealized Potential for Personalized Medicine and Targeted Cancer Treatment

机译:适体功能化的纳米粒子作为“智能炸弹”:个性化医学和靶向癌症治疗的未实现潜力

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摘要

Conventional delivery of chemotherapeutic agents leads to multiple systemic side effects and toxicity, limiting the doses that can be used. The development of targeted therapies to selectively deliver anti-cancer agents to tumor cells without damaging neighboring unaffected cells would lead to higher effective local doses and improved response rates. Aptamers are single-stranded oligonucleotides that bind to target molecules with both high affinity and high specificity. The high specificity exhibited by aptamers promotes localization and uptake by specific cell populations, such as tumor cells, and their conjugation to anti-cancer drugs has been explored for targeted therapy. Advancements in the development of polymeric nanoparticles allow anti-cancer drugs to be encapsulated in protective nonreactive shells for controlled drug delivery with reduced toxicity. The conjugation of aptamers to nanoparticle-based therapeutics may further enhance direct targeting and personalized medicine. Here we present how the combinatorial use of aptamer and nanoparticle technologies has the potential to develop "smart bombs" for targeted cancer treatment, highlighting recent pre-clinical studies demonstrating efficacy for the direct targeting to particular tumor cell populations. However, despite these pre-clinical promising results, there has been little progress in moving this technology to the bedside.
机译:常规化学治疗剂的递送导致多种全身性副作用和毒性,从而限制了可使用的剂量。开发靶向疗法以选择性地将抗癌剂递送至肿瘤细胞而不损害相邻未受影响的细胞将导致更高的有效局部剂量和改善的应答率。适体是单链寡核苷酸,其以高亲和力和高特异性结合至靶分子。适体表现出的高特异性促进了特定细胞群(例如肿瘤细胞)的定位和摄取,并且已经探索了它们与抗癌药物的缀合以用于靶向治疗。聚合纳米颗粒的开发进展使得抗癌药物可以被封装在保护性非反应性外壳中,从而以降低的毒性控制药物的递送。适体与基于纳米颗粒的治疗剂的缀合可以进一步增强直接靶向和个性化药物。在这里,我们介绍适体和纳米粒子技术的组合使用如何为靶向癌症治疗开发“智能炸弹”的潜力,重点介绍了最近的临床前研究,该研究表明了直接靶向特定肿瘤细胞群体的功效。然而,尽管临床前取得了这些令人鼓舞的结果,但将这项技术转移到床头方面却进展甚微。

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