Phenylboronic acid-derived nanovectors for gene/drug delivery by targeting cell surface glycans

Venkanna Muripiti, Venkatesh Ravula, Srinivas Batthula, Janardhan Banothu and Ramesh Gondru
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Abstract

Gene mutations within cells can lead to cancer, a global health challenge affecting millions worldwide. In combating cancer, various treatments such as surgery, radiotherapy, and chemotherapy have been employed. However, the distinct underlying genetic abnormalities causing the cancer are sometimes not addressed by conventional treatments. Adding to these obstacles, targeted therapy is another continuing challenge in cancer treatment. According to recent reports, phenylboronic acid (PBA)-decorated nanoparticles efficiently transfer genes to the intended location due to their strong affinity for sialic acid (SA), which is typically overexpressed in cancerous cells. These PBA-decorated nanoparticles may connect to cancer cells specifically, which enables them to target and deliver the cargo to cancer cells. Therefore, the present review concentrates on the role of PBA-decorated nanoparticles in gene/drug delivery. It includes a discussion on various boronic acid (BA)-conjugated macromolecules. We begin with an exploration of the chemistry underlying BA and its utility in effective delivery. Furthermore, the review elaborates on its application as a targeting ligand, providing a promising avenue for more precise and effective cancer treatment strategies.

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苯硼酸衍生纳米载体通过靶向细胞表面聚糖传递基因/药物
细胞内的基因突变可导致癌症,这是影响全球数百万人健康的全球性挑战。在抗击癌症的过程中,人们采用了手术、放疗和化疗等各种治疗方法。然而,传统疗法有时无法解决导致癌症的潜在基因异常问题。除了这些障碍之外,靶向治疗也是癌症治疗中的另一个持续挑战。根据最近的报道,苯基硼酸(PBA)装饰的纳米粒子能将基因有效地转移到预定位置,这是因为它们与通常在癌细胞中过度表达的硅烷酸(SA)有很强的亲和力。这些经 PBA 修饰的纳米颗粒可与癌细胞特异性连接,从而使它们能够靶向将货物运送到癌细胞。因此,本综述集中探讨了 PBA 装饰纳米粒子在基因/药物递送中的作用。其中包括对各种硼酸(BA)共轭大分子的讨论。我们首先探讨了硼酸的化学基础及其在有效递送中的作用。此外,这篇综述还阐述了硼酸作为靶向配体的应用,为更精确、更有效的癌症治疗策略提供了一条前景广阔的途径。
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