Dhilip Kumar Sathish Sundar, Abrahamse Heidi
Laser Research Centre, Faculty of Health Sciences, University of Johannesburg, Johannesburg, South Africa.
Front Chem. 2022 Aug 15;10:969809. doi: 10.3389/fchem.2022.969809. eCollection 2022.
In recent years, the role of biocompatible nanocarriers (BNs) and their cancer cell targeting efficiency in photodynamic therapy (PDT) holds potential benefits for cancer treatment. Biocompatible and biodegradable nanoparticles are successfully used as carrier molecules to deliver cancer drugs and photosensitizers due to their material safety in the drug delivery system. Biocompatible nanocarriers are non-toxic and ensure high-level biocompatibility with blood, cells, and physiological conditions. The physicochemical properties of BNs often enable them to modify their surface chemistry, which makes conjugating specific ligands or antibodies to achieve cancer cell targeting drug delivery in PDT. This review article focuses on the various types of BNs used in targeted drug delivery, physicochemical properties, and surface chemistry of BNs in targeted drug delivery, advantages of BNs in drug delivery systems, and the targeting efficiency of BNs on some specific targeting receptors for cancer therapy. Furthermore, the review briefly recaps the nanocarrier-based targeted approaches in cancer PDT.
近年来,生物相容性纳米载体(BNs)在光动力疗法(PDT)中的作用及其对癌细胞的靶向效率为癌症治疗带来了潜在益处。生物相容性和可生物降解的纳米颗粒因其在药物递送系统中的材料安全性,成功用作载体分子来递送抗癌药物和光敏剂。生物相容性纳米载体无毒,并确保与血液、细胞和生理条件具有高度生物相容性。BNs的物理化学性质通常使其能够修饰其表面化学,这使得可以缀合特定配体或抗体,以在PDT中实现癌细胞靶向药物递送。本文综述聚焦于用于靶向药物递送的各类BNs、靶向药物递送中BNs的物理化学性质和表面化学、BNs在药物递送系统中的优势,以及BNs对某些用于癌症治疗的特定靶向受体的靶向效率。此外,该综述简要回顾了癌症PDT中基于纳米载体的靶向方法。