Tram Nhan Dai Thien, Ee Pui Lai Rachel
Department of Pharmacy, National University of Singapore, 18 Science Drive 4, Singapore 117543, Singapore.
Antibiotics (Basel). 2017 Jul 4;6(3):14. doi: 10.3390/antibiotics6030014.
For the past few decades, the rapid rise of antibiotic multidrug-resistance has presented a palpable threat to human health worldwide. Meanwhile, the number of novel antibiotics released to the market has been steadily declining. Therefore, it is imperative that we utilize innovative approaches for the development of antimicrobial therapies. This article will explore alternative strategies, namely drug conjugates and biological carriers for the targeted delivery of antibiotics, which are often eclipsed by their nanomedicine-based counterparts. A variety of macromolecules have been investigated as conjugate carriers, but only those most widely studied in the field of infectious diseases (e.g., proteins, peptides, antibodies) will be discussed in detail. For the latter group, blood cells, especially erythrocytes, have been successfully tested as homing carriers of antimicrobial agents. Bacteriophages have also been studied as a candidate for similar functions. Once these alternative strategies receive the amount of research interest and resources that would more accurately reflect their latent applicability, they will inevitably prove valuable in the perennial fight against antibiotic resistance.
在过去几十年里,抗生素多重耐药性的迅速上升对全球人类健康构成了明显威胁。与此同时,投放市场的新型抗生素数量一直在稳步下降。因此,我们必须采用创新方法来开发抗菌疗法。本文将探讨替代策略,即用于抗生素靶向递送的药物缀合物和生物载体,它们常常被基于纳米医学的同类物所掩盖。多种大分子已被研究作为缀合物载体,但本文将详细讨论那些在传染病领域研究最广泛的(如蛋白质、肽、抗体)。对于后一组,血细胞,尤其是红细胞,已被成功测试为抗菌剂的归巢载体。噬菌体也已作为具有类似功能的候选物进行了研究。一旦这些替代策略获得更准确反映其潜在适用性的研究兴趣和资源数量,它们将不可避免地在长期对抗抗生素耐药性的斗争中证明是有价值的。