Polymer Science Group, Department of Chemical and Biomolecular Engineering, University of Melbourne, Parkville, VIC, 3010, Australia.
Melbourne Dental School and the Bio21 Institute of Molecular Science and Biotechnology Oral Health CRC, University of Melbourne, Parkville, VIC, 3010, Australia.
Adv Healthc Mater. 2018 Nov;7(21):e1800627. doi: 10.1002/adhm.201800627. Epub 2018 Sep 2.
In this work, the effect of two key structural parameters, number of arms and arm length, of star-shaped "structurally nanoengineered antimicrobial peptide polymers" (SNAPPs) on their antimicrobial activity and biocompatibility, is investigated. A library of star-shaped SNAPPs is prepared, containing varying arm numbers and arm lengths. Antimicrobial assays are then performed to assess the capacity of the SNAPPs to disrupt the membrane, inhibit the growth, and kill pathogenic bacteria. A major finding of the study is that increasing arm number and length of SNAPPs enhanced antimicrobial activity, which can be respectively attributed to the higher local concentrations of polypeptide arms and increased α-helical content. SNAPP architecture is shown to affect the bacteria membrane state and therefore mechanism of killing. Two more potent structures with up to twice the antimicrobial activity of the previously reported SNAPP are discovered in this process. Toxicities of the SNAPPs also increase with arm number and arm length, however therapeutic index calculations identified a 16-arm SNAPP and an easier to prepare 4-arm SNAPP as the best therapeutic agents. The biocompatibility of the SNAPP with the best biological activity is also evaluated in vivo, showing no markers of systemic damage in mice.
在这项工作中,研究了星型“结构纳米工程抗菌肽聚合物”(SNAPP)的两个关键结构参数,即臂数和臂长,对其抗菌活性和生物相容性的影响。制备了一系列具有不同臂数和臂长的星型 SNAPP。然后进行抗菌测定,以评估 SNAPP 破坏膜、抑制生长和杀死致病菌的能力。该研究的一个主要发现是,增加 SNAPP 的臂数和长度可以增强抗菌活性,这可以分别归因于多肽臂的局部浓度更高和增加的α-螺旋含量。SNAPP 结构会影响细菌膜状态,从而影响其杀菌机制。在这个过程中发现了两种更有效的结构,其抗菌活性是之前报道的 SNAPP 的两倍。然而,随着臂数和臂长的增加,SNAPP 的毒性也会增加,但是治疗指数计算确定 16 臂 SNAPP 和更容易制备的 4 臂 SNAPP 是最佳治疗剂。还在体内评估了具有最佳生物学活性的 SNAPP 的生物相容性,在小鼠中未发现全身损伤的标志物。