Woodburn Kathryn W, Jaynes Jesse, Clemens L Edward
Riptide Bioscience, Inc., 941 Railroad Avenue, Vallejo, CA 94952, USA.
Integrative Biosciences, College of Agriculture, Environment and Nutritional Sciences, Tuskegee University, Tuskegee, AL 36088, USA.
Antibiotics (Basel). 2020 Jan 13;9(1):23. doi: 10.3390/antibiotics9010023.
Acne vulgaris, caused by the Gram-positive bacterium , is a prevalent dermatologic condition with substantial cutaneous and psychological morbidity. Mild acne is treated with topical antibiotics with more severe inflammatory forms requiring the prolonged use of oral antibiotics, resulting in antimicrobial resistance development. Innovative treatment alternatives, providing complete microbicidal eradication with minimal safety issues and limited susceptibility to microbial resistance, are fervently sought. Designed antimicrobial peptides (dAMPs) are engineered analogs of naturally occurring AMPs that possess a reduced likelihood of developing bacterial resistance. Seven novel dAMP sequences were screened for in vitro bactericidal effectiveness against antibiotic resistant clinical isolates. Five peptides (RP444, RP551, RP554, RP556, and RP557) exhibited potent in vitro antibacterial activity. The Therapeutic Index, a measure of specificity for killing multidrug resistant over mammalian cells, was determined using bioluminescent human keratinocytes. The Therapeutic Index was highest for the disulfide dAMP, RP556, with a value of 130. The lead dAMP candidate RP556, was further evaluated in a multidrug-resistant intradermal murine infection model. A topical application of 5 mg/mL RP556 (0.5%) eliminated infection. If these preclinical results are translated clinically, dAMPs may become a viable topical monotherapy for the treatment of recalcitrant acne infections.
寻常痤疮由革兰氏阳性菌引起,是一种常见的皮肤病,会导致严重的皮肤和心理问题。轻度痤疮采用局部抗生素治疗,而较严重的炎症形式则需要长期使用口服抗生素,这会导致抗菌药物耐药性的产生。人们迫切需要创新的治疗方法,这种方法要能在安全性问题最小且对微生物耐药性敏感性有限的情况下实现完全杀菌。设计抗菌肽(dAMPs)是天然存在的抗菌肽的工程类似物,产生细菌耐药性的可能性较低。对七个新的dAMP序列针对抗生素耐药临床分离株的体外杀菌效果进行了筛选。五种肽(RP444、RP551、RP554、RP556和RP557)表现出强大的体外抗菌活性。使用生物发光人角质形成细胞测定治疗指数,这是一种衡量对多药耐药菌相对于哺乳动物细胞的杀伤特异性的指标。二硫键dAMP RP556的治疗指数最高,为130。主要的dAMP候选物RP556在多药耐药的皮内小鼠感染模型中进一步评估。局部应用5mg/mL RP556(0.5%)可消除感染。如果这些临床前结果转化为临床应用,dAMPs可能成为治疗顽固性痤疮感染的可行局部单一疗法。