SAAP-148 and halicin exhibit synergistic antimicrobial activity against antimicrobial-resistant bacteria in skin but not airway epithelial culture models.

IF 3.7 Q2 INFECTIOUS DISEASES
JAC-Antimicrobial Resistance Pub Date : 2025-04-11 eCollection Date: 2025-04-01 DOI:10.1093/jacamr/dlaf050
Patrick R Lennard, Pieter S Hiemstra, Julia R Dorin, Peter H Nibbering
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Abstract

Background: The escalating global threat of antimicrobial resistance (AMR) necessitates the development of novel antimicrobial agents, innovative strategies, and representative infection models to combat AMR bacterial infections. Host defence peptides (HDPs) and their derivatives have been proposed as complements to conventional antibiotics due to their antibacterial activity and modulation of the immune response.

Objectives: This study investigated the novel use of the HDP-derived synthetic antibacterial and anti-biofilm peptide (SAAP)-148 as a pretreatment in epithelial tissue models to prevent colonization by AMR bacteria. The combined activities of SAAP-148 pretreatment with post-infection halicin to treat infections were also explored.

Methods: Employing cultured human skin equivalents (HSEs) and primary bronchial epithelial cells (PBECs) as models of tissue infection, we examined the prophylactic and therapeutic effects of SAAP-148, both singularly and in combination with the repurposed antibiotic halicin, against AMR bacteria. We additionally interrogated the response of HSE and PBEC cultures to SAAP-148 treatment via confocal microscopy and quantitative PCR of native HDPs and inflammatory cytokine genes.

Results: Our findings demonstrated that pretreatment with SAAP-148 significantly reduces colonization of HSEs and PBECs by AMR Staphylococcus aureus and Pseudomonas aeruginosa. Confocal microscopy revealed differential uptake and localization of SAAP-148 in these tissues, correlating with its distinct activity in these tissues. SAAP-148 exposure temporarily increased expression of the HDPs cathelicidin (CAMP) and β-defensin 1 (DEFB1), and the cytokine IL-8 (CXCL8), which did not correlate with the transient antibacterial activity observed. Sequential treatment with SAAP-148 prior to infection with AMR S. aureus and post-infection halicin treatment demonstrated synergistic activity in HSEs, whereas this combined activity was indifferent in PBEC cultures.

Conclusions: These results support SAAP-148 as a candidate for pre-infection prophylaxis and synergistic antibiotic therapy with halicin in skin, broadening the potential of both agents to address AMR bacterial infection.

SAAP-148和halicin对皮肤耐药细菌表现出协同抗菌活性,但在气道上皮培养模型中没有。
背景:抗菌素耐药性(AMR)的全球威胁不断升级,需要开发新的抗微生物药物、创新策略和具有代表性的感染模型来对抗AMR细菌感染。宿主防御肽(hdp)及其衍生物由于具有抗菌活性和调节免疫反应而被认为是常规抗生素的补充。目的:本研究探讨了hdp衍生的合成抗菌和抗生物膜肽(SAAP)-148在上皮组织模型中的新应用,以防止AMR细菌的定植。探讨了SAAP-148预处理与感染后盐酸素联合治疗感染的活性。方法:采用培养的人皮肤等效细胞(HSEs)和原代支气管上皮细胞(PBECs)作为组织感染模型,研究SAAP-148单独使用和与重组抗生素halicin联合使用对AMR细菌的预防和治疗作用。此外,我们还通过共聚焦显微镜和天然HDPs和炎症细胞因子基因的定量PCR检测了HSE和PBEC培养物对SAAP-148处理的反应。结果:我们的研究结果表明,SAAP-148预处理可显著降低AMR金黄色葡萄球菌和铜绿假单胞菌对HSEs和PBECs的定殖。共聚焦显微镜显示SAAP-148在这些组织中的摄取和定位存在差异,这与SAAP-148在这些组织中的独特活性有关。SAAP-148暴露暂时增加了HDPs抗菌肽(CAMP)和β-防御素1 (DEFB1)以及细胞因子IL-8 (CXCL8)的表达,这与观察到的短暂抗菌活性无关。在感染AMR金黄色葡萄球菌之前用SAAP-148和感染后用halicin治疗在HSEs中显示出协同作用,而在PBEC培养中这种联合活性是无关的。结论:这些结果支持SAAP-148作为皮肤感染前预防和与盐素协同抗生素治疗的候选药物,扩大了这两种药物解决AMR细菌感染的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.30
自引率
0.00%
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审稿时长
16 weeks
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