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富含精氨酸的肽模拟氨苄西林/庆大霉素缀合物用于应对医院内生物膜:一种重新利用一线抗生素的有前景策略。

Arginine-Rich Peptidomimetic Ampicillin/Gentamicin Conjugate To Tackle Nosocomial Biofilms: A Promising Strategy To Repurpose First-Line Antibiotics.

作者信息

Varvarà Paola, Calà Cinzia, Maida Carmelo M, Giuffrè Mario, Mauro Nicolò, Cavallaro Gennara

机构信息

Laboratory of Biocompatible Polymers, Department of Biological, Chemical and Pharmaceutical Sciences and Technologies (STEBICEF), University of Palermo, via Archirafi 32, 90123 Palermo, Italy.

Department of "Promozione della Salute, Materno-Infantile, di Medicina Interna e Specialistica di Eccellenza - G. D'Alessandro", University of Palermo, Via Del Vespro 133, 90127 Palermo, Italy.

出版信息

ACS Infect Dis. 2023 Apr 14;9(4):916-927. doi: 10.1021/acsinfecdis.2c00579. Epub 2023 Mar 16.

DOI:10.1021/acsinfecdis.2c00579
PMID:36926826
Abstract

Combined therapy with penicillins and aminoglycosides has been proved beneficial to address many persistent bacterial infections with possible synergistic effects. However, the different pharmacokinetic profiles of these two antibiotic classes may not guarantee a concerted spatio-temporal delivery at the site of action, decreasing the efficacy of this combination and promoting resistance. Herein, we propose a multifunctional antibiotic-polymer conjugate, designed to colocalize ampicillin and gentamicin to tackle persistent biofilm infections. The two antibacterial molecules were grafted along with the amino acid l-arginine to a biocompatible polymer backbone with peptidomimetic hydrophilic structure, obtaining the antimicrobial poly(argilylaspartamide-co-aspartic) acid-ampicillin, gentamicin (PAA-AG) conjugate. The PAA-AG conjugate displayed excellent biocompatibility on human cell lines if compared with free drugs, potentially enlarging their therapeutic window and safety, and suitable mucoadhesive characteristics which may help local treatments of mucosal infections. Studies on planktonic cultures of clinical and reference strains of , , and revealed that PAA-AG holds a broad-spectrum antibacterial efficacy, revealing high potency in inhibiting the growth of the tested strains. More interestingly, PAA-AG exhibited excellent antibiofilm activity on both Gram+ and Gram- communities, showing inhibition of their formation at subMIC concentrations as well as inducing the regression of mature biofilms. Given the high biocompatibility and broad antibiofilm efficacy, combined with the opportunity for synchronous co-delivery, the PAA-AG conjugate could be a valuable tool to increase the success of ampicillin/gentamicin-based antibiotic multitherapy.

摘要

已证明青霉素类药物与氨基糖苷类药物联合治疗对解决许多持续性细菌感染有益,可能具有协同作用。然而,这两类抗生素不同的药代动力学特征可能无法保证在作用部位实现协同的时空递送,从而降低这种联合用药的疗效并促进耐药性产生。在此,我们提出一种多功能抗生素 - 聚合物偶联物,旨在使氨苄西林和庆大霉素共定位,以应对持续性生物膜感染。这两种抗菌分子与氨基酸L - 精氨酸一起接枝到具有拟肽亲水结构的生物相容性聚合物主链上,得到抗菌性聚(精氨酰天冬酰胺 - 共 - 天冬氨酸) - 氨苄西林、庆大霉素(PAA - AG)偶联物。与游离药物相比,PAA - AG偶联物在人细胞系上表现出优异的生物相容性,有可能扩大其治疗窗口和安全性,并且具有合适的粘膜粘附特性,这可能有助于粘膜感染的局部治疗。对临床和参考菌株的浮游培养物进行的研究表明,PAA - AG具有广谱抗菌功效,在抑制受试菌株生长方面显示出高效性。更有趣的是,PAA - AG对革兰氏阳性菌和革兰氏阴性菌群落均表现出优异的抗生物膜活性,在亚抑菌浓度下抑制其形成,并诱导成熟生物膜消退。鉴于其高生物相容性和广泛的抗生物膜功效,再加上同步共递送的可能性,PAA - AG偶联物可能是提高基于氨苄西林/庆大霉素的抗生素联合治疗成功率的有价值工具。

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