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The Antibacterial and Anti-inflammatory Activity of Chicken Cathelicidin-2 combined with Exogenous Surfactant for the Treatment of Cystic Fibrosis-Associated Pathogens

机译:鸡Cathelicidin-2与外源表面活性剂联合治疗囊性纤维化相关病原菌的抗菌和抗炎活性

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Cystic fibrosis (CF) is characterized by recurrent airway infections with antibiotic-resistant bacteria and chronic inflammation. Chicken cathelicin-2 (CATH-2) has been shown to exhibit antimicrobial activity against antibiotic-resistant bacteria and to reduce inflammation. In addition, exogenous pulmonary surfactant has been suggested to enhance pulmonary drug delivery. It was hypothesized that CATH-2 when combined with an exogenous surfactant delivery vehicle, bovine lipid extract surfactant (BLES), would exhibit antimicrobial activity against CF-derived bacteria and downregulate inflammation. Twelve strains of CF-pathogens were exposed to BLES+CATH-2 in vitro and killing curves were obtained to determine bactericidal activity. Secondly, heat-killed bacteria were administered in vivo to elicit a pro-inflammatory response with either a co-administration or delayed administration of BLES+CATH-2 to assess the antimicrobial-independent, anti-inflammatory properties of BLES+CATH-2. CATH-2 alone exhibited potent antimicrobial activity against all clinical strains of antibiotic-resistant bacteria, while BLES+CATH-2 demonstrated a reduction, but significant antimicrobial activity against bacterial isolates. Furthermore, BLES+CATH-2 reduced inflammation in vivo when either co-administered with killed bacteria or after delayed administration. The use of a host-defense peptide combined with an exogenous surfactant compound, BLES+CATH-2, is shown to exhibit antimicrobial activity against antibiotic-resistant CF bacterial isolates and reduce inflammation.
机译:囊性纤维化(CF)的特征是反复出现气道感染,并伴有耐药菌和慢性炎症。鸡cathelicin-2(CATH-2)已显示出对抗生素抗性细菌的抗菌活性并减少了炎症。另外,已建议外源性肺表面活性剂增强肺部药物的递送。假设CATH-2与外源性表面活性剂递送载体牛脂质提取表面活性剂(BLES)结合使用时,将对CF衍生的细菌表现出抗菌活性并下调炎症。将十二个CF病原菌菌株在体外暴露于BLES + CATH-2,并获得杀死曲线以确定杀菌活性。其次,在体内施用热杀死的细菌以与BLES + CATH-2共同施用或延迟施用来引发促炎反应,以评估BLES + CATH-2的抗微生物非依赖性,抗炎特性。单独的CATH-2表现出对所有抗生素耐药菌临床菌株的有效抗菌活性,而BLES + CATH-2表现出对细菌分离株的降低但显着的抗菌活性。此外,当与杀灭的细菌同时给药或延迟给药后,BLES + CATH-2可减少体内炎症。已显示,将宿主防御肽与外源性表面活性剂化合物BLES + CATH-2结合使用可显示出对抗生素抗性CF细菌分离株的抗菌活性,并减少炎症。

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