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从[具体物种]分离出的BrSPR-20-P1肽被开发成脂质体水凝胶,作为一种潜在的局部抗菌剂。

BrSPR-20-P1 peptide isolated from sp. developed into liposomal hydrogel as a potential topical antimicrobial agent.

作者信息

Changsan Narumon, Atipairin Apichart, Sakdiset Pajaree, Muenraya Poowadon, Balekar Neelam, Srichana Teerapol, Sritharadol Rutthapol, Phanapithakkun Suranate, Sawatdee Somchai

机构信息

College of Pharmacy, Rangsit University Pathumtani 12000 Thailand

School of Pharmacy, Walailak University Thasala Nakhon Si Thammarat 80160 Thailand

出版信息

RSC Adv. 2024 Aug 28;14(37):27394-27411. doi: 10.1039/d4ra03722g. eCollection 2024 Aug 22.

Abstract

A novel BrSPR-20-P1 antimicrobial peptide (P1-AMP; NH-VVVNVLVKVLPPPVV-COOH) isolated from sp. SPR-20 was encapsulated in a liposome containing varying proportions of l-α-phosphatidylcholine (PC) and cholesterol (CH). P1-AMP liposomes were incorporated into a chitosan hydrogel to achieve a peptide concentration of 0.02%. P1-AMP has been tested for its antibacterial and wound healing activities. The physicochemical characteristics of liposomes and hydrogel were investigated, including drug release, permeability, cell toxicity, antimicrobial activities, and stability studies. P1-AMP showed higher antimicrobial and wound-healing activities than the negative control. A toxicity test of P1-AMP in keratinocyte cell lines revealed cell viability of 100% at a concentration range of 1.96-1000 μg mL. The empty liposomes exhibited an average particle size ranging from 324.5 ± 8.6 to 1823.7 ± 288.2 nm. The size range of P1-AMP liposomes was 378.6 ± 14.0 to 2363.0 ± 255.6 nm. The zeta potential of the blank liposome ranged from -40.43 ± 2.51 to -60.17 ± 0.93 mV and it decreased to -57.33 ± 0.72 to -70.33 ± 0.15 mV of the liposome loaded with peptide. SEM images showed liposomes were ovoid spheres with smooth surfaces. The chosen formulation, composed of PC to CH in an 18 : 1 ratio (formulation F3), had the highest entrapment effectiveness with small particle size and possessed an acceptable zeta potential. The developed P1-AMP liposome-loaded hydrogels exhibited a yellowish-clear appearance with a viscosity of 758.0 ± 149.8 cPs. The P1-AMP was rapidly released from the P1-AMP-loaded liposome hydrogel formulation. The P1-AMP-loaded liposome showed high permeability compared to P1-AMP alone or P1-AMP in hydrogel without the incorporation of liposomes. The minimum inhibitory concentration (MIC) against and methicillin-resistant (MRSA) of P1-AMP-loaded liposome hydrogel was 2 μg mL, equivalent to P1-AMP. It completely killed at 10× and 5× MIC after 6 and 12 h of incubation, respectively. The formulation did not induce cytotoxicity to the tested keratinocyte cell and remained stable for at least 6 months under the studied conditions.

摘要

从sp. SPR - 20中分离出的一种新型BrSPR - 20 - P1抗菌肽(P1 - AMP;NH - VVVNVLVKVLPPPVV - COOH)被包裹在含有不同比例的l-α-磷脂酰胆碱(PC)和胆固醇(CH)的脂质体中。将P1 - AMP脂质体掺入壳聚糖水凝胶中,使肽浓度达到0.02%。对P1 - AMP的抗菌和伤口愈合活性进行了测试。研究了脂质体和水凝胶的物理化学特性,包括药物释放、渗透性、细胞毒性、抗菌活性和稳定性研究。P1 - AMP显示出比阴性对照更高的抗菌和伤口愈合活性。P1 - AMP在角质形成细胞系中的毒性测试表明,在1.96 - 1000μg/mL的浓度范围内细胞活力为100%。空脂质体的平均粒径范围为324.5±8.6至1823.7±288.2nm。P1 - AMP脂质体的粒径范围为378.6±14.0至2363.0±255.6nm。空白脂质体的zeta电位范围为-40.43±2.51至-60.17±0.93mV,而负载肽的脂质体的zeta电位降至-57.33±0.72至-70.33±0.15mV。扫描电子显微镜图像显示脂质体为表面光滑的卵形球体。所选的由PC与CH以18∶1比例组成的配方(配方F3)具有最高的包封效率、较小的粒径且具有可接受的zeta电位。所制备的负载P1 - AMP脂质体的水凝胶呈现淡黄色透明外观,粘度为758.0±149.8厘泊。P1 - AMP从负载P1 - AMP的脂质体水凝胶配方中快速释放。与单独的P1 - AMP或未掺入脂质体的水凝胶中的P1 - AMP相比,负载P1 - AMP的脂质体显示出高渗透性。负载P1 - AMP脂质体水凝胶对[具体细菌名称未给出]和耐甲氧西林[具体细菌名称未给出](MRSA)的最低抑菌浓度(MIC)为2μg/mL,与P1 - AMP相当。在孵育6小时和12小时后,它分别在10倍和5倍MIC时完全杀死[具体细菌名称未给出]。该配方对测试的角质形成细胞没有诱导细胞毒性,并且在所研究的条件下至少6个月保持稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/164b/11351071/a90fca45133c/d4ra03722g-f1.jpg

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