数字农科院2.0

Efficiency of NZ2114 on Superficial Pyoderma Infected with Staphylococcus pseudintermedius

文献类型: 外文期刊

作者: Na Yang;Yan Huang;Yuanyuan Li;Da Teng;Ruoyu Mao;Ya Hao;Lingyun Wei;Jianhua Wang

作者机构:

关键词: antimicrobial peptides;chemical permeation enhancers;NZ2114;Staphylococcus pseudintermedius;superficial pyoderma;transdermal delivery

期刊名称: Pharmaceuticals

ISSN: 1424-8247

年卷期: 2024 年 17 卷 3 期

页码:

收录情况: SCIE(2024版)

摘要: Staphylococcus pseudintermedius (S. pseudintermedius) is the main pathogen causing pyoderma of canines. With the emergence of drug-resistant bacteria, traditional antibiotic treatments are limited. As a potential antibacterial agent, NZ2114 was effective against S. pseudintermedius, including drug-resistant strains. Its bactericidal efficacy was superior to mupiroxacin, ofloxacin and lincomycin. To facilitate the transcutaneous delivery of NZ2114 for the treatment of superficial pyoderma, chemical permeation enhancers were added since water-soluble NZ2114 does not easily penetrate the skin lipid layer. Two different NZ2114 sprays were prepared by combining 1% Azone + 10% propylene glycol (PG) or 5% N-methylpyrrolidone (NMP) + 10% PG with NZ2114 after screening. The cumulative permeability of NZ2114 sprays were 244.149 and 405.245 μg/cm2 at 24 h with an in vitro percutaneous assay of mice skin, which showed a 244% and 405% increase in skin permeability than NZ2114, respectively. In addition, the efficacy of NZ2114 sprays in reducing skin bacteria colonisation was demonstrated in a mouse model of superficial pyoderma (24 mice, 3 mice/group) induced by S. pseudintermedius, and the 5% NMP + 10% PG + NZ2114 group had the best therapeutic effect compared to the other groups. This preparation did not cause any skin irritation, laying the foundation for the development of an effective and non-toxic topical product.

分类号:

  • 相关文献

[1]Antibacterial peptide NZ2114-loaded hydrogel accelerates Staphylococcus aureus-infected wound healing. Huang, Yan,Yang, Na,Teng, Da,Mao, Ruoyu,Hao, Ya,Ma, Xuanxuan,Wei, Lingyun,Wang, Jianhua. 2022

[2](-)-Epigallocatechin gallate (EGCG)-nanoethosomes as a transdermal delivery system for docetaxel to treat implanted human melanoma cell tumors in mice. Liao, Bingwu,Ying, Hao,Fan, Zhaoyang,Zhang, Weihua,Ravichandran, Nagaiya,Du, Qizhen,Yu, Chenhuan,Ying, Huazhong,Shi, John,Xu, Yongquan,Yin, Junfeng,Jiang, Yongwen.

[3]Expression and characterization of recombinant gallinacin-9 and gallinacin-8 in Escherichia coli. Ma, De-ying,Shan, An-shan,Liu, Sheng-wang,Han, Zong-xi,Li, Yi-jin.

[4]In Vitro/Vivo Mechanisms of Antibacterial Peptide NZ2114 against Staphylococcus pseudintermedius and Its Biofilms. Shuang Zhang,Na Yang,Ruoyu Mao,Ya Hao,Da Teng,Jianhua Wang. 2024

[5]Staphylococcus pseudintermedius induces pyroptosis of canine corneal epithelial cells by activating the ROS-NLRP3 signalling pathway. Wang, Zhihao,Guo, Long,Yuan, Changning,Zhu, Chengcheng,Li, Jun,Zhong, Haoran,Mao, Peng,Li, Jianji,Cui, Luying,Dong, Junsheng,Liu, Kangjun,Meng, Xia,Zhu, Guoqiang,Wang, Heng. 2024

[6]High expression of a plectasin-derived peptide NZ2114 in Pichia pastoris and its pharmacodynamics, postantibiotic and synergy against Staphylococcus aureus. Zhang, Yong,Teng, Da,Mao, Ruoyu,Wang, Xiumin,Xi, Di,Hu, Xiaoyuan,Wang, Jianhua,Zhang, Yong,Teng, Da,Mao, Ruoyu,Wang, Xiumin,Xi, Di,Hu, Xiaoyuan,Wang, Jianhua.

[7]A study on fungal defensin against multidrug-resistant Clostridium perfringens and its treatment on infected poultry. Xueling Zheng,Da Teng,Ruoyu Mao,Ya Hao,Na Yang,Fengming Hu,Jianhua Wang. 2021

[8]Effect of NZ2114 against Streptococcus dysgalactiae biofilms and its application in murine mastitis model. Na Yang,Qingjuan Zhang,Ruoyu Mao,Ya Hao,Xuanxuan Ma,Da Teng,Huan Fan,Jianhua Wang. 2022

[9]Antimicrobial Peptides From Different Plant S.ources: Isolation, Characterisation, And P urification. Tang, Swee-Seong,Tang, Swee-Seong,Sekaran, Shamala D.,Prodhan, Zakaria H.,Le, Cheng-Foh,Biswas, Sudhangshu K.,Prodhan, Zakaria H.. 2018

[10]EST-based in silico identification and in vitro test of antimicrobial peptides in Brassica napus. Ke, Tao,Cao, Huihui,Huang, Junyan,Dong, Caihua,Yu, Jingyin,Mao, Han,Liu, Shengyi,Ke, Tao,Wang, Xi,Niu, Qiuhong,Hui, Fengli,Huang, Junyan,Hu, Fan,Huang, Jin,Dong, Caihua,Ma, Xiangdong,Liu, Shengyi. 2015

[11]Design and characterization of novel hybrid peptides from LFB15(W4,10), HP(2-20), and cecropin A based on structure parameters by computer-aided method. Tian, Zi-gang,Dong, Tian-tang,Teng, Da,Yang, Ya-lin,Wang, Jian-hua.

[12]Mechanism of action of a novel recombinant peptide, MP1102, against Clostridium perfringens type C. Zong, Lifen,Teng, Da,Wang, Xiumin,Mao, Ruoyu,Yang, Na,Hao, Ya,Wang, Jianhua,Zong, Lifen,Teng, Da,Wang, Xiumin,Mao, Ruoyu,Yang, Na,Hao, Ya,Wang, Jianhua.

[13]Bacterial expression of a Trichosanthes kirilowii defensin (TDEF1) and its antifungal activity on Fusarium oxysporum. Jian Gui-Liang,Zhang Ying-Tao,Ai Tie-Min.

[14]Fusion expression of bovine lactoferricin in Escherichia coli. Feng, Xing-jun,Wang, Jian-hua,Shan, An-shan,Teng, Da,Yang, Ya-lin,Yao, Yi,Yang, Guan-pin,Shao, Yan-chun,Liu, Shuo,Zhang, Fan.

[15]Gene Expression Profiling of Cecropin B-Resistant Haemophilus parasuis. Wang, Chunmei,Chen, Fangzhou,Hu, Han,Li, Wentao,Chen, Pin,Liu, Yingyu,Ku, Xugang,He, Qigai,Chen, Huanchun,Wang, Chunmei,Xue, Feiqun,Wang, Yang.

[16]In vitro and in vivo characterization of a new recombinant antimicrobial peptide, MP1102, against methicillin-resistant Staphylococcus aureus. Zhang, Yong,Teng, Da,Wang, Xiumin,Mao, Ruoyu,Cao, Xintao,Hu, Xiaoyuan,Zong, Lifen,Wang, Jianhua,Zhang, Yong,Teng, Da,Wang, Xiumin,Mao, Ruoyu,Cao, Xintao,Hu, Xiaoyuan,Zong, Lifen,Wang, Jianhua.

[17]Multimerization and fusion expression of bovine lactoferricin derivative LfcinB15-W4,10 in Escherichia coli. Tian, Zi-gang,Da Teng,Yang, Ya-lin,Luo, Jin,Feng, Xing-jun,Fan, Ying,Zhang, Fan,Wang, Jian-hua.

[18]Two Novel Duck Antibacterial Peptides, Avian beta-Defensins 9 and 10, with Antimicrobial Activity (Retracted article. See vol. 23, pg. 1046, 2013). Liao, Wenyan,Wang, Ruiqin,Han, Zongxi,Liu, Shengwang,Ma Deying,Liao, Wenyan,Wang, Ruiqin. 2009

[19]Ecotopic Expression Of The Antimicrobial Peptide DmAMP1W Improves Resistance Of Transgenic Wheat To Two Diseases: Sharp Eyespot And Common Root Rot. Su, Q, Wang, K, Zhang, ZY苏强,王珂,张增艳. 2020

[20]In Vitro And In Vivo A.ntibacterial Effect Of Nz2114 A gainst Streptococcus Suis Type 2 Infection In Mice Peritonitis Models. Jiao, J, Mao, RY, Teng, D, Wang, XM, Hao, Y, Yang, N, Wang, X, Feng, XJ, Wang, JH. 2017

作者其他论文 更多>>