数字农科院2.0

Personalized design enzyme-like activity theanine coated Pt clusters for catalytic damage of bacterial and infection management

文献类型: 外文期刊

作者: Chao Xu;Juanjuan Guo;Qinqin Zheng;Mingchuan Yang;Zhenduo Han;Na Zhang;Chunyu Zhang;Hongping Chen;Xiangchun Zhang

作者机构:

关键词: Antibacterial mechanism;Biofilms;Enzyme-like catalytic activity;Pt cluster

期刊名称: Chemical Engineering Journal

ISSN: 1385-8947

年卷期: 2025 年 505 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: The formation of biofilm affords protection against host immune responses while efficiently impeding the infiltration of antibiotics and other therapeutic agents. To address these issues, the development of novel non-antibiotic antimicrobial drugs is emerging as promising solutions for combating infectious diseases. To explore inorganic metal clusters antibiotics, we have designed a theanine platinum cluster (PtCs) antibacterial agent that freely penetrates the cell wall pores to be internalized inside bacteria. This agent exhibits enhanced bioavailability, possesses peroxidase-like activity with efficient singlet oxygen (1O2) generation, and inhibits and destroys biofilm formation. The in vitro experimental results demonstrate that PtCs potently inhibit bacterial growth and disrupt biofilms by catalyzing the production of reactive oxygen species (ROS). Additionally, we found that PtCs can trigger bacterial apoptosis by traversing the cell wall to enter the bacterium, where they induce DNA damage and inhibit DNA replication. In vivo study demonstrated that PtCs significantly enhance the healing of multidrug-resistant methicillin-resistant Staphylococcus aureus (MRSA) infectious wounds, and rescue mice suffering from MRSA-induced sepsis. The synthesized PtCs represent a promising candidate in the quest to combat bacterial resistance, offering significant potential for the development of novel antimicrobial strategies against bacterial infections.

分类号:

  • 相关文献

[1]Characterization of Streptococcus suis isolates from the diseased pigs in China between 2003 and 2007. Wei, Zigong,Li, Ran,Zhang, Anding,He, Hongkui,Hua, Yafeng,Xia, Jing,Chen, Huanchun,Jin, Meilin,Wei, Zigong,Li, Ran,Zhang, Anding,He, Hongkui,Hua, Yafeng,Xia, Jing,Chen, Huanchun,Jin, Meilin,Cai, Xuehui.

[2]Differential Immunoreactivity To Bovine Convalescent S.erum Between Mycoplasma Bovis B iofilms And Planktonic Cells Revealed By Comparative Immunoproteomic Analysis. Chen, SL,Hao, HF,Zhao, P,Ji, WH,Li, MX,Liu, YS,Chu, YF. 2018

[3]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

[4]Differential Immunoreactivity To Bovine Convalescent Serum Between Mycoplasma Bovis Biofilms And Planktonic Cells Revealed By Comparative Immunoproteomic Analysis. . 2018

[5]Polylactic Glycolic Acid-Mediated Delivery of Plectasin Derivative NZ2114 in Staphylococcus epidermidis Biofilms. Xuanxuan Ma,Na Yang,Ruoyu Mao,Ya Hao,Da Teng,Yinhua Huang,Jianhua Wang. 2024

[6]Engineering Antimicrobial Metal-Phenolic Network Nanoparticles with High Biocompatibility for Wound Healing. Yu, Rongxin,Chen, Hongping,He, Jian,Zhang, Zhichao,Zhou, Jiajing,Zheng, Qinqin,Fu, Zhouping,Lu, Chengyin,Lin, Zhixing,Caruso, Frank,Zhang, Xiangchun. 2024

[7]Editorial: Bacteriophages, a weapon against animal bacterial pathogens and biofilms. Yan Zhou,Hang Yang,Shaohui Wang. 2025

[8]Facile One-Pot Assembly of a Versatile Photoactive Nanozyme for Highly Efficient Antibacterial Therapy. Chen, Yingying,Ma, Kang,Liang, Meijuan,Dong, Pei,Wang, Hong,Yu, Shanshan,Sun, Jianwei,Kwok, Ryan T. K.,Lam, Jacky W. Y.,Gao, Yuhui,Tang, Ben Zhong,Wang, Fuan. 2025

[9]Extract of Syringa oblata: A new biocontrol agent against tobacco bacterial wilt caused by Ralstonia solanacearum. Bai, Wanming,Kong, Fanyu,Zhang, Chengsheng,Bai, Wanming,Lin, Yong.

[10]Efficient antibacterial agents: A review of the synthesis, biological evaluation and mechanism of pleuromutilin derivatives. Shang, Ruofeng,Guo, Wenzhu,Liang, Jianping,Wang, Jiatu.

[11]Mechanism of action of the tri-hybrid antimicrobial peptide LHP7 from lactoferricin, HP and plectasin on Staphylococcus aureus. Xi, Di,Wang, Xiumin,Teng, Da,Mao, Ruoyu,Zhang, Yong,Wang, Xiaojie,Wang, Jianhua,Xi, Di,Wang, Xiumin,Teng, Da,Mao, Ruoyu,Zhang, Yong,Wang, Xiaojie,Wang, Jianhua,Xi, Di.

[12]Inhibitory Effect of Camptothecin against Rice Bacterial Brown Stripe Pathogen Acidovorax avenae subsp avenae RS-2. Dong, Qiaolin,Cai, Li,Hou, Mingsheng,Luo, Ju,Qiu, Wen,Anjum, Syed Ishtiaq,Li, Bin,Xie, Guanlin,Anjum, Syed Ishtiaq,Sun, Guochang.

[13]Novel xanthone antibacterials: Semi-synthesis, biological evaluation, and the action mechanisms. Yan Lu,Ting Guan,Shaobing Wang,Cui Zhou,Meizhu Wang,Xiaoyang Wang,Keyu Zhang,Xiangan Han,Jinchao Lin,Qun Tang,Chunmei Wang,Wen Zhou. 2023

[14]Copper Clusters: An Effective Antibacterial for Eradicating Multidrug‐Resistant Bacterial Infection In Vitro and In Vivo. Xiangchun Zhang,Zhichao Zhang,Qingming Shu,Chao Xu,Qinqin Zheng,Zhao Guo,Chen Wang,Zhenxia Hao,Xin Liu,Guoqing Wang,Wangjun Yan,Hongping Chen,Chengyin Lu. 2021

[15]Inhibition of Haemophilus parasuis by berberine and proteomic studies of its mechanism of action. Yue Jia,Changqi Hao,Qin Yang,Wanjiang Zhang,Gang Li,Siguo Liu,Xin Hua. 2021

[16]Discovery of 1’-acetoxychavicol acetate (ACA) as a promising antibacterial compound from galangal (Alpinia galanga (Linn.) Willd). Dan Zhang,Liang Zou,Ding Tao Wu,Qi Guo Zhuang,Hua Bin Li,Vuyo Mavumengwana,Harold Corke,Ren You Gan. 2021

[17]The Pharmacodynamics Study of Insect Defensin DLP4 Against Toxigenic Staphylococcus hyicus ACCC 61734 in Vitro and Vivo. Ma Xuanxuan,Yang Na,Mao Ruoyu,Hao Ya,Yan Xue,Teng Da,Wang Jianhua. 2021

[18]Harsh Sensitivity and Mechanism Exploration of an Antibacterial Peptide Extracted from Walnut Oil Residue Derived from Agro-Industrial Waste. Dongwei Liu,Mei Liu,Dehao Meng,Yihan Mu,Tao Wang,Zhaolin Lv. 2022

[19]Antibacterial Activity of Chinese Red Propolis against Staphylococcus aureus and MRSA. Wenwen Zhang,Gomez Escalada Margarita,Di Wu,Wenqin Yuan,Sha Yan,Suzhen Qi,Xiaofeng Xue,Kai Wang,Liming Wu. 2022

[20]In Vitro Antimicrobial Synergistic Activity and the Mechanism of the Combination of Naringenin and Amikacin Against Antibiotic-Resistant Escherichia coli. Lankun Yi,Mingze Cao,Xu Chen,Yubin Bai,Weiwei Wang,Xiaojuan Wei,Yuxiang Shi,Yongying Zhang,Tenghe Ma,Zhen Zhu,Jiyu Zhang. 2024

作者其他论文 更多>>