Diclazuril Inhibits Biofilm Formation and Hemolysis of Staphylococcus aureus. 2021

Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
Department of Infectious Diseases and the Key Lab of Endogenous Infection, Shenzhen Nanshan People's Hospital and the 6th Affiliated Hospital of Shenzhen University Health Science Center, Shenzhen, Guangdong 518052, China.

Biofilm formation and hemolysis induced by Staphylococcus aureus are closely related to pathogenicity. However, no drugs exist to inhibit biofilm formation or hemolysis induced by S. aureus in clinical practice. This study found diclazuril had antibacterial action against S. aureus with minimum inhibitory concentrations (MICs) at 50 μM for both methicillin-sensitive S. aureus (MSSA) and methicillin-resistant S. aureus (MRSA). Diclazuril (at 1/4× or 1/8× MICs) significantly inhibited biofilm formation of S. aureus under static or flow-based conditions and also inhibited hemolysis induced by S. aureus. The RNA levels of transcriptional regulatory genes (agrA, agrC, luxS, sarA, sigB, saeR, saeS), biofilm formation-related genes (aur, bap, ccpA, cidA, clfA, clfB, fnbA, fnbB, icaA, icaB, sasG), and virulence-related genes (hla, hlb, hld, hlg, lukDE, lukpvl-S, spa, sbi, alpha-3 PSM, beta PSM, coa) of S. aureus were decreased when treated by diclazuril (at 1/4× MIC) for 4 h. The diclazuril nonsensitive clones of S. aureus were selected in vitro by induction of wildtype strains for about 90 days under the pressure of diclazuril. Mutations in the possible target genes of diclazuril against S. aureus were detected by whole-genome sequencing. This study indicated that there were three amino acid mutations in the diclazuril nonsensitive clone of S. aureus, two of which were located in genes with known function (SMC-Scp complex subunit ScpB and glyceraldehyde-3-phosphate dehydrogenase 1, respectively) and one in a gene with unknown function (hypothetical protein). Diclazuril showed a strong inhibition effect on planktonic cells and biofilm formation of S. aureus with the overexpression of the scpB gene.

UI MeSH Term Description Entries
D009570 Nitriles Organic compounds containing the -CN radical. The concept is distinguished from CYANIDES, which denotes inorganic salts of HYDROGEN CYANIDE. Nitrile
D006461 Hemolysis The destruction of ERYTHROCYTES by many different causal agents such as antibodies, bacteria, chemicals, temperature, and changes in tonicity. Haemolysis,Extravascular Hemolysis,Intravascular Hemolysis,Extravascular Hemolyses,Haemolyses,Hemolyses, Extravascular,Hemolyses, Intravascular,Hemolysis, Extravascular,Hemolysis, Intravascular,Intravascular Hemolyses
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D013211 Staphylococcus aureus Potentially pathogenic bacteria found in nasal membranes, skin, hair follicles, and perineum of warm-blooded animals. They may cause a wide range of infections and intoxications.
D014227 Triazines Heterocyclic rings containing three nitrogen atoms, commonly in 1,2,4 or 1,3,5 or 2,4,6 formats. Some are used as HERBICIDES. Triazine,Benzotriazines
D055624 Methicillin-Resistant Staphylococcus aureus A strain of Staphylococcus aureus that is non-susceptible to the action of METHICILLIN. The mechanism of resistance usually involves modification of normal or the presence of acquired PENICILLIN BINDING PROTEINS. MRSA,Methicillin Resistant Staphylococcus aureus
D018441 Biofilms Encrustations formed from microbes (bacteria, algae, fungi, plankton, or protozoa) embedded in an EXTRACELLULAR POLYMERIC SUBSTANCE MATRIX that is secreted by the microbes. They occur on body surfaces such as teeth (DENTAL DEPOSITS); inanimate objects, and bodies of water. Biofilms are prevented from forming by treating surfaces with DENTIFRICES; DISINFECTANTS; ANTI-INFECTIVE AGENTS; and anti-fouling agents. Biofilm

Related Publications

Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
April 2015, FEMS microbiology letters,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
September 2014, Foodborne pathogens and disease,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
January 2018, Frontiers in microbiology,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
January 2021, Frontiers in microbiology,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
May 2010, Nature,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
December 2015, Antimicrobial agents and chemotherapy,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
May 2020, Antibiotics (Basel, Switzerland),
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
January 2015, Biological & pharmaceutical bulletin,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
June 2023, Current microbiology,
Jinxin Zheng, and Yongpeng Shang, and Yang Wu, and Jianfeng Wu, and Junwen Chen, and Zhanwen Wang, and Xiang Sun, and Guangjian Xu, and Qiwen Deng, and Di Qu, and Zhijian Yu
December 2010, Journal of ocular pharmacology and therapeutics : the official journal of the Association for Ocular Pharmacology and Therapeutics,
Copied contents to your clipboard!