Rhein kills Actinobacillus pleuropneumoniae, reduces biofilm formation, and effectively treats bacterial lung infections in mice

Author:

Ding Haifeng12,Bai Yilin3,Luo Weiyu12,Li Hao4,Zhu Chunling12,Zhao Xueqin5,Sun Huarun12,Wen Yuliang12,Zhang Wei12,Zhang Shouping12,Wen Bo12,Wang Ruibiao12,Zhang Longfei12,Liu Xuehan12,Shen Jiyuan2,Hu Jianhe12,Wang Lei12ORCID,Bai Yueyu1,Liao Chengshui2,Wu Yundi6,Wu Xilong6,Ding Ke72

Affiliation:

1. Ministry of Education Key Laboratory for Animal Pathogens and Biosafety, Zhengzhou 453000, PR China

2. College of Animal Science and Veterinary Medicine, Henan Institute of Science and Technology, Xinxiang 453003, PR China

3. School of Agricultural Sciences, Zhengzhou University, Zhengzhou 453000, PR China

4. Institute of Farmland Irrigation, Chinese Academy of Agricultural Sciences, Xinxiang 453002, PR China

5. Henan Normal University, Coll Fisheries, Xinxiang 453007, Henan, PR China

6. School of Biomedical Engineering, State Key Laboratory of Marine Resource Utilization in the South China Sea, Hainan University, Haikou 570228, PR China

7. The Key Lab of Veterinary Biological Products, Henan University of Science and Technology, Luoyang 471000, PR China

Abstract

Background. Actinobacillus pleuropneumoniae, a member of the Pasteurellaceae family, is known for its highly infectious nature and is the primary causative agent of infectious pleuropneumonia in pigs. This disease poses a considerable threat to the global pig industry and leads to substantial economic losses due to reduced productivity, increased mortality rates, and the need for extensive veterinary care and treatment. Due to the emergence of multi-drug-resistant strains, Chinese herbal medicine is considered one of the best alternatives to antibiotics due to its unique mechanism of action and other properties. As a type of Chinese herbal medicine, Rhein has the advantages of a wide antibacterial spectrum and is less likely to develop drug resistance, which can perfectly solve the limitations of current antibacterial treatments. Methods. The killing effect of Rhein on A. pleuropneumoniae was detected by fluorescence quantification of differential expression changes of key genes, and scanning electron microscopy was used to observe the changes in A. pleuropneumoniae status after Rhein treatment. Establishing a mouse model to observe the treatment of Rhein after A. pleuropneumoniae infection. Results. Here, in this study, we found that Rhein had a good killing effect on A. pleuropneumoniae and that the MIC was 25 µg ml−1. After 3 h of action, Rhein (4×MIC) completely kills A. pleuropneumoniae and Rhein has good stability. In addition, the treatment with Rhein (1×MIC) significantly reduced the formation of bacterial biofilms. Therapeutic evaluation in a murine model showed that Rhein protects mice from A. pleuropneumoniae and relieves lung inflammation. Quantitative RT-PCR (Quantitative reverse transcription polymerase chain reaction is a molecular biology technique that combines both reverse transcription and polymerase chain reaction methods to quantitatively detect the amount of a specific RNA molecule) results showed that Rhein treatment significantly downregulated the expression of the IL-18 (Interleukin refers to a class of cytokines produced by white blood cells), TNF-α, p65 and p38 genes. Along with the downregulation of genes such as IL-18, it means that Rhein has an inhibitory effect on the expression of these genes, thereby reducing the activation of inflammatory cells and the production of inflammatory mediators. This helps reduce inflammation and protects tissue from further damage. Conclusions. This study reports the activity of Rhein against A. pleuropneumoniae and its mechanism, and reveals the ability of Rhein to treat A. pleuropneumoniae infection in mice, laying the foundation for the development of new drugs for bacterial infections.

Funder

the National Natural Science Foundation of China

Publisher

Microbiology Society

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