Wang Yue, Liu Zhitong, Chen Qian, Yi Liqi, Xu Zihao, Cai Mufeng, Qin Jinhong, Zhang Yan, Du Guanhuan, Hong Jie, Guo Xiaokui, Liu Chang
Department of Immunology and Microbiology, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Research Institute of Intestinal Diseases, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai, China.
Front Microbiol. 2022 Nov 3;13:945315. doi: 10.3389/fmicb.2022.945315. eCollection 2022.
is a strictly anaerobic, Gram-negative bacterial species that is a member of the commensal flora in the oral cavity and gut. Recent studies suggested that the increase of abundance is associated with the development of various diseases, among which colorectal cancer is of the biggest concerns. Phage therapy is regarded as a potential approach to control the number of , which may contribute to the prevention and treatment of related diseases. In this study, we isolated five isolates of bacteriophage targeting . The morphological, biological, genomic and functional characteristics of five bacteriophages were investigated. Transmission electron microscopy revealed that JD-Fnp1 ~ JD-Fnp5 are all myoviruses. The size of the JD-Fnp1 ~ JD-Fnp5 genomes was 180,066 bp (JD-Fnp1), 41,329 bp (JD-Fnp2), 38,962 bp (JD-Fnp3), 180,231 bp (JD-Fnp4), and 41,353 bp (JD-Fnp5) respectively. The biological features including pH and heat stability, host range, growth characteristics of JD-Fnp1 ~ JD-Fnp5 displayed different patterns. Among them, JD-Fnp4 is considered to have the greatest clinical application value. The identification and characterization of JD-Fnp1 ~ JD-Fnp5 provides a basis for subsequent therapeutic strategy exploration of -related diseases.
是一种严格厌氧的革兰氏阴性细菌物种,是口腔和肠道共生菌群的成员。最近的研究表明,其丰度的增加与各种疾病的发展有关,其中结直肠癌是最受关注的。噬菌体疗法被认为是控制其数量的一种潜在方法,这可能有助于相关疾病的预防和治疗。在本研究中,我们分离出了五种靶向该细菌的噬菌体分离株。对这五种噬菌体的形态、生物学、基因组和功能特性进行了研究。透射电子显微镜显示,JD-Fnp1至JD-Fnp5均为肌病毒。JD-Fnp1至JD-Fnp5基因组大小分别为180,066 bp(JD-Fnp1)、41,329 bp(JD-Fnp2)、38,962 bp(JD-Fnp3)、180,231 bp(JD-Fnp4)和41,353 bp(JD-Fnp5)。JD-Fnp1至JD-Fnp5的生物学特性包括pH和热稳定性、宿主范围、生长特性呈现出不同的模式。其中,JD-Fnp4被认为具有最大的临床应用价值。JD-Fnp1至JD-Fnp5的鉴定和特性分析为后续相关疾病治疗策略的探索提供了依据。