A Vismarra, M Fozzer, J W McCall, M Genchi, L Venco, R Morchón García, C Bazzocchi, C Genchi, L Kramer, C Bandi
{"title":"The history of Wolbachia and heartworm.","authors":"A Vismarra, M Fozzer, J W McCall, M Genchi, L Venco, R Morchón García, C Bazzocchi, C Genchi, L Kramer, C Bandi","doi":"10.1186/s13071-026-07397-y","DOIUrl":null,"url":null,"abstract":"<p><p>Wolbachia is the most widespread endosymbiont in animals, and its discovery in Dirofilaria immitis significantly advanced our understanding of heartworm disease (HWD). In 1995, Sironi and colleagues from the universities of Milan and Pavia, Italy, published a study titled \"Molecular evidence for a close relative of the arthropod endosymbiont Wolbachia in a filarial worm\" (Mol Biochem Parasitol. 74:223-7, 1995). In the 1970s, intracellular bacteria were observed in filarial nematodes by electron microscopy, but no one understood what they were or why they were there. There had been previous reports on the anti-filarial effects of tetracycline, but no connection with these bacteria had been made. Many years later, these bacteria were identified as belonging to the genus Wolbachia, marking a new chapter in filarial research. As soon as Wolbachia had been described in heartworms, there was a flurry of excitement in the scientific community. By 1999, Wolbachia had been described in a further nine species of animal and human filarial nematodes. Subsequent studies strongly suggested that Wolbachia are obligatory mutualist symbionts of D. immitis, and related research then focused on targeting Wolbachia in the treatment of HWD. Studies on the effects of doxycycline treatment in D. immitis-infected dogs reported that bacterial depletion in adult worms, elimination of microfilariae, and adult worm death were more effective when antibiotics were combined with macrocyclic lactones, and that use of this combination also avoided the deleterious post-adulticide effects of treatment with melarsomine. Dirofilaria immitis-infected dogs develop an immune response to Wolbachia, which likely contributes to the immunopathology of HWD. Insights into how D. immitis and Wolbachia interact were gained in 2012, when genome sequencing of these organisms was completed.</p>","PeriodicalId":19793,"journal":{"name":"Parasites & Vectors","volume":"19 1","pages":""},"PeriodicalIF":3.7000,"publicationDate":"2026-08-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC13491582/pdf/","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Parasites & Vectors","FirstCategoryId":"3","ListUrlMain":"https://doi.org/10.1186/s13071-026-07397-y","RegionNum":2,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"PARASITOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Wolbachia is the most widespread endosymbiont in animals, and its discovery in Dirofilaria immitis significantly advanced our understanding of heartworm disease (HWD). In 1995, Sironi and colleagues from the universities of Milan and Pavia, Italy, published a study titled "Molecular evidence for a close relative of the arthropod endosymbiont Wolbachia in a filarial worm" (Mol Biochem Parasitol. 74:223-7, 1995). In the 1970s, intracellular bacteria were observed in filarial nematodes by electron microscopy, but no one understood what they were or why they were there. There had been previous reports on the anti-filarial effects of tetracycline, but no connection with these bacteria had been made. Many years later, these bacteria were identified as belonging to the genus Wolbachia, marking a new chapter in filarial research. As soon as Wolbachia had been described in heartworms, there was a flurry of excitement in the scientific community. By 1999, Wolbachia had been described in a further nine species of animal and human filarial nematodes. Subsequent studies strongly suggested that Wolbachia are obligatory mutualist symbionts of D. immitis, and related research then focused on targeting Wolbachia in the treatment of HWD. Studies on the effects of doxycycline treatment in D. immitis-infected dogs reported that bacterial depletion in adult worms, elimination of microfilariae, and adult worm death were more effective when antibiotics were combined with macrocyclic lactones, and that use of this combination also avoided the deleterious post-adulticide effects of treatment with melarsomine. Dirofilaria immitis-infected dogs develop an immune response to Wolbachia, which likely contributes to the immunopathology of HWD. Insights into how D. immitis and Wolbachia interact were gained in 2012, when genome sequencing of these organisms was completed.
期刊介绍:
Parasites & Vectors is an open access, peer-reviewed online journal dealing with the biology of parasites, parasitic diseases, intermediate hosts, vectors and vector-borne pathogens. Manuscripts published in this journal will be available to all worldwide, with no barriers to access, immediately following acceptance. However, authors retain the copyright of their material and may use it, or distribute it, as they wish.
Manuscripts on all aspects of the basic and applied biology of parasites, intermediate hosts, vectors and vector-borne pathogens will be considered. In addition to the traditional and well-established areas of science in these fields, we also aim to provide a vehicle for publication of the rapidly developing resources and technology in parasite, intermediate host and vector genomics and their impacts on biological research. We are able to publish large datasets and extensive results, frequently associated with genomic and post-genomic technologies, which are not readily accommodated in traditional journals. Manuscripts addressing broader issues, for example economics, social sciences and global climate change in relation to parasites, vectors and disease control, are also welcomed.