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Wolbachia Promotes an Anti-Angiogenic Response Using an In Vitro Model of Vascular Endothelial Cells in Relation to
Manuel Collado-Cuadrado1,2, Claudia Alarcón-Torrecillas3,4, Iván Rodríguez-Escolar1,2
1Zoonotic Diseases and One Health Group, Faculty of Pharmacy, University of Salamanca, 37007 Salamanca, Spain.
Insights
Wolbachia bacteria, found in heartworm parasites, surprisingly inhibit new blood vessel formation. This suggests Wolbachia may not aid Dirofilaria immitis survival in the vascular endothelium.
Area of Science:
- Veterinary Parasitology
- Molecular Biology
- Cellular Biology
Background:
- Heartworm disease (caused by Dirofilaria immitis) is a zoonotic disease affecting dogs, cats, and humans.
- Wolbachia endosymbionts within D. immitis influence parasite development and host pathology.
- Previous research indicated parasite products promote angiogenesis for survival.
Purpose of the Study:
- To investigate the role of Wolbachia sp. in cellular processes and angiogenesis.
- To determine the effect of Wolbachia on the angiogenic pathway in human endothelial cells.
Main Methods:
- Utilized in vitro models with human endothelial cells.
- Stimulated cells with recombinant Wolbachia Surface Protein (rWSP).
- Assessed production of angiogenic factors (VEGFR-1/sFlt1, sEndoglin, VEGFR-2, mEndoglin) and cellular processes (proliferation, migration, pseudocapillary formation).
Main Results:
- rWSP stimulation increased anti-angiogenic factors (VEGFR-1/sFlt1, sEndoglin).
- rWSP did not affect pro-angiogenic factors (VEGFR-2, mEndoglin).
- rWSP inhibited pseudocapillary formation and did not stimulate cell proliferation or migration.
Conclusions:
- Wolbachia sp. stimulates the anti-angiogenic pathway.
- This suggests Wolbachia does not facilitate D. immitis survival within the vascular endothelium.
- Findings challenge previous assumptions about parasite-host interactions and angiogenesis.
Abstract:
Heartworm disease caused by Dirofilaria immitis is a vector-borne zoonotic disease responsible for the infection of mainly domestic dogs and cats, or these are those for which the most data are known. Humans are an accidental host where a benign, asymptomatic pulmonary nodule may originate. Dirofilaria immitis also harbours the endosymbiont bacteria of the genus Wolbachia, which play a role in moulting, embryogenesis, inflammatory pathology, and immune response. When Wolbachia sp. is released into the bloodstream, endothelial and pulmonary damage is exacerbated, further encouraging thrombus formation and pulmonary hypertension, facilitating congestive heart failure and death of the animal. Previous studies have shown that parasite excretory/secretory products are able to activate the pro-angiogenic pathway (formation of new vessels) to facilitate parasite survival. The aim of this study was to analyse the role of Wolbachia sp. and its relationship with the cellular processes and the angiogenic pathway in a model of human endothelial cells in vitro. The use of recombinant Wolbachia Surface Protein (rWSP) showed that its stimulation exerted an anti-angiogenic effect by detecting an increase in the production of VEGFR-1/sFlt1 and sEndoglin and did not affect the production of VEGFR-2 and mEndoglin (pro-angiogenic molecules). Furthermore, it did not stimulate cell proliferation or migration, although it did negatively stimulate the formation of pseudocapillaries, slowing down this process. These cellular processes are directly related to the angiogenic pathway so, with these results, we can conclude that Wolbachia sp. is related to the stimulation of the anti-angiogenic pathway, not facilitating the survival of D. immitis in vascular endothelium.
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