Therapeutic Efficacy of Anti-Bestrophin Antibodies against Experimental Filariasis: Immunological, Immune-Informatics and Immune Simulation Investigations

Author:

Das Nabarun ChandraORCID,Ray Anindya SundarORCID,Bayry JagadeeshORCID,Mukherjeee Suprabhat

Abstract

Lymphatic filariasis (LF) is a debilitating parasitic disease caused by filarial parasites and it is prevalent across the underprivileged population throughout the globe. The inadequate efficacy of the existing treatment options has provoked the conception of alternative strategies, among which immunotherapy is steadily emerging as a promising option. Herein, we demonstrate the efficacy of an antibody-based immunotherapeutic approach in an experimental model of filariasis, i.e., Wistar rat infected with Setaria cervi (a model filarial parasite). The polyclonal antibodies were raised against filarial surface antigen bestrophin protein (FSAg) in mice using the purified Wuchereria bancrofti FSAg. The adoptive transfer of anti-FSAg antibody-containing serum resulted in the significant reduction of parasite burden in filaria-infected rats. Intriguingly, anti-FSAg sera-treated animals also displayed a reduction in the level of proinflammatory cytokines as compared to the infected but untreated group. Furthermore, our in silico immunoinformatics data revealed eight B-cell epitopes and several T-cell epitopes in FSAg and these epitopes were linked to form a refined antigen in silico. The immune simulation suggested IgM and IgG1 as the predominant immunoglobulins induced in response to FSAg. Taken together, our experimental and simulation data collectively indicated a therapeutic potential of anti-FSAg sera against LF.

Publisher

MDPI AG

Subject

Drug Discovery,Immunology,Immunology and Allergy

Reference31 articles.

1. Molecular evidence on the occurrence of co-infection with Pichia guilliermondii and Wuchereria bancrofti in two filarial endemic districts of India

2. Lymphatic Filariasishttps://www.who.int/news-room/fact-sheets/detail/lymphatic-filariasis

3. Neglected Tropical Diseases: Impact of COVID-19 and WHO’s Responsehttps://www.who.int/publications/i/item/who-wer9539-461-468

4. Quinolone-fused cyclic sulfonamide as a novel benign antifilarial agent

5. Clinical and Pathological Aspects of Filarial Lymphedema and Its Management

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