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Published on: October 29, 2015
Alternative pathway of complement activation has a beneficial role against Chandipura virus infection
Pooja Gupta1, Anuradha S Tripathy2
1Hepatitis Group, ICMR-National Institute of Virology, Pune, 130/1, Sus Road, Pashan, Pune, Maharashtra, 411021, India.
Insights
The human complement system, particularly the alternative pathway, neutralizes Chandipura virus (CHPV) in vitro. This involves C3 and C5, offering potential therapeutic targets for CHPV infection.
Area of Science:
- Immunology
- Virology
- Complement System
Background:
- The complement system is vital in immunity, with known roles in viral infections.
- Its specific involvement in Chandipura virus (CHPV) infection remains unstudied.
Purpose of the Study:
- To investigate the role of complement pathways in the in vitro neutralization of CHPV.
- To identify key complement factors involved in CHPV inactivation.
Main Methods:
- In vitro neutralization assays using normal human serum (NHS), heat-inactivated serum (HIS), and complement-deficient sera.
- Real-time PCR and flow cytometry-based limited dose assay (TC-LDA) to assess viral load and infectivity.
- EGTA/EDTA pretreatment to determine the complement pathway involved.
Main Results:
- NHS demonstrated complement-dependent CHPV neutralization, reduced viral load, and fewer infected cells compared to HIS.
- The alternative complement pathway, specifically C3 and C5, was crucial for CHPV neutralization.
- Neutralization was independent of the downstream complement factor C8.
Conclusions:
- The human complement system, primarily via the alternative pathway involving C3 and C5, effectively neutralizes CHPV in vitro.
- Understanding this mechanism could inform the development of novel therapeutics against Chandipura virus.
Abstract:
The complement system is a critical component of both innate and adaptive immune responses. It has both protective and pathogenic roles in viral infections. There are no studies regarding the role of complement system in Chandipura virus (CHPV) infection. The current study has investigated the role of complement pathways in the in vitro neutralization of CHPV in Vero E6 cells. Using normal human serum (NHS), heat-inactivated serum (HIS), human serum deficient of complement factor, respective reconstituted serum, assays like in vitro neutralization, real-time PCR, and flow cytometry-based tissue culture-based limited dose assay (TC-LDA) were carried out for assessing the activation of different complement pathways. NHS from 9/10 donors showed complement dependent neutralization, reduction in viral load and decrease in percentage of CHPV-positive cells compared to their HIS counterparts. EGTA or EDTA pretreatment experiments indicated that CHPV neutralization proceeds through the alternative pathway of the complement activation. Our data showed a strong dependence on C3 for the in vitro neutralization of CHPV. Disparity in CHPV neutralization levels between factor B-deficient and reconstituted sera could be attributed to amplification loop/"tick-over" mechanism. Assays using C3, C5, and C8 deficient sera indicated that complement-mediated CHPV neutralization and suppression of CHPV infectivity are primarily through C3 and C5, and not dependent on downstream complement factor C8. With no specific anti-viral treatment/vaccine against Chandipura, the current data, elucidating role of human complement system in the neutralization of CHPV, may help in designing effective therapeutics.
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