4.5 Article

Inhibition of herpes simplex virus-1 infection by MBZM-N-IBT: in silico and in vitro studies

Journal

VIROLOGY JOURNAL
Volume 18, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s12985-021-01581-5

Keywords

Herpes simplex virus-1; MBZM-N-IBT; ICP8; gC; UL9

Categories

Funding

  1. Department of Biotechnology, Government of India [BT/PR15750/MED/29/1015/2016]
  2. Institute of Life Sciences core fund by Department of Biotechnology, Ministry of Science and Technology, Govt. of India
  3. Department of Biotechnology, Ministry of Science and Technology, Govt. of India
  4. School of Pharmaceutical Sciences, Siksha O Anusandhan Deemed to be University, Bhubaneswar.
  5. Council of Scientific and Industrial Research, Ministry of Science and Technology, Govt. of India

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This study evaluated the anti-viral activity of MBZM-N-IBT against HSV-1, and molecular docking along with in vitro experiments confirmed its inhibitory potential against HSV-1. The results suggest that MBZM-N-IBT can inhibit HSV-1 infection in both early and late stages.
Introduction The emergence of drug resistance and cross-resistance to existing drugs has warranted the development of new antivirals for Herpes simplex viruses (HSV). Hence, we have designed this study to evaluate the anti-viral activity of 1-[(2-methyl benzimidazole-1-yl) methyl]-2-oxo-indolin-3-ylidene] amino] thiourea (MBZM-N-IBT), against HSV-1. Method Molecular docking was performed to assess the affinity of MBZM-N-IBT for HSV-1 targets. This was validated by plaque assay, estimation of RNA and protein levels as well as time of addition experiments in vitro. Result Molecular docking analysis suggested the inhibitory capacity of MBZM-N-IBT against HSV-1. This was supported by the abrogation of the HSV-1 infectious viral particle formation with the IC50 value of 3.619 mu M. Viral mRNA levels were also reduced by 72% and 84% for UL9 and gC respectively. MBZM-N-IBT also reduced the protein synthesis for gC and ICP8 significantly. While mRNA of ICP8 was not significantly affected, its protein synthesis was reduced by 47%. The time of addition experiment revealed the capacity of MBZM-N-IBT to inhibit HSV-1 at early as well as late stages of infection in the Vero cells. Similar effect of MBZM-N-IBT was also noticed in the Raw 264.7 and BHK 21 cells after HSV-1 infection. Supported by the in silico data, this can be attributed to possible interference with multiple HSV targets including the ICP8, ICP27, UL42, UL25, UL15 and gB proteins. Conclusion These results along with the lack of acute oral toxicity and significant anti-inflammatory effects suggest its suitability for further evaluation as a non-nucleoside inhibitor of HSV.

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