In silico soil degradation and ecotoxicity analysis of veterinary pharmaceuticals on terrestrial species: first report

Author:

Banjare Purusottam12,Singh Rekha1,Pandey Nilesh Kumar1,Matore Balaji Wamanrao1,Murmu Anjali1,Singh Jagadish1,Roy Partha Pratim1ORCID

Affiliation:

1. Department of Pharmacy, Guru Ghasidas Vishwavidyalaya (A Central University) , Bilaspur 495009, Chhattisgarh , India

2. Department of Pharmaceutical Chemistry, Apollo College of Pharmacy , Anjora, Durg 491001, Chhattisgarh , India

Abstract

Abstract With the aim of persistence property analysis and ecotoxicological impact of veterinary pharmaceuticals on different terrestrial species, different classes of veterinary pharmaceuticals (n = 37) with soil degradation property (DT50) were gathered and subjected to QSAR and q-RASAR model development. The models were developed from 2D descriptors under organization for economic cooperation and development guidelines with the application of multiple linear regressions along with genetic algorithm. All developed QSAR and q-RASAR were statistically significant (Internal = R2adj: 0.721–0.861, Q2LOO: 0.609–0.757, and external = Q2Fn = 0.597–0.933, MAEext = 0.174–0.260). Further, the leverage approach of applicability domain assured the model’s reliability. The veterinary pharmaceuticals with no experimental values were classified based on their persistence level. Further, the terrestrial toxicity analysis of persistent veterinary pharmaceuticals was done using toxicity prediction by computer assisted technology and in-house built quantitative structure toxicity relationship models to prioritize the toxic and persistent veterinary pharmaceuticals. This study will be helpful in estimation of persistence and toxicity of existing and upcoming veterinary pharmaceuticals.

Funder

Science and Engineering Research Board

Department of Science and Technology

Govt. of India, New Delhi

Publisher

Oxford University Press (OUP)

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