Preclinical toxicity of innovative molecules: In vitro, in vivo and metabolism prediction

D R Tonholo1, V G Maltarollo2, T Kronenberger3

  • 1Toxicology In Vitro Laboratory, Department of Clinical and Toxicological Analysis, School of Pharmacy - Federal University of Minas Gerais, Av. Antônio Carlos, 6627, Room 4138, Pampulha, BR 31270-901, Belo Horizonte, Brazil.

Insights

Predicting drug toxicity using in vitro assays and metabolism studies can reduce animal use. RN104 showed low cytotoxicity, with in silico analysis suggesting rapid metabolite elimination and lower in vivo toxicity.

Area of Science:

  • Pharmacology
  • Toxicology
  • Drug Discovery

Background:

  • Animal models have poor predictivity, increasing drug candidate failure rates.
  • In vitro assays and metabolism prediction can improve preclinical and clinical toxicity predictions, reducing animal use.

Purpose of the Study:

  • To evaluate the safety of four synthesized biologically active molecules (RN104, RI78, ICH, PCH).
  • To assess the predictive value of in vitro assays and in silico metabolism studies for in vivo toxicity.

Main Methods:

  • MTT cytotoxicity assays against five cell lines (A549, H9C2, HepG2, LLC-PK1, NEURO-2).
  • Neutral Red (NR) uptake assay (OECD-129) and acute toxicity testing (OECD-423).
  • Ligand-based and structure-based in silico metabolism prediction.

Main Results:

  • RN104 exhibited the lowest cytotoxicity in vitro.
  • In vivo acute toxicity studies showed no adverse effects at 300 mg/kg, with one fatality at 2,000 mg/kg.
  • In silico metabolism prediction suggested rapid elimination of potential metabolites, correlating with observed low toxicity.

Conclusions:

  • The Neutral Red assay showed limitations in predicting initial doses for acute toxicity studies.
  • In silico metabolism prediction offers insights into observed in vivo toxicity.
  • Combining theoretical and experimental approaches is crucial for understanding novel molecule toxicity.

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