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Leveraging integrative toxicogenomic approach towards development of stressor-centric adverse outcome pathway networks for plastic additives.
Sahoo, Ajaya Kumar; Chivukula, Nikhil; Madgaonkar, Shreyes Rajan; Ramesh, Kundhanathan; Marigoudar, Shambanagouda Rudragouda; Sharma, Krishna Venkatarama; Samal, Areejit.
Afiliação
  • Sahoo AK; Computational Biology Group, The Institute of Mathematical Sciences (IMSc), CIT Campus, Taramani, Chennai, 600113, India.
  • Chivukula N; Homi Bhabha National Institute (HBNI), Mumbai, 400094, India.
  • Madgaonkar SR; Computational Biology Group, The Institute of Mathematical Sciences (IMSc), CIT Campus, Taramani, Chennai, 600113, India.
  • Ramesh K; Homi Bhabha National Institute (HBNI), Mumbai, 400094, India.
  • Marigoudar SR; Computational Biology Group, The Institute of Mathematical Sciences (IMSc), CIT Campus, Taramani, Chennai, 600113, India.
  • Sharma KV; Homi Bhabha National Institute (HBNI), Mumbai, 400094, India.
  • Samal A; Computational Biology Group, The Institute of Mathematical Sciences (IMSc), CIT Campus, Taramani, Chennai, 600113, India.
Arch Toxicol ; 98(10): 3299-3321, 2024 Oct.
Article em En | MEDLINE | ID: mdl-39097536
ABSTRACT
Plastics are widespread pollutants found in atmospheric, terrestrial and aquatic ecosystems due to their extensive usage and environmental persistence. Plastic additives, that are intentionally added to achieve specific functionality in plastics, leach into the environment upon plastic degradation and pose considerable risk to ecological and human health. Limited knowledge concerning the presence of plastic additives throughout plastic life cycle has hindered their effective regulation, thereby posing risks to product safety. In this study, we leveraged the adverse outcome pathway (AOP) framework to understand the mechanisms underlying plastic additives-induced toxicities. We first identified an exhaustive list of 6470 plastic additives from chemicals documented in plastics. Next, we leveraged heterogenous toxicogenomics and biological endpoints data from five exposome-relevant resources, and identified associations between 1287 plastic additives and 322 complete and high quality AOPs within AOP-Wiki. Based on these plastic additive-AOP associations, we constructed a stressor-centric AOP network, wherein the stressors are categorized into ten priority use sectors and AOPs are linked to 27 disease categories. We visualized the plastic additives-AOP network for each of the 1287 plastic additives and made them available in a dedicated website https//cb.imsc.res.in/saopadditives/ . Finally, we showed the utility of the constructed plastic additives-AOP network by identifying highly relevant AOPs associated with benzo[a]pyrene (B[a]P), bisphenol A (BPA), and bis(2-ethylhexyl) phthalate (DEHP) and thereafter, explored the associated toxicity pathways in humans and aquatic species. Overall, the constructed plastic additives-AOP network will assist regulatory risk assessment of plastic additives, thereby contributing towards a toxic-free circular economy for plastics.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Plásticos / Toxicogenética / Rotas de Resultados Adversos Limite: Animals / Humans Idioma: En Revista: Arch Toxicol / Arch. toxicol / Archives of toxicology Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Índia País de publicação: Alemanha

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Plásticos / Toxicogenética / Rotas de Resultados Adversos Limite: Animals / Humans Idioma: En Revista: Arch Toxicol / Arch. toxicol / Archives of toxicology Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Índia País de publicação: Alemanha