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Exposure to bisphenol A and fiber-type microplastics induce oxidative stress and cell damage in disk abalone Haliotis discus hannai: Bioaccumulation and toxicity.
Kim, Jin A; Kim, Min Ju; Choi, Ji Yong; Park, Young-Su; Kim, Jun-Hwan; Choi, Cheol Young.
Afiliação
  • Kim JA; Division of Marine BioScience, Korea Maritime and Ocean University, Busan, 49112, Republic of Korea.
  • Kim MJ; Division of Marine BioScience, Korea Maritime and Ocean University, Busan, 49112, Republic of Korea.
  • Choi JY; Subtropical Fisheries Research Institute, National Institute of Fisheries Science, Jeju, 63068, Republic of Korea.
  • Park YS; Department of Nursing, Catholic University of Pusan, Busan, 46252, Republic of Korea.
  • Kim JH; Department of Marine Life Science, Jeju National University, Jeju, 63243, Republic of Korea. Electronic address: junhwan1982@hanmail.net.
  • Choi CY; Division of Marine BioScience, Korea Maritime and Ocean University, Busan, 49112, Republic of Korea; Division of Marine BioScience, Korea Maritime and Ocean University, Busan, 49112, Republic of Korea. Electronic address: choic@kmou.ac.kr.
Fish Shellfish Immunol ; 144: 109277, 2024 Jan.
Article em En | MEDLINE | ID: mdl-38072138
ABSTRACT
Along with environmental pollution caused by rapid economic development and industrialization, plastic waste is emerging as a global concern in relation to marine ecosystems and human health. Among the microplastics, fiber-type microfibers (MF) and bisphenol A (BPA), which are widely used as plasticizers, do not decompose well in the ocean, and tend to accumulate in organisms, generating an increased oxidative stress response. This study investigated the abalones' antioxidant and cell death responses following exposure to the environmental pollutants MF and BPA. Levels of malondialdehyde (MDA) and DNA damage increased over time, demonstrating the degree of lipid peroxidation and DNA damage in abalones exposed to individual and combined environmental conditions of MF and BPA. Compared to the single MF and BPA exposure groups, the combined exposure group showed a higher expression of antioxidant enzymes. A similar pattern was seen in the expression of the apoptosis enzyme caspase-3. Both MF and BPA caused oxidative stress and antioxidant enzymes were expressed to alleviate it, but it is believed that cell damage occurred because the stress level exceeded the allowed range.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Limite: Animals / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Limite: Animals / Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article