Unlocking PM1-Bound Cytotoxicity: Where Do We Stand and What's Next?
Goswami, Gunjan, Bamola, Simran, Chopra, Amla, Lakhani, Anita (2024). Unlocking PM1-Bound Cytotoxicity: Where Do We Stand and What's Next?. https://doi.org/10.70130/cast.2024.7103
Goswami, Gunjan, Bamola, Simran, Chopra, Amla, Lakhani, Anita. "Unlocking PM1-Bound Cytotoxicity: Where Do We Stand and What's Next?.". DOI: 10.70130/cast.2024.7103.
Goswami, Gunjan, Bamola, Simran, Chopra, Amla, Lakhani, Anita. "Unlocking PM1-Bound Cytotoxicity: Where Do We Stand and What's Next?.". https://doi.org/10.70130/cast.2024.7103.
@article{goswami2024unlocking,
title = {Unlocking PM1-Bound Cytotoxicity: Where Do We Stand and What's Next?},
author = {Goswami, Gunjan and Bamola, Simran and Chopra, Amla and Lakhani, Anita},
year = 2024,
journal = {},
volume = 07,
number = 01,
pages = 29-44,
doi = 10.70130/cast.2024.7103,
url = oai:ojs2.pubs.rsyn.org:article/30,
language = en
}
TY - JOUR TI - Unlocking PM1-Bound Cytotoxicity: Where Do We Stand and What's Next? AU - Goswami, Gunjan AU - Bamola, Simran AU - Chopra, Amla AU - Lakhani, Anita PY - 2024 DA - 2024-06-04 VL - 07 IS - 01 SP - 29-44 DO - 10.70130/cast.2024.7103 UR - oai:ojs2.pubs.rsyn.org:article/30 AB - Particulate matter (PM) in air stands as a crucial environmental health concern, implicated in various diseases based on extensive epidemiological investigations. Associations between PM exposure and conditions such as acute respiratory infections, lung cancer, and chronic respiratory and cardiovascular diseases have been well-established. Despite incomplete To better understand how these biological processes work, in vitro studies have shown that PM1 causes harmful effects on cells, damage to DNA, and increased production of proinflammatory cytokines. Biomass burning and vehicular emissions contribute to PM emissions, which play pivotal roles in altering ambient environment. This encompasses its chemical, physical, and toxicological characteristics. This comprehensive chapter consolidates findings on the physiochemical features of PM1 particulates, with an aerodynamic diameter of ≤ 1 µm (PM1), that focus on impact on health and the environment. PM1 particulates have a cytotoxic activity that poses a threat to health. Furthermore, the review extensively explores the dynamics of cytotoxicity associated with PM1 in various environmental contexts at national and international levels. The amalgamation of insights provides a nuanced perspective on the intricacies of PM1-bound cytotoxicity, thereby enhancing our understanding of air quality challenges in both Indian and global contexts. To the best of our knowledge, this is the first review article on the cytotoxicity of PM1 particles. LA - en ER -
🤖 AI Key Takeaways & Research Insights
Automated AI Analysis💡 Core Finding
Particulate matter (PM) in air stands as a crucial environmental health concern, implicated in various diseases based on extensive epidemiological investigations.
🔬 Methodology
Associations between PM exposure and conditions such as acute respiratory infections, lung cancer, and chronic respiratory and cardiovascular diseases have been well-established.
🎯 Domain Impact
To the best of our knowledge, this is the first review article on the cytotoxicity of PM1 particles.
Abstract
Particulate matter (PM) in air stands as a crucial environmental health concern, implicated in various diseases based on extensive epidemiological investigations. Associations between PM exposure and conditions such as acute respiratory infections, lung cancer, and chronic respiratory and cardiovascular diseases have been well-established. Despite incomplete To better understand how these biological processes work, in vitro studies have shown that PM1 causes harmful effects on cells, damage to DNA, and increased production of proinflammatory cytokines. Biomass burning and vehicular emissions contribute to PM emissions, which play pivotal roles in altering ambient environment. This encompasses its chemical, physical, and toxicological characteristics. This comprehensive chapter consolidates findings on the physiochemical features of PM1 particulates, with an aerodynamic diameter of ≤ 1 µm (PM1), that focus on impact on health and the environment. PM1 particulates have a cytotoxic activity that poses a threat to health. Furthermore, the review extensively explores the dynamics of cytotoxicity associated with PM1 in various environmental contexts at national and international levels. The amalgamation of insights provides a nuanced perspective on the intricacies of PM1-bound cytotoxicity, thereby enhancing our understanding of air quality challenges in both Indian and global contexts. To the best of our knowledge, this is the first review article on the cytotoxicity of PM1 particles.
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