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New from #BelTox: A behind-the-scenes look at Umicore’s recycling plant! 🚌🧪

📍 Umicore, Hoboken
🗓️ 5 March, 13:00
✅ Bus tour, #toxicological insights & networking
👥 Limited to 50 spots
⏳ Deadline: 19 Feb

Sign up here: beltox.be/beltox-netwo...

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Toxicological bioaccumulation from plastic Toxicological bioaccumulation from plastic is a phenomenon through which toxic persistent organic pollutants, such as...

#Toxicological bioaccumulation from #plastic ridersbike.net/toxicologica...

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Environmental and Toxicological Effects of Microplastics on Aquatic Ecosystems Plastic pollution is one of the most significant environmental challenges facing the world today. The massive amount of plastic waste generated by human activities is causing severe damage to ecosyst...

#Environmental and #Toxicological Effects of #Microplastics on #Aquatic Ecosystems

onlinelibrary.wiley.com/doi/10.1002/...

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Exploring toxicological pathways of microplastics and nanoplastics: Insights from animal and cellular models Microplastics (MPs) and nanoplastics (NPs) represent an emerging issue for human and animal health. This review critically examines in vitro and in vi…

Exploring #toxicological pathways of #microplastics and nanoplastics: Insights from animal and cellular models

www.sciencedirect.com/science/arti...

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Breast Cancer Month: Neonicotinoid Insecticides and Breast Cancer Risk (Triple Negative Breast Cancer) - Beyond Pesticides Daily News Blog (Beyond Pesticides, October 27, 2022) A study published in Environment International adds to the growing body of research evaluating the association between neonicotinoid insecticides (neonics/NIs) and breast cancer. Past studies suggest neonics act as endocrine disruptors, affecting the development and regulation of estrogen hormones that promote breast cancer. However, this study is one of the few to evaluate the toxicological and molecular mechanisms involved in initiating breast cancer events. According to the Centers for Disease Control and Prevention (CDC), breast cancer is a disease that causes breast cells to grow out of control, with the type of breast cancer depending on the cells themselves. Most common forms of breast cancer have receptors on the cell surface that can increase cancer growth when activated by estrogen, progesterone, or too much of the protein called HER2. One in ten women will receive a breast cancer diagnosis, and genetics can only account for five to ten percent of cases. When a cancer cell lacks receptors for these molecules, G protein-coupled estrogen receptors (GPERs) are an essential biological target of estrogen and plays a role in hormone-dependent cancer development. GPERs regulate estrogen through non-genetic cellular pathways, forgoing attachment to standard molecular receptors, leading to triple-negative breast cancer (TNBC). Although past […]

A study in #env_int_journal adds to the growing body of research on the association between #neonicotinoid #insecticides & #breastcancer. It evaluates the #toxicological and molecular mechanisms that initiate breast #cancer events. #neonics #pesticides

beyondpesticides.org/dailynewsblog/…

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