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First identification of microplastics in human uterine fibroids and myometrium

Environmental Pollution 2024 29 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 65 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Chunlin Dong, Chunlin Dong, Hongwen Xu, Hongwen Xu, Hongwen Xu, Chunlin Dong, Hongwen Xu, Hongwen Xu, Hongwen Xu, Hongwen Xu, Hongwen Xu, Jinjin Yu, Hongwen Xu, Hongwen Xu, Chunlin Dong, Zhenyang Hu, Chunlin Dong, Hongwen Xu, Chunlin Dong, Chunlin Dong, Zhilong Yu, Chunlin Dong, Chunlin Dong, Hongwen Xu, Zhilong Yu, Zhilong Yu, Zhilong Yu, Yukihiro Ozaki, Weirong Yao Zhenyang Hu, Yukihiro Ozaki, Yunfei Xie, Weirong Yao Zhenyang Hu, Yunfei Xie, Yunfei Xie, Zhenyang Hu, Zhilong Yu, Zhilong Yu, Zhilong Yu, Zhilong Yu, Zhilong Yu, Yunfei Xie, Yunfei Xie, Yunfei Xie, Jinjin Yu, Zhenyang Hu, Zhenyang Hu, Weirong Yao Yukihiro Ozaki, Yukihiro Ozaki, Jinjin Yu, Yunfei Xie, Yunfei Xie, Yunfei Xie, Weirong Yao Yunfei Xie, Weirong Yao Yunfei Xie, Weirong Yao Ding Ma, Zhilong Yu, Yunfei Xie, Zhilong Yu, Jinjin Yu, Jinjin Yu, Weirong Yao Weirong Yao Yukihiro Ozaki, Ding Ma, Yunfei Xie, Zhilong Yu, Ding Ma, Xiaowei Qi, Yunfei Xie, Jinjin Yu, Yunfei Xie, Ding Ma, Jinjin Yu, Jinjin Yu, Yukihiro Ozaki, Ding Ma, Yunfei Xie, Yunfei Xie, Yunfei Xie, Yunfei Xie, Yunfei Xie, Yunfei Xie, Weirong Yao

Summary

For the first time, researchers detected microplastics inside human uterine fibroids and surrounding womb tissue, with fibroid tissue containing roughly twice as many plastic particles as healthy tissue. Patients who frequently consumed takeout meals and bottled water had higher microplastic levels, and larger fibroids were associated with more plastic contamination. These findings raise questions about whether microplastics could play a role in the growth of uterine fibroids.

Body Systems
Models

Microplastics (MPs) pollution has received widespread attention in recent years as the use of plastics continues to increase. However, currently no studies have reported the finding of MPs in human uterine fibroids (UFs) and myometrium tissues. In this study, UFs tissues (n = 48) and myometrium tissues (n = 40) from 48 patients and myometrium tissues (n = 8) from healthy population were collected. Following digestion of the samples by 10% KOH and 30% HO, MPs were analyzed qualitatively and quantitatively using Raman spectroscopy. The 16 UFs and myometrium tissue samples contained an average of 1.5 ± 1.17 MP particles per gram of tissue. Notably, the abundance of MPs in the UFs tissues (2.13 ± 1.17 particles per gram) was higher than in the myometrium tissues (0.88 ± 0.78 particles per gram). In the same cohort of individuals with UFs, the quantities of MPs detected in the affected UFs tissue (2.63 ± 1.77 particles per gram) exceeded those detected in healthy tissue (1.08 ± 0.93 particles per gram), particularly in elderly patients. A correlation was observed between elevated MP levels and frequent consumption of takeout meals and bottled water among patients, indicating that MP ingestion through food sources might have contributed to the increased abundance and variety of MPs within UFs. Furthermore, UFs increased in size with higher concentrations of MPs, which may have been related to elevated levels of MPs-induced hormones. This study provides new insights into the assessment of the relationship between exposure to MPs and human disease risk.

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