Evidence of Microplastics in Bronchoalveolar Lavage Fluid among Never-Smokers: A Prospective Case Series

Lan Qiu(First Affiliated Hospital of Guangzhou Medical University), Wenfeng Lu(First Affiliated Hospital of Guangzhou Medical University), Changli Tu(Sun Yat-sen University), Xiaoliang Li, Han Zhang(Guangzhou Medical University), Shuguang Wang(Guangzhou Medical University), Meizhu Chen(Sun Yat-sen University), Xiaobin Zheng(Sun Yat-sen University), Zhenguo Wang(Sun Yat-sen University), Minmin Lin(Sun Yat-sen University), Yuemei Zhang(Sun Yat-sen University), Chenghui Zhong(Guangzhou Medical University), Saifeng Li(Guangzhou Medical University), Yuewei Liu(Sun Yat-sen University), Jing Liu(Sun Yat-sen University), Yun Zhou(First Affiliated Hospital of Guangzhou Medical University)
Environmental Science & Technology
January 31, 2023
Cited by 86

Abstract

Microplastics (MPs) are abundant in air, but evidence of their deposition in the respiratory tract is limited. We conducted a prospective case series to investigate the deposition of microplastics in bronchoalveolar lavage fluid (BALF) and determine the internal dose of MPs via inhalation. Eighteen never-smokers aged 32-74 years who underwent fiberoptic bronchoscopy with BALF were recruited from Zhuhai, China. Control samples were obtained by performing the same procedure using isotonic saline instead of BALF. Laser direct infrared spectroscopy combined with scanning electron microscopy detected the presence and characteristics of MPs and quantitatively analyzed the microplastic in BALF and control samples. Concentrations of total and specific MPs in BALF and control samples were compared using the Wilcox test. Thirteen types of MPs were observed in 18 BALF samples. Polyethylene (PE, 86.1%) was the most abundant in BALF, followed by poly(ethylene terephthalate) (PET, 7.5%) and polypropylene (PP, 1.9%). Compared with the control samples, BALF had significantly higher concentrations of PE (median [IQR] of BALF: 0.38 [8.05] N/g), PET (0.26 [0.54] N/g), polyurethane (0.16 [0.24] N/g), PP (0.16 [0.11] N/g), and total MPs (0.91 [6.58] N/g). The presence of MPs in BALF provides novel evidence that MPs penetrate deep into the respiratory tract.


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