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Apical-out airway organoids as a pathophysiological model to study macrophage-mediated epithelial responses to microplastics
- Choi, Seon Young;
- Kim, Chae Hwa;
- Hwang, Soyoung;
- Kim, Hyun Joo;
- Bang, Seunghyun;
- ... Lee, Jin Woo;
- ... Ryu, Seungwon;
- ... Son, Kuk Hui;
- 외 3명
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Respiratory exposure to airborne microplastics is increasingly implicated in airway inflammation, but humanrelevant in vitro systems that separate direct epithelial particle contact from immune-cell-mediated paracrine effects remain limited. Here, we generated human airway basal stem cells (hABSCs)-derived apical-out airway organoids (AOAOs) with outward-facing ciliated surfaces and used them to evaluate operationally sizefractionated, polydisperse polystyrene microplastic (PS-MP) fractions. PS-MPs were characterized by laser diffraction, SEM, FT-IR, Nile red labeling, endotoxin testing, and culture-media stability/protein-adsorption assays. AOAOs were exposed under two submerged configurations: direct application of PS-MPs to the organoid surface or indirect exposure to conditioned media from PS-MP-treated THP-1-derived macrophages. CCK-8, MTT, and LDH range-finding assays identified 1 and 100 & micro;g/mL as non-cytotoxic nominal submerged doses for macrophage-organoid experiments. Direct exposure of AOAOs to small, medium, or large PS-MP fractions did not induce marked TNF-alpha expression, mucin secretion, epithelial barrier disruption, or goblet cell hyperplasia. In contrast, the small PS-MP fraction showed the strongest macrophage association and induced extracellular IL-1 beta release; conditioned media from small PS-MP-exposed macrophages increased TNF-alpha expression and Muc5acpositive goblet cell populations in AOAOs. Selective caspase-1 activation in the small 100 & micro;g/mL condition, together with cleaved GSDMD immunoreactivity and LDC7559-sensitive IL-1 beta release, supported a caspase-1associated, GSDMD-sensitive component of IL-1 beta secretion, but did not establish definitive canonical inflammasome activation. This AOAO platform provides a submerged mechanistic proof-of-concept for dissecting macrophage-conditioned airway epithelial remodeling by PS-MPs, while not representing aerosol deposition or inhalation-equivalent dosimetry.
키워드
- 제목
- Apical-out airway organoids as a pathophysiological model to study macrophage-mediated epithelial responses to microplastics
- 저자
- Choi, Seon Young; Kim, Chae Hwa; Hwang, Soyoung; Kim, Hyun Joo; Bang, Seunghyun; Lee, Jin Woo; Lee, Da Hae; Ryu, Seungwon; Jung, Jooyeon; Kim, Tae Hee; Son, Kuk Hui
- 발행일
- 2026-06
- 유형
- Article
- 저널명
- MATERIALS TODAY BIO
- 권
- 38