Microalgae-Derived Microparticles Improve Immunomodulation via Combined Glycolysis and MAPK Activation

  • Jeon, Saetbyeol
  • Baek, Hwira
  • Kim, Seulgi
  • Kim, Youngseok
  • Kim, Junoh
  • ... Kim, Jin Woong
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초록

Natural polysaccharides possess potent immunostimulatory properties, but their poor solubility impedes efficiency of cellular delivery. This study focuses on extraction of microparticles (MPs) fromEuglena gracilis, a microalgae species characterized by abundant intracellular β-1,3-glucan and flexible cell membrane. We introduce anE. gracilis-derived MP (MPEG) system as a natural carrier for solubilized β-glucan. The MPEG system enhances β-glucan’s solubility and loading efficiency through sequential sonication and cell extrusion. In vitro studies reveal that MPEG utilizes multiple endocytosis pathways, including phagocytosis, clathrin-mediated, and lipid raft-mediated routes, for effective β-glucan delivery into cells. Upon cellular internalization, MPEG components trigger dual activation of the MAPK signaling pathway and glycolysis in macrophages, leading to enhanced production of pro-inflammatory cytokines and lactic acid, ultimately strengthening innate immune responses. This MPEG system offers a promising approach to harnessing the immunostimulatory properties of natural polysaccharides while overcoming their solubility limitations, opening new avenues for targeted cellular delivery in immunomodulation therapies. © 2025 American Chemical Society.

키워드

BETA-GLUCANMACROPHAGESRECOGNITIONDISRUPTION
제목
Microalgae-Derived Microparticles Improve Immunomodulation via Combined Glycolysis and MAPK Activation
저자
Jeon, SaetbyeolBaek, HwiraKim, SeulgiKim, YoungseokKim, JunohKim, Jin Woong
DOI
10.1021/acs.langmuir.4c05088
발행일
2025-03
유형
Article
저널명
Langmuir
41
13
페이지
8619 ~ 8626