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Melittin-loaded Iron Oxide Nanoparticles Prevent Intracranial Arterial Dolichoectasia Development through Inhibition of Macrophage-mediated Inflammation
- Vu, Huy Duc;
- Huynh, Phuong Tu;
- Ryu, Junghwa;
- Kang, Ung Rae;
- Youn, Sung Won;
- ... Lee, Hui Joong;
- ... Lee, Jongmin;
- 외 6명
WEB OF SCIENCE
17SCOPUS
20초록
Rationale: In intracranial arterial dolichoectasia (IADE) development, the feedback loop between inflammatory cytokines and macrophages involves TNF-alpha and NF-KB signaling pathways and leads to subsequent MMP-9 activation and extracellular matrix (ECM) degeneration. In this proof-of-concept study, melittin-loaded L-arginine-coated iron oxide nanoparticle (MeLioN) was proposed as the protective measure of IADE formation for this macrophage-mediated inflammation and ECM degeneration. Methods: IADE was created in 8-week-old C57BL/6J male mice by inducing hypertension and elastase injection into a basal cistern. Melittin was loaded on the surface of ION as a core-shell structure (hydrodynamic size, 202.4 nm; polydispersity index, 0.158). Treatment of MeLioN (2.5 mg/kg, five doses) started after the IADE induction, and the brain was harvested in the third week. In the healthy control, disease control, and MeLioN-treated group, the morphologic changes of the cerebral arterial wall were measured by diameter, thickness, and ECM composition. The expression level of MMP-9, CD68, MCP-1, TNF-alpha, and NF-kappa B was assessed from immunohistochemistry, polymerase chain reaction, and Western blot assay. Results: MeLioN prevented morphologic changes of cerebral arterial wall related to IADE formation by restoring ECM alterations and suppressing MMP-9 expression. MeLioN inhibited MCP-1 expression and reduced CD68-positive macrophage recruitments into cerebral arterial walls. MeLioN blocked TNF-alpha activation and NF-kappa B signaling pathway. In the Sylvian cistern, co-localization was found between the CD68-positive macrophage infiltrations and the MeLioN distributions detected on Prussian Blue and T2* gradient-echo MRI, suggesting the role of macrophage harboring MeLioN. Conclusions: The macrophage infiltration into the arterial wall plays a critical role in the MMP-9 secretion. MeLioN, designed for ION-mediated melittin delivery, effectively prevents IADE formation by suppressing macrophage-mediated inflammations and MMP activity. MeLioN can be a promising strategy preventing IADE development in high-risk populations.
키워드
- 제목
- Melittin-loaded Iron Oxide Nanoparticles Prevent Intracranial Arterial Dolichoectasia Development through Inhibition of Macrophage-mediated Inflammation
- 저자
- Vu, Huy Duc; Huynh, Phuong Tu; Ryu, Junghwa; Kang, Ung Rae; Youn, Sung Won; Kim, Hongtae; Ahn, Hyun Jin; Park, Kwankyu; Hwang, Soon-Kyung; Chang, Young-Chae; Lee, Yong Jig; Lee, Hui Joong; Lee, Jongmin
- 발행일
- 2021
- 유형
- Article
- 권
- 17
- 호
- 14
- 페이지
- 3818 ~ 3836
- 언어
- ENG
- 출판사
- IVYSPRING INT PUBL
- 발행국가
- 오스트레일리아
- 분량
- 19 페이지
- ISSN
- P 1449-2288