In Vivo Quantitative Measurement of Arthritis Activity Based on Hydrophobically Modified Glycol Chitosan in Inflammatory Arthritis: More Active than Passive Accumulation
- Authors
- Park, Kyeong Soon; Kang, Jin Hee; Sa, Keum Hee; Koo, Hee Beom; Cho, Hyun Jung; Nam, Eon Jeong; Youn, In Chan; Kim, Kwang Meyung; Kim, In San; Kwon, Ick Chan; Choi, Kui Won; Kang, Young Mo
- Issue Date
- 2012-09
- Publisher
- SAGE PUBLICATIONS INC
- Citation
- MOLECULAR IMAGING, v.11, no.5, pp.389 - 400
- Abstract
- We demonstrated that arthritis could be visualized noninvasively using hydrophobically modified glycol chitosan nanoparticles labeled with Cy5.5 (HGC-Cy5.5) and an optical imaging system. Activated macrophages expressing Mac-1 molecules effectively phagocytosed HGC-Cy5.5, which formed spherical nanoparticles under physiologic conditions. We estimated the applicability of HGC-Cy5.5 to quantitative analysis of arthritis development and progression. Near-infrared fluorescence images, captured after HGC-Cy5.5 injection in mice with collagen-induced arthritis, showed stronger fluorescence intensity in the active arthritis group than in the nonarthritis group. According to the progression of arthritis in both collagen-induced arthritis and collagen antibody-induced arthritis models, total photon counts (TPCs) increased in parallel with the clinical arthritis index. Quantitative analysis of fluorescence after treatment with methotrexate showed a significant decrease in TPC in a dose-dependent manner. Histologic evaluation confirmed that the mechanism underlying selective accumulation of HGC-Cy5.5 within synovitis tissues included enhanced phagocytosis of the probe by Mac-1-expressing macrophages as well as enhanced permeability through leaky vessels. These results suggest that optical imaging of arthritis using HGC-Cy5.5 can provide an objective measurement of disease activity and, at the same time, therapeutic responses in rheumatoid arthritis.
- Keywords
- SELF-ASSEMBLED NANOPARTICLES; RHEUMATOID-ARTHRITIS; SYNOVIAL TISSUE; ANGIOGENESIS; DISEASE; CANCER; CELLS; MICE; SELF-ASSEMBLED NANOPARTICLES; RHEUMATOID-ARTHRITIS; SYNOVIAL TISSUE; ANGIOGENESIS; DISEASE; CANCER; CELLS; MICE
- ISSN
- 1535-3508
- URI
- https://pubs.kist.re.kr/handle/201004/128943
- DOI
- 10.2310/7290.2011.00056
- Appears in Collections:
- KIST Article > 2012
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