Journal of Qufu Normal University, Volume. 51, Issue 3, 91(2025)
Improved solubilization of Kartogenin in natural polysaccharide hydrogel through polymer micelles
[1] [1] FRANKE M, MANCINO C, TARABALLI F. Reasons for the sex bias in osteoarthritis research:A review of preclinical studies [J]. Int J Mol Sci, 2023, 24(12):10386.
[2] [2] HANNON C P, GOODMAN S M, AUSTIN M S, et al. 2023 American college of rheumatology and American association of hip and knee surgeons clinical practice guideline for the optimal timing of elective hip or knee arthroplasty for patients with symptomatic moderate-to-severe osteoarthritis or advanced symptomatic osteonecrosis with secondary arthritis for whom nonoperative therapy is ineffective[J]. J Arthroplast, 2023, 38(11):2193-2201.
[3] [3] JOHNSON K, ZHU S, TREMBLAY M S, et al. A stem cell-based approach to cartilage repair[J]. Science, 2012, 336(6082):717-721.
[4] [4] EL SAYED M M. Production of polymer hydrogel composites and their applications [J]. J Polym Environ, 2023, 31(7):2855-2879.
[5] [5] GOSECKA M, GOSECKI M, JAWORSKA-KRYCH D. Hydrophobized hydrogels:construction strategies, properties, and biomedical applications [J]. Adv Funct Mater, 2023, 33(25):2212302.
[6] [6] GAO N N, L S Y, GAO C M, et al. Injectable shell-crosslinked F127 micelle/hydrogel composites with pH and redox sensitivity for combined release of anticancer drugs[J]. Chem Eng J, 2016, 287:20-29.
[7] [7] WANG T, NAREDLA R R, THOMPSON S K, et al. The pentadehydro-diels-alder reaction[J]. Nature, 2016, 532(7600):484-488.
[8] [8] LIN T S, HSIEH C H, KUO C, et al. Sulfation pattern of chondroitin sulfate in human osteoarthritis cartilages reveals a lower level of chondroitin-4-sulfate [J]. Carbohydr Polym, 2020, 229:115496.
[9] [9] SARAVANAN V, DAVOODBASHA M, RAJESH A, et al. Extraction and characterization of Chitosan from Shell of Borassus flabellifer and their antibacterial and antioxidant applications[J]. Int J Biol Macromol, 2023, 253:126592.
[10] [10] PAWARIYA V, DE S, DUTTA J. Chitosan-based Schiff bases:Promising materials for biomedical and industrial applications [J]. Carbohydr Polym, 2023, 323:121395.
[11] [11] YU H, XIAO C. Synthesis and properties of novel hydrogels from oxidized konjac glucomannan crosslinked gelatin for in vitro drug delivery [J]. Carbohydr Polym, 2008, 72(3):479-489.
[12] [12] MASSARO M, BUSCEMI G, ARISTA L, et al. Multifunctional carrier based on halloysite/laponite hybrid hydrogel for kartogenin delivery[J]. ACS Med Chem Lett, 2018, 10(4):419-424.
[13] [13] PAL A, VERNON B L, NIKKHAH M. Therapeutic neovascularization promoted by injectable hydrogels[J]. Bioact Mater, 2018, 3(4):389-400.
[14] [14] ZHAO F, FAN S, GHATE D, et al. A hydrogel ionic circuit based high-intensity iontophoresis device for intraocular macromolecule and nanoparticle delivery[J]. Adv Mater, 2022, 34(5):2107315.
[15] [15] BADENS C, ATWELL S, HORNUNG A, et al. Towards mechanical clinical markers in sickle cell disease:Dynamics of red blood cells in low shear flow[J]. Blood, 2018, 132:4914.
Get Citation
Copy Citation Text
BAI Xiao, CHAI Juan, YIN Hang, LYU Chunyan, LIU Zhe. Improved solubilization of Kartogenin in natural polysaccharide hydrogel through polymer micelles[J]. Journal of Qufu Normal University, 2025, 51(3): 91
Received: Nov. 29, 2023
Accepted: Aug. 25, 2025
Published Online: Aug. 25, 2025
The Author Email: BAI Xiao (baixiao1989@126.com)