Preparation method of gel scaffold for repairing articular cartilage damage
A technology for cartilage damage and joint repair, applied in medical science, prosthesis, etc., can solve the problems of growth factor immunogenicity that cannot be used in vivo, safety tumorigenicity of gene transfection technology, and unfavorable differentiation of mesenchymal stem cells. , to achieve the effect of being beneficial to clinical application, beneficial to the repair of cartilage damage, and shortening of light intensity and light time.
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Embodiment 1
[0071] This embodiment is a preparation method of a gel scaffold for repairing articular cartilage damage, which specifically includes the following steps:
[0072] (1) Modification of sodium hyaluronate;
[0073] (2) Dissolve KGN PLGA nanoparticles in step (1) modified sodium hyaluronate at a concentration of 10um / L, then add photoinitiator Irgacure 2595 to obtain sustained-release small molecule compound-sodium hyaluronate gel In the composite system, the amount of photoinitiator added is 1 / 9 of the small molecule compound by weight ratio;
[0074] (3) Inject / fill the sustained-release small molecule compound-sodium hyaluronate gel complex system into the joint cartilage damage to be repaired and irradiated by a UV point light source, 20μW / cm 2 The UV point light source is irradiated for 20S to obtain a gel scaffold for repairing articular cartilage damage.
[0075] The preparation method of the KGN PLGA nanoparticles includes the following steps:
[0076] (1) Dissolve 45 mg of PLGA ...
Embodiment 2
[0081] This embodiment is a preparation method of a gel scaffold for repairing articular cartilage damage, which specifically includes the following steps:
[0082] (1) Modification of sodium hyaluronate;
[0083] (2) Dissolve KGN PLGA nanoparticles in step (1) modified sodium hyaluronate at a concentration of 2um / L, and then add photoinitiator Irgacure 2595 to obtain a sustained-release small molecule compound-sodium hyaluronate gel In the composite system, the amount of photoinitiator added is 1 / 10 of the small molecule compound by weight ratio;
[0084] (3) Injecting / filling the sustained-release small molecule compound-sodium hyaluronate gel complex system into the joint cartilage damage to be repaired and irradiated by a UV point light source, 10μW / cm 2 The UV point light source is irradiated for 40S to obtain a gel scaffold for repairing articular cartilage damage.
[0085] The preparation method of the KGN PLGA nanoparticles includes the following steps:
[0086] (1) Dissolve PL...
Embodiment 3
[0091] This embodiment is a preparation method of a gel scaffold for repairing articular cartilage damage, which specifically includes the following steps:
[0092] (1) Modification of sodium hyaluronate;
[0093] (2) Dissolve KGN PLGA nanoparticles in step (1) modified sodium hyaluronate at a concentration of 60um / L, and then add photoinitiator Irgacure 2595 to obtain a sustained-release small molecule compound-sodium hyaluronate gel For the composite system, according to the weight ratio, the amount of photoinitiator added is 1 / 8 of the small molecule compound;
[0094] (3) Injecting / filling the sustained-release small molecule compound-sodium hyaluronate gel complex system into the joint cartilage damage to be repaired and irradiated by a UV point light source, 6μW / cm 2 The UV point light source is irradiated for 1 min to obtain a gel scaffold for repairing articular cartilage damage.
[0095] The preparation method of the KGN PLGA nanoparticles includes the following steps:
[0096...
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