Bone marrow mesenchymal stem cell/degradable hydrogel composite material as well as preparation method and application thereof
A technology of bone marrow mesenchyme and composite material is applied in the field of bone marrow mesenchymal stem cell/degradable hydrogel composite material and its preparation, which can solve the problems of difficult matching of tissue regeneration rate and difficulty in providing tissue microenvironment responsiveness, etc. Achieve the effect of avoiding oxidative damage, protecting oxidative stress damage and eliminating reactive oxygen species
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Embodiment 1
[0049] In order to verify the existence form, mechanical strength and toxicity of the hydrogel of the present invention, this example prepares an active oxygen responsive degradable hydrogel material, which is the bone marrow mesenchymal stem cell / degradable hydrogel material provided by the present invention Composites without bone marrow mesenchymal stem cells. It includes a biocompatible hyaluronic acid component and an active oxygen-responsive hyperbranched polymer component, the hyaluronic acid component is obtained by modifying hyaluronic acid with a number average molecular weight of 100,000 through methacrylate, The active oxygen-responsive hyperbranched polymer is prepared by Michael addition reaction of polyethylene glycol diacrylate and ROS-responsive thiol diamine. Wherein, the molecular weight of polyethylene glycol diacrylate is 575. The number average molecular weight of the synthesized active oxygen responsive hyperbranched polymer HBPAK is 6000Da; the molecul...
Embodiment 2
[0060] This example prepares a bone marrow mesenchymal stem cell / degradable hydrogel composite material, which includes a biocompatible hyaluronic acid component, an active oxygen responsive degradable hyperbranched polymer component, and a cell adhesion peptide IKVAV, cell proliferation growth factors basic fibroblast growth factor bFGF and epidermal growth factor EGF, and bone marrow mesenchymal stem cells. Wherein, the hyaluronic acid component is obtained by modifying hyaluronic acid with a number average molecular weight of 120,000 through methacrylate, and the active oxygen-responsive hyperbranched polymer is made of polyethylene glycol diacrylate and ROS-responsive ketal thiol diamine prepared by Michael addition reaction. Wherein, the molecular weight of polyethylene glycol diacrylate is 575Da. The number-average molecular weight of the synthesized active oxygen-responsive degradable hyperbranched polymer HBPAK is 6000Da; the synthesized methacrylate-modified hyaluron...
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