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Chondroitin Sulfate Methacryloyl

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Catalog No. TCL-00386

Chondroitin Sulfate Methacryloyl (CSMA) is a methacryloyl-modified form of chondroitin sulfate known for its biocompatibility. It exhibits a higher degree of methacrylic substitution compared to HAMA (HY-158220), which is closely linked to customizable mechanical properties, swelling behavior, and enzymatic degradability. CSMA serves as a versatile biomaterial suitable for biomimetic hydrogel scaffolds and is an ideal hydrogel ink for 3D printing. Under the influence of photoinitiator LAP, it self-assembles into a fibrous hydrogel targeting bioactive adhesion sites, supporting tissue cell interaction and biodegradation. It is applicable in areas such as cell culture, biological 3D printing, and tissue engineering.

Chondroitin Sulfate Methacryloyl

Chondroitin Sulfate Methacryloyl

😃Good
Catalog No. TCL-00386
Chondroitin Sulfate Methacryloyl (CSMA) is a methacryloyl-modified form of chondroitin sulfate known for its biocompatibility. It exhibits a higher degree of methacrylic substitution compared to HAMA (HY-158220), which is closely linked to customizable mechanical properties, swelling behavior, and enzymatic degradability. CSMA serves as a versatile biomaterial suitable for biomimetic hydrogel scaffolds and is an ideal hydrogel ink for 3D printing. Under the influence of photoinitiator LAP, it self-assembles into a fibrous hydrogel targeting bioactive adhesion sites, supporting tissue cell interaction and biodegradation. It is applicable in areas such as cell culture, biological 3D printing, and tissue engineering.
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Chondroitin Sulfate Methacryloyl (CSMA) is a methacryloyl-modified form of chondroitin sulfate known for its biocompatibility. It exhibits a higher degree of methacrylic substitution compared to HAMA (HY-158220), which is closely linked to customizable mechanical properties, swelling behavior, and enzymatic degradability. CSMA serves as a versatile biomaterial suitable for biomimetic hydrogel scaffolds and is an ideal hydrogel ink for 3D printing. Under the influence of photoinitiator LAP, it self-assembles into a fibrous hydrogel targeting bioactive adhesion sites, supporting tissue cell interaction and biodegradation. It is applicable in areas such as cell culture, biological 3D printing, and tissue engineering.
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Please enter your animal experiment information in the following box and click Calculate to obtain the mother liquor preparation method and in vivo formula preparation method:
TargetMol | Animal experimentsFor example, your dosage is 10 mg/kg Each animal weighs 20 g, and the dosage volume is 100 μL . TargetMol | Animal experiments A total of 10 animals were administered, and the formula you used is 5% TargetMol | reagent DMSO+30% PEG300+5% Tween 80+60% Saline/PBS/ddH2O. So your working solution concentration is 2 mg/mL。
Mother liquor preparation method: 2 mg of drug dissolved in 50 μL DMSOTargetMol | reagent (mother liquor concentration of 40 mg/mL), if you need to configure a concentration that exceeds the solubility of the product, please contact us first.
Preparation method for in vivo formula: Take 50 μL DMSOTargetMol | reagent main solution, add 300 μLPEG300TargetMol | reagent mix well and clarify, then add 50 more μL Tween 80, mix well and clarify, then add 600 more μLSaline/PBS/ddH2OTargetMol | reagent mix well and clarify
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