Polylactic acid, glycolic acid copolymer, crgd, polypeptide, PLGA cRGD

Mondo Science Updated on 2024-02-01

Product name: Polylactic acid-glycolic acid copolymer-CRGD polypeptide.

Product Name: PLGA-CRGD

1. Product introduction.

Polylactic acid-glycolic acid copolymer-CRGD polypeptide is a new type of biomaterial, which is composed of polylactic acid-glycolic acid copolymer and CRGD polypeptide. This material has good biocompatibility and biological activity, which can promote cell adhesion and proliferation, and provides a new scaffold material for tissue engineering and regenerative medicine.

Second, product features.

1.Good biocompatibility: Polylactic acid-glycolic acid copolymer-CRGD polypeptide has good biocompatibility in the human body and will not cause immune rejection.

2.Promote cell adhesion and proliferation: CRGD peptides can bind to integrin receptors on cell membranes to promote cell adhesion and proliferation.

3.Degradability: Polylactic acid-glycolic acid copolymer can be gradually degraded in the human body and eventually metabolized into carbon dioxide and water.

4.Excellent mechanical properties: Polylactic acid-glycolic acid copolymer-CRGD peptide has good mechanical properties and can withstand the stress of tissue growth.

Third, the field of application.

Polylactic acid-glycolic acid copolymer-CRGD polypeptide has a wide range of application prospects in the field of tissue engineering and regenerative medicine, and can be used for the repair and reconstruction of artificial joints, bone tissues, tendons, ligaments, blood vessels and other tissues.

Fourth, how to use.

1.The polylactic acid-glycolic acid copolymer-CRGD polypeptide is dissolved in an appropriate amount of solvent and prepared into scaffolds or diaphragms of different shapes and sizes as needed.

2.A scaffold or diaphragm is implanted into the human body to promote cell adhesion and proliferation in an appropriate physiological environment.

3.In the application of tissue engineering and regenerative medicine, appropriate bioactive substances such as cells and growth factors can be added as needed.

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Edited by Qi Yuehao, January 9, 2024.

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