Synthesis, Biodegradability, and Biocompatibility of Lysine Diisocyanate–Glucose Polymers
- 1 October 2002
- journal article
- research article
- Published by Mary Ann Liebert Inc in Tissue Engineering
- Vol. 8 (5) , 771-785
- https://doi.org/10.1089/10763270260424132
Abstract
The success of a tissue-engineering application depends on the use of suitable biomaterials that degrade in a timely manner and induce the least immunogenicity in the host. With this purpose in mind, we have attempted to synthesize a novel nontoxic biodegradable lysine diisocyanate (LDI)- and glucose-based polymer via polymerization of highly purified LDI with glucose and its subsequent hydration to form a spongy matrix. The LDI-glucose polymer was degradable in aqueous solutions at 37, 22, and 4°C, and yielded lysine and glucose as breakdown products. The degradation products of the LDI-glucose polymer did not significantly affect the pH of the solution. The physical properties of the polymer were found to be adequate for supporting cell growth in vitro, as evidenced by the fact that rabbit bone marrow stromal cells (BMSCs) attached to the polymer matrix, remained viable on its surface, and formed multilayered confluent cultures with retention of their phenotype over a period of 2 to 4 weeks. These observations suggest that the LDI-glucose polymer and its degradation products were nontoxic in vitro. Further examination in vivo over 8 weeks revealed that subcutaneous implantation of hydrated matrix degraded in vivo three times faster than in vitro. The implanted polymer was not immunogenic and did not induce antibody responses in the host. Histological analysis of the implanted polymer showed that LDI-glucose polymer induced a minimal foreign body reaction, with formation of a capsule around the degrading polymer. The results suggest that biodegradable peptide-based polymers can be synthesized, and may potentially find their way into biomedical applications because of their biodegradability and biocompatibility.Keywords
This publication has 33 references indexed in Scilit:
- Pore structure analysis of swollen dextran-methacrylate hydrogels by SEM and mercury intrusion porosimetryJournal of Biomedical Materials Research, 2000
- Pregnancy induces complex changes in the pattern of mRNA expression in knee ligaments of the adolescent rabbitMatrix Biology, 1998
- Latex Allergy in Operating Room NursesAnnals of Allergy, Asthma & Immunology, 1998
- Biodegradation of a poly(ester)urea‐urethane by cholesterol esterase: Isolation and identification of principal biodegradation productsJournal of Biomedical Materials Research, 1997
- Mechanical Strain-Induced Proliferation of Osteoblastic Cells Parallels Increased TGF-β1 mRNABiochemical and Biophysical Research Communications, 1996
- In vitro biocompatibility of bioresorbable polymers: poly(L, DL-lactide) and poly(L-lactide-co-glycolide)Biomaterials, 1996
- Biocompatible Polyurethane-Based HydrogelJournal of Biomaterials Applications, 1994
- Laminated three-dimensional biodegradable foams for use in tissue engineeringBiomaterials, 1993
- Attaching human fibroblasts secrete a type I procollagen rich in 3-hydroxyprolineBiochemical and Biophysical Research Communications, 1979
- Direct estimation of lysine in corn meals by the ninhydrin color reactionJournal of Agricultural and Food Chemistry, 1975