Department of Odontology, Periodontology Section, Fukuoka Dental College, Sawara-ku, Fukuoka 814-0193, Japan.
J Biomed Mater Res B Appl Biomater. 2013 Jul;101(5):743-51. doi: 10.1002/jbm.b.32877. Epub 2013 Jan 29.
Two types of DNA/protamine complexes were prepared from protamine sulfate and 7000 base pair (bp) DNA or original DNA to investigate the effect of the molecular weight of DNA on zeta potential, cell viability, flowability, soft tissue response, and biodegradation rate. The 7000 bp DNA/protamine complex had a negative charge while the original DNA/protamine complex had a positive charge. The cell viabilities (90.4-106.8%) of these complexes were close to each other. The 7000 bp DNA/protamine complex became a softer dough than that of the original DNA/complex when both were kneaded with water. In vivo, the original DNA/protamine complex showed a milder tissue response. The original DNA/protamine complex almost disappeared 30 days after implantation. The 7000 bp DNA/complex disappeared approximately 2 weeks after implantation and areas where samples were implanted became empty. Thereafter, the empty space was gradually replaced by new soft tissues. The original DNA/protamine complex showed low intercalation and groove binding ratios of daunorubicin hydrochloride. Results indicate that high DNA condensation by cationic protamine protected the penetration of degradation enzymes into these complexes. It was found that a high molecular weight of DNA reduced the biodegradation rate and flowability. This study suggests that DNA/protamine complexes could be candidates for biomaterials that control biodegradation rates and flowability.
两种类型的 DNA/鱼精蛋白复合物是由鱼精蛋白硫酸盐和 7000 碱基对(bp)DNA 或原始 DNA 制备的,用于研究 DNA 分子量对 ζ 电位、细胞活力、流动性、软组织反应和生物降解率的影响。7000 bp DNA/鱼精蛋白复合物带负电荷,而原始 DNA/鱼精蛋白复合物带正电荷。这些复合物的细胞活力(90.4-106.8%)彼此接近。当这两种复合物都与水混合揉捏时,7000 bp DNA/鱼精蛋白复合物比原始 DNA/复合物变得更软。在体内,原始 DNA/鱼精蛋白复合物表现出更温和的组织反应。原始 DNA/鱼精蛋白复合物在植入后 30 天几乎消失。7000 bp DNA/复合物在植入后大约 2 周消失,植入样本的区域变得空无一物。此后,这个空洞逐渐被新的软组织所取代。原始 DNA/鱼精蛋白复合物对盐酸柔红霉素的插入和沟槽结合比率较低。结果表明,阳离子鱼精蛋白的高 DNA 凝结保护了降解酶进入这些复合物的渗透。发现 DNA 的高分子量降低了生物降解率和流动性。本研究表明,DNA/鱼精蛋白复合物可能是控制生物降解率和流动性的生物材料的候选物。