Gopinath D, Ahmed M Rafiuddin, Gomathi K, Chitra K, Sehgal P K, Jayakumar R
Bioorganic and Neurochemistry Laboratory, Central Leather Research Institute, Adyar, 600 020, Chennai, India.
Biomaterials. 2004 May;25(10):1911-7. doi: 10.1016/s0142-9612(03)00625-2.
The wound healing process involves extensive oxidative stress to the system, which generally inhibits tissue remodeling. In the present study, an improvement in the quality of wound healing was attempted by slow delivery of antioxidants like curcumin from collagen, which also acts as a supportive matrix for the regenerative tissue. Curcumin incorporated collagen matrix (CICM) treated groups were compared with control and collagen treated rats. Biochemical parameters and histological analysis revealed that increased wound reduction, enhanced cell proliferation and efficient free radical scavenging in CICM group. The higher shrinkage temperature of CICM films suggests increased hydrothermal stability when compared to normal collagen films. Spectroscopic studies revealed that curcumin was bound to the collagen without affecting its triple helicity. Further we adopted the antioxidant assay using 2,2'-azobisisobutyronitrile to assess in vitro antioxidant activity of CICM. The antioxidant studies indicated that CICM quenches free radicals more efficiently. This study provides a rationale for the topical application of CICM as a feasible and productive approach to support dermal wound healing.
伤口愈合过程涉及系统中广泛的氧化应激,这通常会抑制组织重塑。在本研究中,尝试通过从胶原蛋白中缓慢释放姜黄素等抗氧化剂来改善伤口愈合质量,胶原蛋白同时也作为再生组织的支持基质。将姜黄素掺入胶原蛋白基质(CICM)处理组与对照组及胶原蛋白处理组大鼠进行比较。生化参数和组织学分析表明,CICM组伤口缩小增加、细胞增殖增强且自由基清除效率提高。与正常胶原蛋白膜相比,CICM膜更高的收缩温度表明其水热稳定性增强。光谱研究表明姜黄素与胶原蛋白结合而不影响其三螺旋结构。此外,我们采用2,2'-偶氮二异丁腈进行抗氧化测定以评估CICM的体外抗氧化活性。抗氧化研究表明CICM能更有效地淬灭自由基。本研究为局部应用CICM作为支持皮肤伤口愈合的可行且有效的方法提供了理论依据。