Ulubayram K, Nur Cakar A, Korkusuz P, Ertan C, Hasirci N
Department of Chemistry, Middle East Technical University, Ankara, Turkey.
Biomaterials. 2001 Jun;22(11):1345-56. doi: 10.1016/s0142-9612(00)00287-8.
In case of bulk loss of tissue or non-healing wounds such as burns, trauma, diabetic, decubitus and venous stasis ulcers, a proper wound dressing is needed to cover the wound area, protect the damaged tissue, and if possible to activate the cell proliferation and stimulate the healing process. In this study, synthesis of a novel polymeric bilayer wound dressing containing epidermal growth-factor (EGF) -loaded microspheres was aimed. For this purpose, a natural, nontoxic and biocompatible material, gelatin, was chosen as the underlying layer and various porous matrices in sponge form were prepared from gelatin by freeze-drying technique. As the external layer, elastomeric polyurethane membranes were used. Two different doses of EGF was added into the prepared gelatin sponges (1 and 15 microg/cm2) to activate cell proliferation. EGF addition was carried out either in free form or within microspheres to achieve prolonged release of EGF for higher efficiency. The prepared systems were tested in in vivo experiments on full-thickness skin defects created on rabbits. At certain intervals, wound areas were measured and tissues from wound areas were biopsied and processed for histological examinations. The wound areas decreased upon low-dose EGF application but the difference between the affects of free EGF and microsphere loaded EGF was not so distinct. Upon increasing the dose of EGF by a factor of 15, it was observed that controlled release of EGF from microspheres provided a higher degree of reduction in the wound areas. Histological investigations showed that the prepared dressings were biocompatible and did not cause any mononuclear cell infiltration or foreign body reaction. The structure of the newly formed dermis was almost the same as that of the normal skin.
在出现大面积组织缺损或伤口不愈合的情况,如烧伤、创伤、糖尿病性溃疡、褥疮和静脉淤滞性溃疡时,需要合适的伤口敷料来覆盖伤口区域,保护受损组织,并在可能的情况下激活细胞增殖,刺激愈合过程。本研究旨在合成一种新型的含有负载表皮生长因子(EGF)微球的聚合物双层伤口敷料。为此,选择了一种天然、无毒且具有生物相容性的材料——明胶作为底层,并通过冷冻干燥技术由明胶制备出各种海绵状的多孔基质。作为外层,使用了弹性聚氨酯膜。将两种不同剂量的EGF添加到制备好的明胶海绵中(1和15微克/平方厘米)以激活细胞增殖。EGF的添加以游离形式或微球形式进行,以实现EGF的长效释放从而提高效率。所制备的系统在兔身上制造的全层皮肤缺损的体内实验中进行了测试。在特定间隔测量伤口面积,并对伤口区域的组织进行活检并进行组织学检查。低剂量EGF应用后伤口面积减小,但游离EGF和负载微球的EGF的效果差异并不明显。当EGF剂量增加15倍时,观察到微球中EGF的控释使伤口面积有更高程度的减小。组织学研究表明,所制备的敷料具有生物相容性,不会引起任何单核细胞浸润或异物反应。新形成的真皮结构与正常皮肤几乎相同。