Wathoni Nasrul, Rusdiana Taofik, Hasanah Aliya Nur, Pratama Arvenda Rezky, Okajima Maiko, Kaneko Tatsuo, Mohammed Ahmed Fouad Abdelwahab, Putera Bayu Winata, Arima Hidetoshi
Department of Pharmaceutics, Faculty of Pharmacy, Universitas Padjadjaran, Sumedang, Indonesia.
Pharmaceutical Analysis and Medicinal Chemistry, Faculty of Pharmacy, Universitas Padjadjaran, Sumedang, Indonesia.
J Adv Pharm Technol Res. 2020 Apr-Jun;11(2):74-80. doi: 10.4103/japtr.JAPTR_147_19. Epub 2020 Apr 22.
Epidermal growth factor (EGF) accelerates epidermal regeneration, and it is widely studied as a wound-healing agent. However, the special carrier for the topical administration of EGF is urgently needed to deliver EGF on the wound site. In a preceding study, sacran hydrogel film (Sac-HF) showed a possible use as a dressing material for wound healing, as well as a good capability as a drug carrier. In the current study, we prepared Sac-HF containing EGF (Sac/EGF-HF) and then characterized their physicochemical properties, including thickness, swelling ratio, degradability, tensile strength, and morphology. In addition, we have also conducted thermal and crystallography studies using differential scanning calorimetry (DSC) and X-ray diffraction, respectively. Furthermore, we investigated the influence of Sac/EGF-HF on cell migration using a fibroblast cell line. Morphology study confirmed that the casting method used for the film preparation resulted in a homogeneous film of Sac/EGF-HF. Furthermore, EGF significantly increased the thickness, tensile strength, and degradability of Sac/EGF-HF compared to Sac-HF. Sac/EGF-HF had a lower swelling ability compared to Sac-HF; this result corroborated the tensile strength result. Interestingly, X-ray diffraction and DSC results showed that Sac/EGF-HF had an amorphous shape. The studies revealed that Sac/EGF-HF induced the fibroblast migration activity. These results conclude that Sac/EGF-HF has the potential properties of HF for biomedical applications.
表皮生长因子(EGF)可加速表皮再生,作为一种伤口愈合剂,它得到了广泛研究。然而,迫切需要一种特殊载体用于EGF的局部给药,以便将EGF递送至伤口部位。在前一项研究中,硫酸软骨素水凝胶膜(Sac-HF)显示出有望用作伤口愈合的敷料材料,并且作为药物载体也具有良好的性能。在本研究中,我们制备了含EGF的Sac-HF(Sac/EGF-HF),然后对其理化性质进行了表征,包括厚度、溶胀率、降解性、拉伸强度和形态。此外,我们还分别使用差示扫描量热法(DSC)和X射线衍射进行了热学和晶体学研究。此外,我们使用成纤维细胞系研究了Sac/EGF-HF对细胞迁移的影响。形态学研究证实,用于制备膜的流延法得到了均匀的Sac/EGF-HF膜。此外,与Sac-HF相比,EGF显著增加了Sac/EGF-HF的厚度、拉伸强度和降解性。与Sac-HF相比,Sac/EGF-HF的溶胀能力较低;这一结果与拉伸强度结果相符。有趣的是,X射线衍射和DSC结果表明Sac/EGF-HF呈无定形。这些研究表明Sac/EGF-HF诱导了成纤维细胞迁移活性。这些结果表明Sac/EGF-HF具有用于生物医学应用的水凝胶膜的潜在特性。