Saallah Suryani, Roslan Jumardi, Julius Flavian Sheryl, Saallah Sharinee, Mohamad Razali Umi Hartina, Pindi Wolyna, Sulaiman Mohd Rosni, Pa'ee Khairul Faizal, Mustapa Kamal Siti Mazlina
Biotechnology Research Institute, Universiti Malaysia Sabah, Jalan UMS, Kota Kinabalu 88400, Sabah, Malaysia.
Faculty of Food Science and Nutrition, Universiti Malaysia Sabah, Jalan UMS, Kota Kinabalu 88400, Sabah, Malaysia.
Molecules. 2021 Apr 28;26(9):2564. doi: 10.3390/molecules26092564.
Collagen was extracted from the body wall of sea cucumber () using the pepsin-solubilized collagen method followed by isolation using dialysis and the ultrafiltration membrane. The yield and physicochemical properties of the collagen obtained from both isolation methods, denoted as D-PSC and UF-PSC, were compared. The ultrafiltration method affords a higher yield of collagen (11.39%) than that of the dialysis (5.15%). The isolated collagens have almost the same amino acid composition, while their functional groups, referred to as amide A, B, I, II, and III bands, were in accordance with commercial collagen, as verified by Fourier Transform Infrared (FT-IR) spectroscopy. The UV-Vis absorption peaks at 240 nm and 220 nm, respectively, indicated that the collagens produced are type-I collagen. The D-PSC showed interconnecting sheet-like fibrils, while the UF-PSC exhibited a flaky structure with flat-sheets arranged very close to each other. The higher yield and comparable physicochemical properties of the collagen obtained by ultrafiltration as compared with dialysis indicate that the membrane process has high potential to be used in large-scale collagen production for food and pharmaceutical applications.
采用胃蛋白酶溶解胶原蛋白法,随后通过透析和超滤膜分离,从海参体壁中提取胶原蛋白。比较了两种分离方法(分别记为D - PSC和UF - PSC)所得胶原蛋白的产率和理化性质。超滤法获得的胶原蛋白产率(11.39%)高于透析法(5.15%)。分离得到的胶原蛋白氨基酸组成几乎相同,通过傅里叶变换红外光谱(FT - IR)验证,其酰胺A、B、I、II和III带等官能团与市售胶原蛋白一致。在240 nm和220 nm处的紫外可见吸收峰分别表明所产生的胶原蛋白为I型胶原蛋白。D - PSC呈现相互连接的片状纤维,而UF - PSC表现出片状结构,其中扁平片层彼此排列非常紧密。与透析法相比,超滤法获得的胶原蛋白具有更高的产率和相当的理化性质,这表明膜分离工艺在大规模生产用于食品和制药应用的胶原蛋白方面具有很大潜力。