Ahmed Samia A, Taie Hanan A A, Abdel Wahab Walaa A
Chemistry of Natural and Microbial Products Department, National Research Centre, Dokki, Cairo, Egypt.
Plant Biochemistry Department, National Research Centre, Dokki, Cairo, Egypt.
Int J Biol Macromol. 2023 Apr 15;234:123578. doi: 10.1016/j.ijbiomac.2023.123578. Epub 2023 Feb 9.
Agricultural and industrial residues (AIR) are renewable biomass sources present in large quantities causing pollution. Converting AIR to eco-friendly products (bioactive materials) reduces their quantity and impact on the environment, in addition to reducing production costs. Therefore, orange peel (OP) protein degradation, antioxidant capacity, and antitumor activity were investigated using Aspergillus niger WA 2017 protease. The highest value of the protein hydrolysate with the highest antioxidant using the DPPH method was obtained after 24 h. The single-factor method boosted the protein hydrolysate and the DPPH antioxidant activity by 3.7 and 1.7-fold, respectively. Statistical optimized conditions (Central Composite Method) increased the hydrolysate value and the DPPH antioxidant activity by 1.6 and 1.1-fold, respectively. The central trial samples exhibited the highest DPPH antioxidant activity (62.37 %), while the control sample recorded 20 %. All antioxidant tests in vitro (DPPH, reducing power, ABTS, and FRAP) confirmed the superiority of the potent hydrolysate as a good antioxidant. In vitro antitumor activity, the potent hydrolysate exhibited the highest effect on the Ehrlich Ascites Carcinoma Cells viability as it recorded 60.62 % dead cells. In vivo antitumor activity, the volume of the untreated tumor mice was found to be 1.4-fold bigger than the volume obtained from the potent hydrolysate. The increase in life span (ILS %) for oral treatment and intraperitoneal injection treatment with the potent hydrolysate increased by 13.91 and 19.42 %, respectively, compared to the untreated tumor.
农业和工业残留物(AIR)是大量存在的可再生生物质资源,会造成污染。将AIR转化为环保产品(生物活性材料)不仅可以减少其数量和对环境的影响,还能降低生产成本。因此,使用黑曲霉WA 2017蛋白酶研究了橙皮(OP)的蛋白质降解、抗氧化能力和抗肿瘤活性。采用DPPH法,在24小时后获得了具有最高抗氧化能力的蛋白质水解物的最高值。单因素法使蛋白质水解物和DPPH抗氧化活性分别提高了3.7倍和1.7倍。统计优化条件(中心复合设计法)使水解物值和DPPH抗氧化活性分别提高了1.6倍和1.1倍。中心试验样品表现出最高的DPPH抗氧化活性(62.37%),而对照样品为20%。所有体外抗氧化试验(DPPH、还原力、ABTS和FRAP)均证实了高效水解物作为良好抗氧化剂的优越性。在体外抗肿瘤活性方面,高效水解物对艾氏腹水癌细胞活力的影响最大,死细胞率达60.62%。在体内抗肿瘤活性方面,发现未治疗的肿瘤小鼠的肿瘤体积比高效水解物处理组的肿瘤体积大1.4倍。与未治疗的肿瘤相比,口服和腹腔注射高效水解物的寿命延长率(ILS%)分别提高了13.91%和19.42%。