College of Chemistry & Environment, Guangdong Ocean University, Zhanjiang 524088, China.
Mar Drugs. 2019 Nov 1;17(11):626. doi: 10.3390/md17110626.
To investigate the effect of carboxymethylation and phosphorylation modification on Sepia esculenta ink polysaccharide (SIP) properties, this study prepared carboxymethyl SIP (CSIP) with the chloracetic acid method, and phosphorylated SIP (PSIP) with the sodium trimetaphosphate (STMP)/sodium tripolyphosphate (STPP) method, on the basis of an orthogonal experiment. The in vitro antioxidant and anticoagulant activities of the derivatives were determined by assessing the scavenging capacity of the 1,1-diphenyl-2-picrylhydrazyl (DPPH) and hydroxyl radicals, which activated the partial thromboplastin time (APTT), prothrombin time (PT), and thrombin time (TT). The results showed that SIP was modified successfully to be CSIP and PSIP, and degrees of substitution (DSs) of the two products were 0.9913 and 0.0828, respectively. Phosphorylation efficiently improved the antioxidant property of SIP, and the IC values of PSIP on DPPH and hydroxyl radicals decreased by 63.25% and 13.77%, respectively. But carboxymethylation reduced antioxidant activity of the native polysaccharide, IC values of CSIP on the DPPH and hydroxyl radicals increased by 16.74% and 6.89%, respectively. SIP significantly prolonged the APTT, PT, and TT in a dose-dependent fashion, suggesting that SIP played an anticoagulant action through intrinsic, extrinsic, and common coagulation pathways. CSIP and PSIP both possessed a stronger anticoagulant capacity than SIP via the same pathways; moreover, CSIP was observed to be more effective in prolonging APTT and PT than PSIP.
为了研究羧甲基化和磷酸化修饰对乌贼墨多糖(SIP)性质的影响,本研究采用氯乙酸法制备羧甲基乌贼墨多糖(CSIP),采用偏磷酸三钠(STMP)/三聚磷酸钠(STPP)法制备磷酸化乌贼墨多糖(PSIP),在此基础上进行了正交实验。通过评估 1,1-二苯基-2-苦基肼(DPPH)和羟基自由基的清除能力,测定了衍生物的体外抗氧化和抗凝活性,激活部分凝血活酶时间(APTT)、凝血酶原时间(PT)和凝血时间(TT)。结果表明,SIP 成功地被修饰为 CSIP 和 PSIP,两种产物的取代度(DS)分别为 0.9913 和 0.0828。磷酸化有效地提高了 SIP 的抗氧化性能,PSIP 对 DPPH 和羟基自由基的 IC 值分别降低了 63.25%和 13.77%。但是,羧甲基化降低了天然多糖的抗氧化活性,CSIP 对 DPPH 和羟基自由基的 IC 值分别增加了 16.74%和 6.89%。SIP 呈剂量依赖性地显著延长 APTT、PT 和 TT,表明 SIP 通过内在、外在和共同的凝血途径发挥抗凝作用。CSIP 和 PSIP 均通过相同途径具有比 SIP 更强的抗凝能力;此外,与 PSIP 相比,CSIP 观察到在延长 APTT 和 PT 方面更有效。