Gamal Rawia F, El-Tayeb Tarek S, Raffat Enas I, Ibrahim Haytham M M, Bashandy A S
Department of Agricultural Microbiology, Faculty of Agriculture, Ain Shams University, Egypt.
Department of Radiation Microbiology, National Center for Radiation Research and Technology (NCRRT), Atomic Energy Authority, Cairo, Egypt.
Int J Biol Macromol. 2016 Oct;91:598-608. doi: 10.1016/j.ijbiomac.2016.06.008. Epub 2016 Jun 3.
Chitin and chitosan have been produced from the exoskeletons of crustacean shells such as shrimps. In this study, seventy bacterial isolates, isolated from soil, were tested for proteolytic enzymes production. The most efficient one, identified as Bacillus subtilis, was employed to extract chitin from shrimp shell waste (SSW). Following one-variable-at-a-time approach, the relevant factors affecting deproteinization (DP) and demineralization (DM) were sucrose concentration (10%, w/v), SSW concentration (5%, w/v), inoculum size (15%, v/v), and fermentation time (6days). These factors were optimized subsequently using Box-Behnken design and response surface methodology. Maximum DP (97.65%) and DM (82.94%) were predicted at sucrose concentration (5%), SSW concentration (12.5%), inoculum size (10%, containing 35×10(8) CFU/mL), and fermentation time (7days). The predicted optimum values were verified by additional experiment. The values of DP (96.0%) and DM (82.1%) obtained experimentally correlated to the predicted values which justify the authenticity of optimum points. Overall 1.3-fold increase in DP% and DM% was obtained compared with 75.27% and 63.50%, respectively, before optimization. Gamma-irradiation (35kGy) reduced deacetylation time of irradiated chitin by 4.5-fold compared with non-irradiated chitin. The molecular weight of chitosan was decreased from 1.9×10(6) (non-irradiated) to 3.7×10(4)g/mol (at 35kGy).
几丁质和壳聚糖是从虾等甲壳类动物的外壳中提取出来的。在本研究中,对从土壤中分离出的70株细菌菌株进行了蛋白酶生产测试。其中最有效的一株被鉴定为枯草芽孢杆菌,用于从虾壳废料(SSW)中提取几丁质。采用一次改变一个变量的方法,影响脱蛋白(DP)和脱矿质(DM)的相关因素有蔗糖浓度(10%,w/v)、SSW浓度(5%,w/v)、接种量(15%,v/v)和发酵时间(6天)。随后使用Box-Behnken设计和响应面方法对这些因素进行了优化。预测在蔗糖浓度(5%)、SSW浓度(12.5%)、接种量(10%,含35×10⁸CFU/mL)和发酵时间(7天)时,DP最大值(97.65%)和DM最大值(82.94%)。通过额外实验验证了预测的最佳值。实验获得的DP值(96.0%)和DM值(82.1%)与预测值相关,这证明了最佳点的真实性。与优化前分别为75.27%和63.50%相比,DP%和DM%总体提高了1.3倍。γ射线辐照(35kGy)使辐照几丁质的脱乙酰化时间比未辐照几丁质缩短了4.5倍。壳聚糖的分子量从1.9×10⁶(未辐照)降至3.7×10⁴g/mol(35kGy时)。