Laboratory of Enzyme Engineering and Microbiology, University of Sfax, National Engineering School of Sfax, B.P. 1173, 3038 Sfax, Tunisia.
Laboratory of Enzyme Engineering and Microbiology, University of Sfax, National Engineering School of Sfax, B.P. 1173, 3038 Sfax, Tunisia; Higher Institute of Biotechnology of Monastir, University of Monastir, Monastir, Tunisia.
Int J Biol Macromol. 2020 Oct 1;160:593-601. doi: 10.1016/j.ijbiomac.2020.05.246. Epub 2020 May 30.
The present study was undertaken to establish a distinct relationship between blue crab chitosan (Cs) acetylation degree (AD) and molecular weight (Mw) and its structural features, thermal properties and bioactivity. Therefore, chitosans with different AD were prepared and Cellulase was used to produce Cs derivatives with decreasing Mw. Results clearly display a decrease of the ordered structure of Cs, with the increase of AD and the decrease of Mw. Thermal stability/degradation screening disclose a greater thermal resistance for Cs with lower AD and higher Mw. The anti-adhesive potential of Cs was, additionally, studied, as function of AD and Mw. The effectiveness of Cs in preventing biofilm adhesion was strongly influenced by its AD and Mw, with the lowest inhibition values for higher AD and lower Mw. Interestingly, the effectiveness of Cs in disrupting pre-formed biofilms increased with decreasing Mw. Moreover, Cs derivatives were found to be advantageously efficient in prolonging human blood clotting times, based on data of activated partial thromboplastin time, Quick time and thrombin time assays, typically for the intrinsic coagulation pathway. Accordingly, depending on the predicted application of Cs, either in food, biomedical and pharmaceutical industries, AD and Mw are critical traits to be inevitably reflected on.
本研究旨在建立蓝蟹壳聚糖(Cs)乙酰化程度(AD)和分子量(Mw)与其结构特征、热性能和生物活性之间的明确关系。因此,制备了具有不同 AD 的壳聚糖,并使用纤维素酶来制备 Mw 降低的 Cs 衍生物。结果清楚地显示出 Cs 的有序结构随着 AD 的增加和 Mw 的降低而降低。热稳定性/降解筛选显示,AD 较低且 Mw 较高的 Cs 具有更高的热稳定性。还研究了 Cs 的抗粘性能作为 AD 和 Mw 的函数。Cs 防止生物膜粘附的有效性强烈受其 AD 和 Mw 的影响,AD 较高且 Mw 较低时,抑制值最低。有趣的是,随着 Mw 的降低,Cs 破坏预先形成的生物膜的效果增加。此外,根据激活部分凝血活酶时间、Quick 时间和凝血酶时间测定的数据,Cs 衍生物在延长人凝血时间方面表现出有利的功效,这通常是针对内在凝血途径。因此,根据 Cs 的预期应用,无论是在食品、生物医学还是制药行业,AD 和 Mw 都是必须反映的关键特性。