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Multifunctional Cellulose Beads and Their Interaction with Gram Positive Bacteria

机译:多功能纤维素微珠及其与革兰氏阳性细菌的相互作用

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Cellulose beads with ~3 mm of diameter and high circularity were obtained by dripping cellulose solutions (5,6, and 7 wt 96) dissolved in NaOH7%/ureal2%, into HC12 M coagulation bath. Carboxylic groups were generated on beads surface through NaClO/ NaClO2/TEMPO oxidation method, achieving total charge density of M).77 mmol/g. Pristine (CB) and oxidized (OCB) beads were characterized by means of optical images analyses, scanning electron microscopy (SEM) and compression tests. Both types of beads, CB and OCB, were used as adsorbent for poly(4-vmyl-N-pentylpyridinium) bromide, QPVP-C5, a bactericidal agent. The adsorption of QPVP-C5 on CB and OCB was evaluated by means of FTIR-ATR, UV—vis, CHN elemental analyses, and X-ray photoelectron spectroscopy (XPS). The adsorbed amount of QPVP-C5 was remarkably higher on OCB than on CB due to ionic interactions. Desorption was less than 5%. The interaction between neat OCB or OCB coated and two different amounts of QPVP-C5 and Gram-positive bacteria Micrococcus luteus was assessed by changes in turbidimetry, SEM, and elemental analyses. Bacteria adsorbed on the surface of neat OCB and weakly QPVP-C5 coated OCB due to hydrogen bonding or ion-dipole interaction. Notorious bactericidal action was observed for OCB samples coated with large amount of QPVP-C5.
机译:通过将溶解于NaOH7%/ ureal2%的纤维素溶液(5,6和7 wt 96)滴入HC12 M凝固浴中,获得直径约为3 mm且具有较高圆形度的纤维素珠。通过NaClO / NaClO2 / TEMPO氧化法在珠子表面生成羧酸基,达到总电荷密度(M).77 mmol / g。通过光学图像分析,扫描电子显微镜(SEM)和压缩测试对原始(CB)和氧化(OCB)珠进行表征。两种类型的珠,CB和OCB,都被用作聚(4-vmyl-N-戊基吡啶鎓)溴化物QPVP-C5(一种杀菌剂)的吸附剂。通过FTIR-ATR,UV-vis,CHN元素分析和X射线光电子能谱(XPS)评估了QPVP-C5在CB和OCB上的吸附。由于离子相互作用,OCB上QPVP-C5的吸附量明显高于CB。解吸小于5%。通过比浊法,SEM和元素分析的变化评估了纯OCB或OCB涂层与两种不同量的QPVP-C5和革兰氏阳性细菌微球菌之间的相互作用。由于氢键或离子-偶极相互作用,细菌吸附在纯净的OCB表面和QPVP-C5涂层薄弱的OCB上。对于涂有大量QPVP-C5的OCB样品,观察到了臭名昭著的杀菌作用。

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