无机材料学报
無機材料學報
무궤재료학보
JOURNAL OF INORGANIC MATERIALS
2009年
6期
1236-1242
,共7页
王小英%杜予民%孙润仓%刘传富
王小英%杜予民%孫潤倉%劉傳富
왕소영%두여민%손윤창%류전부
壳聚糖季铵盐%有机累托石%纳米复合材料%抗菌
殼聚糖季銨鹽%有機纍託石%納米複閤材料%抗菌
각취당계안염%유궤루탁석%납미복합재료%항균
quaternized chitosan%organic rectorite%nanocomposite%antimicrobial activity
合成了壳聚糖季铵盐, 并通过溶液插层法将其插层进入有机累托石层间制备纳米复合材料, 研究表明, 当壳聚糖季铵盐与有机累托石的质量比为2∶1时, 其获得了4.8nm的最大层间距. 抗菌结果显示, 在偏酸、中性及偏碱性条件下, 所有的纳米复合材料都具有较好的抗菌性能, 且与有机累托石的含量和层间距成正比. 与壳聚糖季铵盐及有机累托石相比, 纳米复合材料对革兰氏阳性菌、革兰氏阴性菌及真菌的抗菌性能大大提高, 对金黄色葡萄球菌和枯草芽孢杆菌的最小抑制浓度仅为0.00313% (W/V), 且能在30min内杀死90%以上的金黄色葡萄球菌, 80%以上的大肠杆菌. 最后, 通过TEM和SEM结果探讨了其抗菌机理.
閤成瞭殼聚糖季銨鹽, 併通過溶液插層法將其插層進入有機纍託石層間製備納米複閤材料, 研究錶明, 噹殼聚糖季銨鹽與有機纍託石的質量比為2∶1時, 其穫得瞭4.8nm的最大層間距. 抗菌結果顯示, 在偏痠、中性及偏堿性條件下, 所有的納米複閤材料都具有較好的抗菌性能, 且與有機纍託石的含量和層間距成正比. 與殼聚糖季銨鹽及有機纍託石相比, 納米複閤材料對革蘭氏暘性菌、革蘭氏陰性菌及真菌的抗菌性能大大提高, 對金黃色葡萄毬菌和枯草芽孢桿菌的最小抑製濃度僅為0.00313% (W/V), 且能在30min內殺死90%以上的金黃色葡萄毬菌, 80%以上的大腸桿菌. 最後, 通過TEM和SEM結果探討瞭其抗菌機理.
합성료각취당계안염, 병통과용액삽층법장기삽층진입유궤루탁석층간제비납미복합재료, 연구표명, 당각취당계안염여유궤루탁석적질량비위2∶1시, 기획득료4.8nm적최대층간거. 항균결과현시, 재편산、중성급편감성조건하, 소유적납미복합재료도구유교호적항균성능, 차여유궤루탁석적함량화층간거성정비. 여각취당계안염급유궤루탁석상비, 납미복합재료대혁란씨양성균、혁란씨음성균급진균적항균성능대대제고, 대금황색포도구균화고초아포간균적최소억제농도부위0.00313% (W/V), 차능재30min내살사90%이상적금황색포도구균, 80%이상적대장간균. 최후, 통과TEM화SEM결과탐토료기항균궤리.
Quaternized chitosan, N-(2-hydroxyl) propyl-3-trimethyl ammonium chitosan chloride (HTCC) was synthesized and intercalated into organic rectorite (OREC) to prepare the nanocomposites via solution intercalation method. When the mass ratio of HTCC to OREC was 2∶1, the nanocomposite with the largest interlayer distance of 4.8nm was obtained. Two in vitro antimicrobial assays indicated that all the nanocomposites exhibited strong inhibition effect under weak acid, water and weak basic condition. Moreover, with increasing the amount or the interlayer distance of OREC, the antimicrobial activity was stronger. The lowest minimum inhibition concentrations (MIC) of the nanocomposites against Gram-positive bacteria, Gram-negative bacteria and Fungus were 1/32-1/8, 1/8-1/2 and 1/16-1/8 of that for quaternized chitosan or OREC, respectively. MIC values of the nanocomposites against Staphylococcus aureus and Bacillus subtilis were less than 0.00313% (W/V) in all media tested. The nanocomposites can kill 90% Staphylococcus aureus and 80% Escherichia coli in 30min. The mechanism of the antimicrobial action was briefly discussed on the base of TEM and SEM results.