Guangdong Provincial Key Laboratory of Veterinary Pharmaceutics Development and Safety Evaluation, South China Agricultural University, Guangzhou 510642, China.
Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou 510642, China.
Molecules. 2022 Nov 28;27(23):8292. doi: 10.3390/molecules27238292.
In this study, a new colistin-functionalized silica gel material (SiO@NH@COOH@CST) was synthesized after carboxylation on the surface of amino-modified silica. The main factors affecting the adsorptive properties of the material, such as the types of linkers, the linking methods, the reaction buffers and the particle sizes of carriers, were systematically investigated. The SiO@NH@COOH@CST was characterized by means of electron microscopy, Fourier-transform infrared spectroscopy, zeta potential measurements, etc. We demonstrated that the sorbent showed good adsorption of Gram-negative bacteria. The adsorption efficiency of . on SiO@NH@COOH@CST was 5.2 × 10 CFU/g, which was 3.5 times higher than that on SiO@NH@COOH, suggesting that electrostatic interactions between SiO@NH@COOH@CST and . played a key role. The adsorption was quick, and was reached in 5 min. Both pseudo-first-order and pseudo-second-order kinetic models fit well with the dynamic adsorption process of SiO@NH@COOH@CST, indicating that physical adsorption and chemisorption might occur simultaneously during the adsorption process. SiO@NH@COOH@CST was successfully applied for the rapid capture of bacteria from water. The synthesized material could be used as a potential means of bacterial isolation and detection.
在这项研究中,在氨基改性硅胶的表面进行羧化反应后,合成了一种新的黏菌素功能化硅胶材料(SiO@NH@COOH@CST)。系统研究了影响材料吸附性能的主要因素,如连接剂的类型、连接方式、反应缓冲液和载体的粒径等。通过电子显微镜、傅里叶变换红外光谱、等电点测量等手段对 SiO@NH@COOH@CST 进行了表征。结果表明,该吸附剂对革兰氏阴性菌具有良好的吸附性能。SiO@NH@COOH@CST 对. 的吸附效率为 5.2×10 CFU/g,是 SiO@NH@COOH 的 3.5 倍,这表明 SiO@NH@COOH@CST 和. 之间的静电相互作用起关键作用。吸附过程迅速,在 5 分钟内即可达到平衡。拟一级和拟二级动力学模型均很好地拟合了 SiO@NH@COOH@CST 的动态吸附过程,表明吸附过程中可能同时发生物理吸附和化学吸附。SiO@NH@COOH@CST 成功地应用于从水中快速捕获细菌。该合成材料可作为细菌分离和检测的一种潜在手段。