Dynamically modified, biospecific optical fiber sensor for riboflavin binding protein based on hydrophobically associated 3-octylriboflavin.
Dynamically modified, biospecific optical fiber sensor for riboflavin binding protein based on hydrophobically associated 3-octylriboflavin.
复制标题
基于疏水相关 3-辛基核黄素的动态修饰、生物特异性光纤传感器,用于核黄素结合蛋白。
DOI:
10.1021/ac00039a003
复制
发表时间:
1992
影响因子:
7.4
通讯作者:
Bobbitt,DR
中科院分区:
文献类型:
--
作者:
Ogasawara,FK;Wang,Y;Bobbitt,DR
Recent developments in the fieldof chemical analysis have been directed toward the miniaturization of chemical sensors. The impetus for this effort lies in the desire to produce in vivo sensors capable of detecting a variety of chemicaland biochemical materials indicativeof the diseased state. To probe these systems adequately without perturbing the system under study is one of the great challenges in the field of chemical analysis today. One exciting development has been the use of optical fibers to deliver and collect light from specific regions wherethe light interactions at the distal end of the fiber can be used to gain knowledge about the chemical events occurring at the fiber tip.* 1 Optical fibers, because of their small diameters, can be used to produce extremely small optical probes (optrodes), and because light can be propagated in optical fibers over long distances without appreciable loss, they can be used effectively in remote monitoring situations. As an example, an optical fiber sensor has been described which is suitable for monitoring glucose levels via the effect of the solution refractive index on the transmission properties