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湖北大学材料科学与工程学院 武汉 430062
安媛媛(1988.03),女,青海人,湖北大学材料科学与工程学院硕士研究生,主要从事乳液聚合,功能高分子等领域的研究工作;
吴水林,E-mail:shuiliwu@cityu.edu.hk.
纸质出版日期:2012-03,
收稿日期:2011-04-17,
修回日期:2011-09-11,
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安媛媛, 徐祖顺, 吴水林. 苯硼酸类糖敏感材料的研究进展[J]. 高分子通报, 2012,25(3):98-106.
Yuan-yuan AN, Zu-shun XU, Shui-lin WU. Research Advances in Phenylboronic Acid-containing Materials[J]. Polymer Bulletin, 2012,25(3):98-106.
糖尿病是由于胰腺分泌的胰岛素不足而引起的一种新陈代谢疾病。不间断地测定血糖浓度并依糖释放胰岛素是控制糖尿病的有效方法。因此
具有胰腺的反馈和平衡功能
能识别糖而产生刺激响应的智能系统
在糖尿病的控制和治疗方面有广泛的应用前景。糖作为生物体中的能源物质
与蛋白质、核酸并称生命体的三大组成单元
在生命活动中起着不可替代的作用。由于糖含有多个羟基
而苯硼酸可以与二醇、多醇羟基相互作用
故苯硼酸常被用于识别和感知糖
当荧光体与苯硼酸基团相连接时即可构建识别糖的荧光传感器。本文综述了近几年国内外关于含苯硼酸基团的糖敏感材料在生物医药领域的研究现状
重点介绍了苯硼酸类糖敏感药物缓控释智能材料和糖分子识别荧光探针的研究进展
展望了今后的研究方向。
Diabetes is a kind of metabolic disease caused by the inability of the pancreas to control the blood glucose concentration. An effective management of diabetes relies on the frequent monitoring of blood glucose concentrations and the glucose responsive insulin release. Glucose-sensitive systems
resembling the pancreas with the abilities of feedback and equilibrium
can be responsive to the changes of environmental glucose concentration and exhibit extensive application prospect in controlling and treating diabetes. Carbohydrate
which is treated as one of the three substantial units as protein and nucleic acid
plays a great role in life body as an indispensable energy resource to biological processes. Therefore
the recognition of saccharides is very important in the fields of medical and life sciences. Phenylboronic acid is frequently used for recognizing and perceiving carbohydrate due to the high affinity between phenylboronic group and glycol. A fluorescent receptor sensing for saccharide can be constructed while a phenylboronic acid group is linked to a fluorophore. In this paper
the current research situations of phenylboronic acid-containing glucose-sensitive materials in the field of biomedicine are reviewed
and the latest research progress of such materials in the fields of drug sustained-controlled release systems and fluorescent probes used as the sugar molecule recognition are introduced emphatically. Furthermore
the future research direction of these glucose-sensitive materials is predicted.
苯硼酸葡萄糖敏感响应药物载体糖分子识别荧光探针
Phenylboronic acidGlucose-sensitivePharmaceutical carriersRecognition of saccharidesFluorescent sensors
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