Gota Chie, Uchiyama Seiichi, Yoshihara Toshitada, Tobita Seiji, Ohwada Tomohiko
Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
J Phys Chem B. 2008 Mar 13;112(10):2829-36. doi: 10.1021/jp709810g. Epub 2008 Feb 16.
Fluorescent molecular thermometers showing temperature-dependent fluorescence lifetimes enable thermal mapping of small spaces such as a microchannel and a living cell. We report the temperature-dependent fluorescence lifetimes of poly(NIPAM-co-DBD-AA), which is a random copolymer of N-isopropylacrylamide (NIPAM) and an environment-sensitive fluorescent monomer (DBD-AA) containing a 4-sulfamoyl-7-aminobenzofurazan structure. The average fluorescence lifetime of poly(NIPAM-co-DBD-AA) in aqueous solution increased from 4.22 to 14.1 ns with increasing temperature from 30 to 35 degrees C. This drastic change in fluorescence lifetime (27% increase per 1 degrees C) is the sharpest ever reported. Concentration independency, one of the advantages of fluorescence lifetime measurements, was seen in average fluorescence lifetime (13.7 +/- 0.18 ns) of poly(NIPAM-co-DBD-AA) at 33 degrees C over a wide concentration range (0.005-1 w/v%). With increasing temperature, polyNIPAM units in poly(NIPAM-co-DBD-AA) change their structure from an extended form to a globular form, providing apolar and aprotic environments to the fluorescent DBD-AA units. Consequently, the environment-sensitive DBD-AA units translate the local environmental changes into the extension of the fluorescence lifetime. This role of the DBD-AA units was revealed by a study of solvent effects on fluorescence lifetime of a model environment-sensitive fluorophore.
具有温度依赖性荧光寿命的荧光分子温度计能够对微通道和活细胞等小空间进行热成像。我们报道了聚(NIPAM-co-DBD-AA)的温度依赖性荧光寿命,它是N-异丙基丙烯酰胺(NIPAM)与含有4-氨磺酰基-7-氨基苯并呋喃结构的环境敏感型荧光单体(DBD-AA)的无规共聚物。随着温度从30℃升高到35℃,聚(NIPAM-co-DBD-AA)在水溶液中的平均荧光寿命从4.22 ns增加到14.1 ns。荧光寿命的这种急剧变化(每1℃增加27%)是有史以来报道的最显著的变化。荧光寿命测量的优点之一——浓度无关性,在33℃下聚(NIPAM-co-DBD-AA)的平均荧光寿命(13.7±0.18 ns)在较宽的浓度范围(0.005-1 w/v%)内都能观察到。随着温度升高,聚(NIPAM-co-DBD-AA)中的聚NIPAM单元将其结构从伸展形式转变为球状形式,为荧光DBD-AA单元提供非极性和非质子性环境。因此,环境敏感型DBD-AA单元将局部环境变化转化为荧光寿命的延长。通过研究溶剂对模型环境敏感型荧光团荧光寿命的影响,揭示了DBD-AA单元的这一作用。