Tseng Yu-Ting, Chen Chien-Hong, Lin Jing-Yu, Li Bing-Han, Lu Yu-Huan, Lin Chia-Her, Chen Hsin-Tsung, Weng Tsu-Chien, Sokaras Dimosthenes, Chen Huang-Yeh, Soo Yun-Liang, Lu Tsai-Te
Department of Chemistry, Chung Yuan Christian University No. 200, Chung Pei Rd. Taoyuan, 32023 (Taiwan).
School of Medical Applied Chemistry, Chung Shan Medical University, No. 110, Section 1, Jianguo North Rd. Taichung, 40201 (Taiwan).
Chemistry. 2015 Dec 1;21(49):17570-3. doi: 10.1002/chem.201503176. Epub 2015 Oct 22.
A positive myocardial inotropic effect achieved using HNO/NO(-) , compared with NO⋅, triggered attempts to explore novel nitroxyl donors for use in clinical applications in vascular and myocardial pharmacology. To develop M-NO complexes for nitroxyl chemistry and biology, modulation of direct nitroxyl-transfer reactivity of dinitrosyl iron complexes (DNICs) is investigated in this study using a Fe(III) -porphyrin complex and proteins as a specific probe. Stable dinuclear {Fe(NO)2 }(9) DNIC [Fe(μ-(Me) Pyr)(NO)2 ]2 was discovered as a potent nitroxyl donor for nitroxylation of Fe(III) -heme centers through an associative mechanism. Beyond the efficient nitroxyl transfer, transformation of DNICs into a chemical biology probe for nitroxyl and for pharmaceutical applications demands further efforts using in vitro/in vivo studies.
与一氧化氮(NO⋅)相比,使用硝酰基(HNO/NO⁻)实现的正性心肌肌力作用引发了人们探索新型硝酰基供体用于血管和心肌药理学临床应用的尝试。为了开发用于硝酰基化学和生物学的M-NO配合物,本研究使用铁(III)-卟啉配合物和蛋白质作为特异性探针,研究了二亚硝酰基铁配合物(DNICs)直接硝酰基转移反应性的调节。稳定的双核{Fe(NO)₂}(9) DNIC [Fe(μ-(Me) Pyr)(NO)₂]₂被发现是一种通过缔合机制对铁(III)-血红素中心进行硝酰化的有效硝酰基供体。除了高效的硝酰基转移外,将DNICs转化为用于硝酰基和药物应用的化学生物学探针还需要在体外/体内研究方面做出进一步努力。