首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Manganese carbonyls bearing tripodal polypyridine ligands as photoactive carbon monoxide-releasing molecules
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Manganese carbonyls bearing tripodal polypyridine ligands as photoactive carbon monoxide-releasing molecules

机译:具有三脚架聚吡啶配体的羰基锰作为光活性一氧化碳释放分子

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摘要

The recently discovered cytoprotective action of CO has raised interest in exogenous CO-releasing materials (CORMs) such as metal carbonyls (CO complexes of transition metals). To achieve control on CO delivery with metal carbonyls, we synthesized and characterized three Mn(I) carbonyls, namely, [Mn(tpa)(CO) _3]ClO _4 [1, where tpa = tris(2-pyridyl)amine], [Mn(dpa)(CO) _3]Br [2, where dpa = N,N-bis(2-pyridylmethyl)amine], and [Mn(pqa)(CO) _3]ClO _4 [3, where pqa = (2-pyridylmethyl)(2- quinolylmethyl)amine], by crystallography and various spectroscopic techniques. All three carbonyls are sensitive to light and release CO when illuminated with low-power UV (5-10 mW) and visible (λ > 350 nm, ~100 mW) light. The sensitivity of 1-3 to light has been assessed with respect to the number of pyridine groups in their ligand frames. When a pyridine ring is replaced with quinoline, extended conjugation in the ligand frame increases the absorptivity and makes the resulting carbonyl 3 more sensitive to visible light. These photosensitive CORMs (photoCORMs) have been employed to deliver CO to myoglobin under the control of light. The superior stability of 3 in aqueous media makes it a photoCORM suitable for inducing vasorelaxation in mouse aortic muscle rings.
机译:最近发现的CO的细胞保护作用引起了对外源性CO释放物质(CORM)的兴趣,例如金属羰基化合物(过渡金属的CO络合物)。为了控制金属羰基化合物对CO的传递,我们合成并表征了三种Mn(I)羰基化合物,即[Mn(tpa)(CO)_3] ClO _4 [1,其中tpa =三(2-吡啶基)胺], [Mn(dpa)(CO)_3] Br [2,其中dpa = N,N-双(2-吡啶基甲基)胺]和[Mn(pqa)(CO)_3] ClO _4 [3,其中pqa =( 2-吡啶基甲基)(2-喹啉基甲基)胺],通过晶体学和各种光谱技术。当用低功率紫外线(5-10 mW)和可见光(λ> 350 nm,〜100 mW)照射时,所有三个羰基化合物均对光敏感并释放CO。关于配体框架中吡啶基的数目,已经评估了1-3对光的敏感性。当吡啶环被喹啉取代时,配体框架中的延长共轭增加了吸收率,并使所得的羰基3对可见光更敏感。这些光敏CORM(photoCORM)已用于在光的控制下将CO输送至肌红蛋白。 3在水性介质中的卓越稳定性使其成为一种photoCORM,适用于诱导小鼠主动脉肌肉环的血管舒张。

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