带有卟啉和异氰化硼烷配体的金属(M = Cr、Mo、W、Re)羰基复合物:光诱导氧化和氧化碳释放的抗肿瘤功效。

IF 5.8 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS Biomaterials Science Pub Date : 2025-01-28 DOI:10.1039/d4bm01293c
Victoria M Alpatova, Minh Tuan Nguyen, Evgeny G Rys, Georgy K Liklikadze, Elena G Kononova, Alexander F Smol'yakov, Yuri A Borisov, Anton E Egorov, Alexey A Kostyukov, Anna V Shibaeva, Ivan D Burtsev, Alexander S Peregudov, Vladimir A Kuzmin, Alexander A Shtil, Alina A Markova, Valentina A Ol'shevskaya
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引用次数: 0

摘要

四吡咯大环作为各种化学修饰的支架,为制备适合二元抗肿瘤治疗的复杂多功能偶联物提供了广阔的机会。通常,单色光照射会触发活性氧(ROS)的光化学生成(光动力效应)。然而,在四吡咯衍生物的光活化上可以获得更有治疗价值的效果。在这里,我们报告了新的卟啉基过渡金属配合物与异氰化物和羰基配体。配合物的合成假定使用5-(对异氰苯基)-10,15,20-三苯基卟啉作为配体与金属羰基配合物M(CO)6 (M = Cr, Mo, W), Re2(CO)10和Re(CO)5Cl反应。以这些配合物和异氰酸碳硼烷为基础,制备了卟啉和碳硼烷异氰酸配体的杂电羰基配合物。在无细胞系统中,新化合物在光诱导活化下保留了亲本卟啉衍生物的光化学特征,如三重态形成和ROS生成。在细胞培养中,含碳硼烷衍生物比不含硼的衍生物表现出更明显的细胞内积累。正如预期的那样,加载了新复合物的细胞在Soret波段(405 nm)的光照引起了光动力细胞损伤。相反,530nm的光照引发了碳氧化物(CO)的释放,随后是独立于光动力效应的细胞死亡。利用紫外-可见光谱的二阶导数和我们最初开发的分光光度消除光诱导副反应(SNAPS)方法分析光诱导CO释放。羰基部分的金属Mo≥Cr > W > Re≥Re2对原料CO释放率的影响较大。总的来说,我们的新型金属羰基配合物与卟啉和碳硼烷异氰化物配体结合,成为光动力和光诱导co释放抗肿瘤药物的有效双功能偶联物。
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Metal (M = Cr, Mo, W, Re) carbonyl complexes with porphyrin and carborane isocyanide ligands: light-induced oxidation and carbon oxide release for antitumor efficacy.

The tetrapyrrolic macrocycle as a scaffold for various chemical modifications provides broad opportunities for the preparation of complex multifunctional conjugates suitable for binary antitumor therapies. Typically, illumination with monochromatic light triggers the photochemical generation of reactive oxygen species (ROS) (photodynamic effect). However, more therapeutically valuable effects can be achieved upon photoactivation of tetrapyrrole derivatives. Herein we report the novel porphyrin-based complexes of transition metals with isocyanide and carbonyl ligands. Synthesis of complexes presumed the use of 5-(p-isocyanophenyl)-10,15,20-triphenylporphyrin as a ligand in reactions with metal carbonyl complexes, M(CO)6 (M = Cr, Mo, W), Re2(CO)10 and Re(CO)5Cl. Based on these complexes and isocyanocarborane, the heteroleptic carbonyl complexes with porphyrin and carborane isocyanide ligands were prepared. In cell-free systems, the new compounds retained photochemical characteristics of the parental porphyrin derivative, such as triplet state formation and ROS generation, upon light-induced activation. In the cell culture, the carborane-containing derivatives demonstrated a more pronounced intracellular accumulation than their nonboronated counterparts. As expected, illumination at the Soret band (405 nm) of cells loaded with the new complexes caused photodynamic cell damage. In contrast, illumination at 530 nm instead initiated the release of carbon oxide (CO) followed by cell death independently of the photodynamic effect. Light-induced CO release was analyzed using second derivatives of UV-Vis spectra and our originally developed Spectrophotometric elimiNAtion of Photoinduced Side reactions (SNAPS) method. The yield of CO release decreased in the raw depending on metals in the carbonyl moiety: Mo ≥ Cr > W > Re ≥ Re2. Overall, our novel metal carbonyl complexes with porphyrin and carborane isocyanide ligands emerge as potent bi-functional conjugates for combined photodynamic and photoinducible CO-releasing antitumor agents.

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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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