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探索新型锌和铟酞菁的治疗研究和生物活性的改进策略。

Exploring improved strategies for therapeutic studies and biological activities of novel zinc and indium phthalocyanines.

机构信息

Department of Chemistry, Yildiz Technical University, 34210 Esenler, Istanbul, Turkey.

Department of Veterinary Medicine, Ihsangazi Technical Science Vocational School, Ihsangazi, Kastamonu, Turkey.

出版信息

Dalton Trans. 2024 Oct 29;53(42):17381-17393. doi: 10.1039/d4dt02261k.

Abstract

This study investigates novel zinc and indium phthalocyanines with Schiff base and sulphur moieties, focusing on their potential for cancer therapy and antimicrobial applications. It explores the effectiveness of photochemical and sono-photochemical methods to enhance singlet oxygen production, which is crucial for photodynamic therapy. The synthesized complexes in this study demonstrated high singlet oxygen quantum yields, with D3 (ZnPc) and D4 (InPc) showing values of 0.71 and 0.75, and values of 0.91 and 0.94, respectively. Furthermore, the evaluation for biological properties revealed that both D3 and D4 exhibit significant antidiabetic properties, DPPH radical scavenging activity, DNA cleavage, antimicrobial activity, biofilm inhibition, and microbial cell viability impacts, both with and without photodynamic therapy. Notably, D3 and D4 achieved antimicrobial cell viability inhibition rates of 84.67 ± 4.67% and 98.32 ± 5.96%, respectively, showcasing their effectiveness in photodynamic antimicrobial therapy. Overall, the study highlights the potential of these phthalocyanine complexes as advanced photosensitizers, with strong singlet oxygen generation and promising biological activities, paving the way for future therapeutic applications.

摘要

本研究探索了具有席夫碱和硫部分的新型锌和铟酞菁,重点研究它们在癌症治疗和抗菌应用方面的潜力。本研究探讨了光化学和超声光化学方法增强单线态氧产生的有效性,这对光动力疗法至关重要。本研究中合成的配合物具有高单线态氧量子产率,其中 D3(ZnPc)和 D4(InPc)的 值分别为 0.71 和 0.75, 值分别为 0.91 和 0.94。此外,对生物特性的评估表明,D3 和 D4 均表现出显著的抗糖尿病特性、DPPH 自由基清除活性、DNA 切割、抗菌活性、生物膜抑制和微生物细胞活力影响,无论是否进行光动力治疗。值得注意的是,D3 和 D4 实现了 84.67 ± 4.67%和 98.32 ± 5.96%的抗菌细胞活力抑制率,展示了它们在光动力抗菌治疗中的有效性。总的来说,该研究强调了这些酞菁配合物作为先进光敏剂的潜力,具有强单线态氧产生和有前途的生物活性,为未来的治疗应用铺平了道路。

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