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血红蛋白-无机杂化纳米花作为潜在的载氧系统的不同金属离子。

Hemoglobin-Inorganic Hybrid Nanoflowers with Different Metal Ions as Potential Oxygen Carrying Systems.

机构信息

Department of Pharmacy Services, Tuzluca Vocational High School, Igdir University, Igdir, 76000, Turkey.

Department of Plant and Animal Production, Avanos Vocational School, Nevsehir Haci Bektas Veli University, 50500, Nevsehir, Turkey.

出版信息

Chem Biodivers. 2022 Jan;19(1):e202100683. doi: 10.1002/cbdv.202100683. Epub 2021 Dec 21.

Abstract

Protein-inorganic hybrid nanoflowers have tremendous potential in bionanotechnology due to their simple method of preparation, high stability and superior properties. Considering these features, the present study was designed to investigate the artificial blood substitution potentials of hemoglobin-inorganic hybrid nanoflowers. In this context, hemoglobin-inorganic hybrid nanoflowers (Cu-NF, Co-NF and Zn-NF) were synthesized using with different metal ions (copper, cobalt and zinc), then their oxygen carrying capacity, the hemolytic studies, in vitro oxidant/antioxidant capacity levels and oxidative stress index were reported for the first time. The present findings have revealed that Zn-NF had significant oxygen content and artificial oxygen carriers (AOC), as well as a significantly low percent hemolysis rate and a safe standard value. Also, hemolysis rate decreased along with the increases in hemoglobin content coupled with increments in nanoflower concentrations. The percentage hemolysis rate was lower than all nanoflowers at low free hemoglobin concentration, but hemolysis rates also increased with increments in concentration. The results showed that in general, Zn-NF stands out with its high total antioxidant capacity and low total oxidant capacity and oxidative stress index. The obtained results showed that Cu-NF and Co-NF, especially Zn-NF might be considered as a potential superior artificial oxygen carrier. Therefore, this nanoflower system might be act as an efficient material as a blood substitute in the near future.

摘要

蛋白质-无机杂化纳米花因其制备方法简单、稳定性高和性能优异,在生物纳米技术中有巨大的应用潜力。鉴于这些特点,本研究旨在探索血红蛋白-无机杂化纳米花作为人工血液替代品的潜力。为此,本研究使用不同的金属离子(铜、钴和锌)合成了血红蛋白-无机杂化纳米花(Cu-NF、Co-NF 和 Zn-NF),并首次报道了它们的携氧能力、溶血研究、体外氧化应激/抗氧化能力水平和氧化应激指数。研究结果表明,Zn-NF 具有显著的氧含量和人工氧载体(AOC),且溶血率低,达到安全标准。此外,随着血红蛋白含量的增加和纳米花浓度的增加,溶血率逐渐降低。在低游离血红蛋白浓度下,Zn-NF 的溶血率低于所有纳米花,但随着浓度的增加,溶血率也会增加。结果表明,总体而言,Zn-NF 以其高总抗氧化能力、低总氧化应激指数和总氧化应激指数脱颖而出。研究结果表明,Cu-NF 和 Co-NF,特别是 Zn-NF 可能被认为是一种有潜力的人工氧载体。因此,该纳米花体系有望在不久的将来作为一种有效的血液替代品。

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