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聚合人脐带血红蛋白与抗坏血酸协同作为红细胞替代物减轻输血时的氧化应激。

Polymerized human cord hemoglobin assisted with ascorbic acid as a red blood cell substitute alleviating oxidative stress for blood transfusion.

作者信息

Kong Weichen, Zhou Wentao, He Zeng, Zhang Xuejun, Li Shen, Zhong Rui, Liu Jiaxin

机构信息

Institute of Blood Transfusion, Chinese Academy of Medical Sciences and Peking Union Medical College, Chengdu, Sichuan, China.

Hospital of Chengdu Office of People's Government of Tibetan Autonomous Region, Chengdu, Sichuan, China.

出版信息

Front Bioeng Biotechnol. 2023 Feb 23;11:1151975. doi: 10.3389/fbioe.2023.1151975. eCollection 2023.

Abstract

Blood transfusion is widely used in clinical settings, where considerable efforts have been devoted to develop red blood cell substitutes to overcome blood shortage and safety concerns. Among the several kinds of artificial oxygen carriers, hemoglobin-based oxygen carriers are promising due to their inherent good oxygen-binding and -loading properties. However, difficulties in prone to oxidation, production of oxidative stress, and injury in organs limited their clinical utility. In this work, we report a red blood cell substitute composed of polymerized human cord hemoglobin (PolyCHb) assisted with ascorbic acid (AA) that alleviates oxidative stress for blood transfusion. In this study, the in vitro impacts of AA on the PolyCHb were evaluated by testing the circular dichroism, methemoglobin (MetHb) contents and oxygen binding affinity before and after the addition of AA. In the study, guinea pigs were subjected to a 50% exchange transfusion with PolyCHb and AA co-administration, followed by the collection of blood, urine, and kidney samples. The hemoglobin contents of the urine samples were analyzed, and histopathologic changes, lipid peroxidation, DNA peroxidation, and heme catabolic markers in the kidneys were evaluated. After treating with AA, there was no effect on the secondary structure and oxygen binding affinity of the PolyCHb, while the MetHb content was kept at 55%, which was much lower than that without AA treating. Moreover, the reduction of PolyCHbFe3+ was significantly promoted, and the content of MetHb could be reduced from 100% to 51% within 3 h. study results showed that PolyCHb assisted with AA inhibited the formation of hemoglobinuria, upgraded the total antioxidant capacity and downgraded the superoxide dismutase activity of kidney tissue, and lowered the expression of biomarkers for oxidative stress, e.g., malondialdehyde (ET vs ET+AA: 4.03±0.26 μmol/mg vs 1.83±0.16 μmol/mg), 4-hydroxy-2-nonenal (ET vs ET+AA: 0.98±0.07 vs 0.57±0.04), 8-hydroxy 2 deoxyguanosine(ET vs ET+AA: 14.81±1.58 ng/ml vs 10.91±1.36 ng/ml), heme oxygenase 1 (ET vs ET+AA: 1.51±0.08 vs 1.18±0.05) and ferritin (ET vs ET+AA: 1.75±0.09 vs 1.32±0.04). The kidney histopathology results also demonstrated that kidney tissue damage was effectively alleviated. In conclusion, these comprehensive results provide evidence for the potential role of AA in controlling oxidative stress and organ injury in the kidneys induced by PolyCHb, and suggest that PolyCHb assisted with AA has promising application for blood transfusion.

摘要

输血在临床环境中被广泛应用,人们已投入大量精力来开发红细胞替代品,以克服血液短缺和安全问题。在几种人工氧载体中,基于血红蛋白的氧载体因其固有的良好氧结合和载氧特性而颇具前景。然而,其易于氧化、产生氧化应激以及对器官造成损伤等问题限制了它们的临床应用。在这项工作中,我们报告了一种由聚合人脐带血红蛋白(PolyCHb)与抗坏血酸(AA)辅助组成的红细胞替代品,该替代品可减轻输血过程中的氧化应激。在本研究中,通过测试添加AA前后的圆二色性、高铁血红蛋白(MetHb)含量和氧结合亲和力,评估了AA对PolyCHb的体外影响。在该研究中,对豚鼠进行50%的PolyCHb与AA联合交换输血,随后采集血液、尿液和肾脏样本。分析尿液样本中的血红蛋白含量,并评估肾脏中的组织病理学变化、脂质过氧化、DNA过氧化和血红素分解代谢标志物。用AA处理后,对PolyCHb的二级结构和氧结合亲和力没有影响,而MetHb含量保持在55%,远低于未用AA处理时的含量。此外,显著促进了PolyCHbFe3+的还原,MetHb含量可在3小时内从100%降至51%。研究结果表明,PolyCHb与AA辅助可抑制血红蛋白尿的形成,提高肾脏组织的总抗氧化能力并降低超氧化物歧化酶活性,降低氧化应激生物标志物的表达,例如丙二醛(ET组与ET + AA组:4.03±0.26 μmol/mg对1.83±0.16 μmol/mg)、4-羟基-2-壬烯醛(ET组与ET + AA组:0.98±0.07对0.57±0.04)、8-羟基-2-脱氧鸟苷(ET组与ET + AA组:14.81±1.58 ng/ml对10.91±1.36 ng/ml)、血红素加氧酶1(ET组与ET + AA组:1.51±0.08对1.18±0.05)和铁蛋白(ET组与ET + AA组:1.75±0.09对1.32±0.04)。肾脏组织病理学结果也表明,肾脏组织损伤得到有效缓解。总之,这些综合结果为AA在控制PolyCHb诱导的肾脏氧化应激和器官损伤中的潜在作用提供了证据,并表明PolyCHb与AA辅助在输血方面具有广阔的应用前景。

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