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含多硫醇的重组甘露糖化白蛋白是一种用于治疗两种急性肝炎模型的、靶向CD68+/CD206+库普弗细胞的优质纳米抗氧化剂。

Polythiol-containing, recombinant mannosylated-albumin is a superior CD68+/CD206+ Kupffer cell-targeted nanoantioxidant for treatment of two acute hepatitis models.

作者信息

Maeda Hitoshi, Hirata Kenshiro, Watanabe Hiroshi, Ishima Yu, Chuang Victor Tuan Giam, Taguchi Kazuaki, Inatsu Akihito, Kinoshita Manabu, Tanaka Motohiko, Sasaki Yutaka, Otagiri Masaki, Maruyama Toru

机构信息

Department of Biopharmaceutics, Graduate School of Pharmaceutical Sciences (H.M., K.H., H.W., Y.I., V.T.G.C., T.M.), Center for Clinical Pharmaceutical Sciences, School of Pharmacy (H.W., Y.I., T.M.), and Department of Gastroenterology and Hepatology, Graduate School of Medical Sciences (M.T., Y.S.), Kumamoto University, Kumamoto, Japan; School of Pharmacy, Faculty of Health Sciences, Curtin Health Innovation Research Institute, Curtin University, Perth, Western Australia, Australia (V.T.G.C.); Faculty of Pharmaceutical Sciences (K.T., M.O.) and DDS Research Institute (M.O.), Sojo University, Kumamoto, Japan; and Department of Immunology and Microbiology, National Defense Medical College, Saitama, Japan (A.I., M.K.).

Department of Biopharmaceutics, Graduate School of Pharmaceutical Sciences (H.M., K.H., H.W., Y.I., V.T.G.C., T.M.), Center for Clinical Pharmaceutical Sciences, School of Pharmacy (H.W., Y.I., T.M.), and Department of Gastroenterology and Hepatology, Graduate School of Medical Sciences (M.T., Y.S.), Kumamoto University, Kumamoto, Japan; School of Pharmacy, Faculty of Health Sciences, Curtin Health Innovation Research Institute, Curtin University, Perth, Western Australia, Australia (V.T.G.C.); Faculty of Pharmaceutical Sciences (K.T., M.O.) and DDS Research Institute (M.O.), Sojo University, Kumamoto, Japan; and Department of Immunology and Microbiology, National Defense Medical College, Saitama, Japan (A.I., M.K.)

出版信息

J Pharmacol Exp Ther. 2015 Feb;352(2):244-57. doi: 10.1124/jpet.114.219493. Epub 2014 Nov 14.

Abstract

Since reactive oxygen species (ROS) derived from Kupffer cells (KC), especially CD68(+) KC, play a key role in the induction of hepatic oxidative stress and injuries, we developed a polythiolated- and mannosylated human serum albumin (SH-Man-HSA), which functions as a novel nanoantioxidant for delivering thiol to CD68(+) KC. In vitro electron paramagnetic resonance coupled with pharmacokinetics and immunohistochemical studies showed that SH-Man-HSA possessed powerful radical-scavenging activity and rapidly and selectively delivered thiols to the liver via mannose receptor (CD206) on CD68(+) cells. SH-Man-HSA significantly improved the survival rate of concanavalin-A (Con-A)-treated mice. Moreover, SH-Man-HSA exhibited excellent hepatoprotective functions, not by decreasing tumor necrosis factor or interferon-γ production that is closely associated with Con-A-induced hepatitis, but by suppressing ROS production. Interestingly, the protective effect of SH-Man-HSA was superior to N-acetyl cysteine (NAC). This could be attributed to the difference in the inhibition of hepatic oxidative stress between the two antioxidants depending on their potential for thiol delivery to the liver. Similar results were also observed for acetaminophen (APAP)-induced hepatopathy models. Flow cytometric data further confirmed that an increase in F4/80(+)/ROS(+) cells was dramatically decreased by SH-Man-HSA. The administration of SH-Man-HSA at 4 hours following a Con-A or APAP injection also exhibited a profound hepatoprotective action against these hepatitis models, whereas this was not observed for NAC. It can be concluded therefore that SH-Man-HSA has great potential for use in a rescue therapy for hepatopathy as a nanoantioxidant because of its ability to efficiently and rapidly deliver thiols to CD68(+)/CD206(+) KC.

摘要

由于源自库普弗细胞(KC),尤其是CD68(+)KC的活性氧(ROS)在诱导肝脏氧化应激和损伤中起关键作用,我们开发了一种多硫醇化和甘露糖化的人血清白蛋白(SH-Man-HSA),它作为一种新型纳米抗氧化剂,可将硫醇递送至CD68(+)KC。体外电子顺磁共振结合药代动力学和免疫组化研究表明,SH-Man-HSA具有强大的自由基清除活性,并通过CD68(+)细胞上的甘露糖受体(CD206)迅速且选择性地将硫醇递送至肝脏。SH-Man-HSA显著提高了伴刀豆球蛋白A(Con-A)处理小鼠的存活率。此外,SH-Man-HSA表现出优异的肝脏保护功能,不是通过降低与Con-A诱导的肝炎密切相关的肿瘤坏死因子或干扰素-γ的产生,而是通过抑制ROS的产生。有趣的是,SH-Man-HSA的保护作用优于N-乙酰半胱氨酸(NAC)。这可能归因于两种抗氧化剂在抑制肝脏氧化应激方面的差异,这取决于它们向肝脏递送硫醇的能力。对乙酰氨基酚(APAP)诱导的肝病模型也观察到了类似结果。流式细胞术数据进一步证实,SH-Man-HSA可显著降低F4/80(+)/ROS(+)细胞的增加。在Con-A或APAP注射后4小时给予SH-Man-HSA对这些肝炎模型也表现出显著的肝脏保护作用,而NAC则未观察到这种作用。因此可以得出结论,SH-Man-HSA作为一种纳米抗氧化剂,因其能够有效且迅速地将硫醇递送至CD68(+)/CD206(+)KC,在肝病的抢救治疗中具有巨大的应用潜力。

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