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过氧化氢酶的PECAM导向免疫靶向:针对过氧化氢的特异性、快速和短暂保护。

PECAM-directed immunotargeting of catalase: specific, rapid and transient protection against hydrogen peroxide.

作者信息

Sweitzer Thomas D, Thomas Anu P, Wiewrodt Rainer, Nakada Marian T, Branco Francisco, Muzykantov Vladimir R

机构信息

Institute of Environmental Medicine, University of Pennsylvania Medical Center, Philadelphia, PA 19104-6068, USA.

出版信息

Free Radic Biol Med. 2003 Apr 15;34(8):1035-46. doi: 10.1016/s0891-5849(03)00029-7.

Abstract

Vascular immunotargeting to Platelet-Endothelial Cell Adhesion Molecule-1 (PECAM) facilitates drug delivery to endothelium. We used human PECAM-transfected REN cells (REN/PECAM) as a model to compare targeting of antioxidant enzyme catalase conjugated with PECAM antibody (anti-PECAM/catalase) with adenoviral catalase delivery. Anti-PECAM/(125)I-catalase bound to REN/PECAM, but not to REN cells (70 vs. 1 ng/well vs. < 2 ng/well of unmodified catalase). At a virus-to-cell ratio of 1, elevated levels of catalase protein were detected by immunoblotting after adenoviral transfection of REN/PECAM and REN cells alike; H(2)O(2)-degrading activity of cell lysates was elevated at ratios of 10 and higher. REN/PECAM cells internalize 66% of cell-bound anti-PECAM/(125)I-catalase. Confocal microscopy localized anti-PECAM/catalase to intracellular vesicles, while catalase expressed by adenovirus was distributed in vesicles and throughout the cytosol. Within 15 min of delivery, anti-PECAM/catalase augmented H(2)O(2)-degrading activity and survival of H(2)O(2)-exposed REN/PECAM cells. The effects of conjugate delivery reached a plateau within 1 h and declined to the basal level within 12 h. In contrast, adenoviral delivery required several hours for transduction and development of the effects, but permitted much longer duration of protection (at least 48 h). Simultaneous exposure of REN/PECAM cells to anti-PECAM/catalase and catalase-encoding adenovirus afforded protection against H(2)O(2) with a rapid onset and a prolonged duration. Therefore, PECAM-directed immunotargeting provides a specific, antigen-directed intracellular delivery of catalase that affords a rapid but transient protection against H(2)O(2) and may complement gene delivery strategies for antioxidant protection.

摘要

血管免疫靶向血小板内皮细胞黏附分子-1(PECAM)有助于药物向内皮细胞递送。我们使用人PECAM转染的REN细胞(REN/PECAM)作为模型,比较与PECAM抗体偶联的抗氧化酶过氧化氢酶(抗PECAM/过氧化氢酶)靶向递送与腺病毒介导的过氧化氢酶递送。抗PECAM/(125)I-过氧化氢酶与REN/PECAM结合,但不与REN细胞结合(分别为70 ng/孔和1 ng/孔,而未修饰的过氧化氢酶<2 ng/孔)。在病毒与细胞比例为1时,对REN/PECAM和REN细胞进行腺病毒转染后,通过免疫印迹检测到过氧化氢酶蛋白水平升高;细胞裂解物的H(2)O(2)降解活性在比例为10及更高时升高。REN/PECAM细胞内化66%的细胞结合抗PECAM/(125)I-过氧化氢酶。共聚焦显微镜显示抗PECAM/过氧化氢酶定位于细胞内小泡,而腺病毒表达的过氧化氢酶分布于小泡和整个细胞质中。在递送后15分钟内,抗PECAM/过氧化氢酶增强了H(2)O(2)暴露的REN/PECAM细胞的H(2)O(2)降解活性和存活率。偶联物递送的效果在l小时内达到平台期,并在12小时内降至基础水平。相比之下,腺病毒递送需要数小时进行转导并产生效果,但保护持续时间更长(至少48小时)。REN/PECAM细胞同时暴露于抗PECAM/过氧化氢酶和编码过氧化氢酶的腺病毒可提供针对H(2)O(2)的保护,起效迅速且持续时间延长。因此,PECAM导向的免疫靶向提供了一种特异性的、抗原导向的过氧化氢酶细胞内递送,可提供针对H(2)O(2)的快速但短暂的保护,并可能补充抗氧化保护的基因递送策略。

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