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以及小鼠第三补体成分(C3)调理作用和巨噬细胞/白细胞对抗体功能化氧化铁纳米蠕虫反应的差异。

and Differences in Murine Third Complement Component (C3) Opsonization and Macrophage/Leukocyte Responses to Antibody-Functionalized Iron Oxide Nanoworms.

作者信息

Wang Guankui, Griffin James I, Inturi Swetha, Brenneman Barbara, Banda Nirmal K, Holers V Michael, Moghimi Seyed Moein, Simberg Dmitri

机构信息

The Skaggs School of Pharmacy and Pharmaceutical Sciences, University of Colorado Denver, Anschutz Medical Campus , Aurora, CO , USA.

Division of Rheumatology, School of Medicine, University of Colorado Denver, Anschutz Medical Campus , Aurora, CO , USA.

出版信息

Front Immunol. 2017 Feb 15;8:151. doi: 10.3389/fimmu.2017.00151. eCollection 2017.

Abstract

Balancing surface functionalization and low immune recognition of nanomedicines is a major challenge. Opsonization with the third component of the complement protein (C3) plays a major role in immune cell recognition of nanomedicines. We used dextran-coated superparamagnetic iron oxide nanoworms (SPIO NWs) to study the effect of surface functionalization on C3 opsonization in mouse serum and subsequent macrophage/leukocyte recognition as well as on intravenous injection into mice. Previously, we found that in mouse serum, SPIO NWs became opsonized with C3 complement lectin pathway. Crosslinking the dextran shell with epichlorohydrin significantly decreased C3 opsonization and uptake by mouse peritoneal macrophages. Crosslinked nanoworms (NWs) further functionalized with polyethylene glycol (PEG) or with PEG-antibody (Ab) (~160 IgG molecules/particle) did not show an increase in C3 opsonization and peritoneal macrophage uptake . Following tail vein injection into mice, plain crosslinked NWs and PEGylated crosslinked NWs showed very low C3 opsonization and mouse leukocyte uptake. However, Ab-decorated crosslinked NWs showed significant C3 opsonization and high level of complement-dependent uptake by leukocytes in mice. Decreasing the number of conjugated Abs to 46 IgG molecules/particle significantly reduced C3 opsonization and leukocyte uptake. Using fresh mouse lepirudin plasma rather than serum showed better correlation with C3 opsonization . The reason for this difference could be related to the known instability of complement classical pathway in mouse sera. Our data illustrate that fine-tuning in nanoparticle surface functionalization with Abs is required to avoid excessive complement activation and complement-mediated immune uptake in mice, and raise issues with immunological assays of nanomedicines intended to mimic conditions.

摘要

平衡纳米药物的表面功能化与低免疫识别是一项重大挑战。补体蛋白第三成分(C3)的调理作用在纳米药物的免疫细胞识别中起主要作用。我们使用葡聚糖包被的超顺磁性氧化铁纳米蠕虫(SPIO NWs)来研究表面功能化对小鼠血清中C3调理作用以及随后巨噬细胞/白细胞识别的影响,以及对小鼠静脉注射的影响。此前,我们发现,在小鼠血清中,SPIO NWs通过C3补体凝集素途径被调理。用环氧氯丙烷交联葡聚糖外壳可显著降低C3调理作用以及小鼠腹膜巨噬细胞的摄取。用聚乙二醇(PEG)或PEG - 抗体(Ab)(~160个IgG分子/颗粒)进一步功能化的交联纳米蠕虫(NWs)未显示C3调理作用和腹膜巨噬细胞摄取增加。尾静脉注射到小鼠体内后,普通交联NWs和聚乙二醇化交联NWs显示出非常低的C3调理作用和小鼠白细胞摄取。然而,抗体修饰的交联NWs显示出显著的C3调理作用以及小鼠白细胞通过补体依赖性摄取的高水平。将偶联抗体的数量减少到46个IgG分子/颗粒可显著降低C3调理作用和白细胞摄取。使用新鲜的小鼠水蛭素血浆而非血清与C3调理作用显示出更好的相关性。这种差异的原因可能与小鼠血清中补体经典途径已知的不稳定性有关。我们的数据表明,需要对纳米颗粒与抗体的表面功能化进行微调,以避免小鼠体内过度的补体激活和补体介导的免疫摄取,并引发了旨在模拟条件的纳米药物免疫测定的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fec/5309246/b2cdb1cc2b52/fimmu-08-00151-g001.jpg

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