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补体耗竭促进血管内复制条件性单纯疱疹病毒突变体对多种脑肿瘤的感染。

Complement depletion facilitates the infection of multiple brain tumors by an intravascular, replication-conditional herpes simplex virus mutant.

作者信息

Ikeda K, Wakimoto H, Ichikawa T, Jhung S, Hochberg F H, Louis D N, Chiocca E A

机构信息

Molecular Neuro-Oncology Laboratories, Neurosurgery Service, Massachusetts General Hospital, Harvard Medical School, Charlestown, Massachusetts 02129, USA.

出版信息

J Virol. 2000 May;74(10):4765-75. doi: 10.1128/jvi.74.10.4765-4775.2000.

Abstract

Intravascular routes of administration can provide a means to target gene- and virus-based therapies to multiple tumor foci located within an organ, such as the brain. However, we demonstrate here that rodent plasma inhibits cell transduction by replication-conditional (oncolytic) herpes simplex viruses (HSV), replication-defective HSV, and adenovirus vectors. In vitro depletion of complement with mild heat treatment or in vivo depletion by treatment of athymic rats with cobra venom factor (CVF) partially reverses this effect. Without CVF, inhibition of cell infection by HSV is observed at plasma dilution as high as 1:32, while plasma from CVF-treated animals displays anti-HSV activity at lower dilutions (1:8). When applied to the therapy of intracerebral brain tumors, in vivo complement depletion facilitates the initial infection (assayed at the 2-day time point) by an intra-arterial replication-conditional HSV of tumor cells, located within three separate and distinct human glioma masses. However, at the 4-day time point, no propagation of HSV from initially infected tumor cells could be observed. Previously, we have shown that the immunosuppressive agent, cyclophosphamide (CPA), facilitates the in vivo propagation of an oncolytic HSV, delivered intravascularly, within infected multiple intracerebral masses, by inhibition of both innate and elicited anti-HSV neutralizing antibody response (K. Ikeda et al., Nat. Med. 5:881-889, 1999). In this study, we thus show that the addition of CPA to the CVF treatment results in a significant increase in viral propagation within infected tumors, measured at the 4-day time period. The concerted action of CVF and CPA significantly increases the life span of athymic rodents harboring three separate and large glioma xenografts after treatment with intravascular, oncolytic HSV. Southern analysis of viral genomes analyzed by PCR reveals the presence of the oncolytic virus in the brains, livers, spleens, kidneys, and intestine of treated animals, although none of these tissues displays evidence of HSV-mediated gene expression. In light of clinical trials of oncolytic HSV for malignant brain tumors, these findings suggest that antitumor efficacy may be limited by the host innate and elicited humoral responses.

摘要

血管内给药途径可为将基于基因和病毒的疗法靶向至器官(如脑)内的多个肿瘤病灶提供一种手段。然而,我们在此证明,啮齿动物血浆会抑制复制条件性(溶瘤性)单纯疱疹病毒(HSV)、复制缺陷型HSV和腺病毒载体介导的细胞转导。通过温和热处理在体外消耗补体或用眼镜蛇毒因子(CVF)处理无胸腺大鼠在体内消耗补体,可部分逆转这种效应。在没有CVF的情况下,在血浆稀释度高达1:32时仍可观察到HSV对细胞感染的抑制作用,而来自CVF处理动物的血浆在较低稀释度(1:8)时仍显示出抗HSV活性。当应用于脑内肿瘤的治疗时,体内补体消耗可促进动脉内给予的复制条件性HSV对位于三个独立且不同的人胶质瘤肿块内的肿瘤细胞的初始感染(在2天时间点进行检测)。然而,在4天时间点,未观察到HSV从最初感染的肿瘤细胞中传播。此前,我们已经表明,免疫抑制剂环磷酰胺(CPA)通过抑制先天性和诱导性抗HSV中和抗体反应,促进血管内给予的溶瘤性HSV在感染的多个脑内肿块中的体内传播(K. Ikeda等人,《自然医学》5:881 - 889,1999年)。在本研究中,我们因此表明,在CVF治疗中添加CPA会导致在4天时间段内所测的感染肿瘤内病毒传播显著增加。CVF和CPA的协同作用显著延长了用血管内溶瘤性HSV治疗后携带三个独立且大的胶质瘤异种移植物的无胸腺啮齿动物的寿命。通过PCR分析病毒基因组的Southern印迹分析显示,在治疗动物的脑、肝、脾、肾和肠道中存在溶瘤病毒,尽管这些组织均未显示出HSV介导的基因表达的证据。鉴于溶瘤性HSV用于恶性脑肿瘤的临床试验,这些发现表明抗肿瘤疗效可能受到宿主先天性和诱导性体液反应的限制。

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