肿瘤坏死因子- α靶向治疗癌症

W. Cai, Zachary J. Kerner, H. Hong, Jiangtao Sun
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引用次数: 32

摘要

肿瘤坏死因子-α (TNF-α)是TNF超家族的一员,是第一个被评估用于癌症生物治疗的细胞因子。然而,TNF-α的临床应用因其毒性而受到严重限制。目前,TNF-α仅通过局部给药系统给药,如离体肢体灌注和离体肝脏灌注。为了降低TNF-α的全身毒性,在过去的几十年里已经探索了各种策略。本文综述了目前使用TNF-α靶向治疗癌症的最新进展。被动靶向、基于细胞的治疗、诱导或组织特异性启动子的基因治疗、靶向聚合物- dna复合物、肿瘤预靶向、抗体-TNF-α偶联物、scFv/TNF-α融合蛋白和肽/TNF-α融合蛋白都已被研究用于对抗癌症。其中许多药物已经进入了高级临床试验阶段。分子成像技术可以大大加快药物开发过程,而纳米医学可以将成像和治疗结合起来,有可能彻底改变未来的癌症患者管理。需要来自多个学科的科学家的合作努力,以及许多组织/实体之间的密切伙伴关系,才能将新的基于TNF-α的治疗方法快速转化为临床研究。
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Targeted Cancer Therapy with Tumor Necrosis Factor-Alpha
Tumor necrosis factor-alpha (TNF-α), a member of the TNF superfamily, was the first cytokine to be evaluated for cancer biotherapy. However, the clinical use of TNF-α is severely limited by its toxicity. Currently, TNF-α is administered only through locoregional drug delivery systems such as isolated limb perfusion and isolated hepatic perfusion. To reduce the systemic toxicity of TNF-α, various strategies have been explored over the last several decades. This review summarizes current state-of-the-art targeted cancer therapy using TNF-α. Passive targeting, cell-based therapy, gene therapy with inducible or tissue-specific promoters, targeted polymer-DNA complexes, tumor pre-targeting, antibody-TNF-α conjugate, scFv/TNF-α fusion proteins, and peptide/TNF-α fusion proteins have all been investigated to combat cancer. Many of these agents are already in advanced clinical trials. Molecular imaging, which can significantly speed up the drug development process, and nanomedicine, which can integrate both imaging and therapeutic components, has the potential to revolutionize future cancer patient management. Cooperative efforts from scientists within multiple disciplines, as well as close partnerships among many organizations/entities, are needed to quickly translate novel TNF-α-based therapeutics into clinical investigation.
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Biochemistry Insights
Biochemistry Insights BIOCHEMISTRY & MOLECULAR BIOLOGY-
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