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首页> 外文期刊>Frontiers in Pediatrics >Killing Two Cells with One Stone: Pharmacologic BCL-2 Family Targeting for Cancer Cell Death and Immune Modulation
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Killing Two Cells with One Stone: Pharmacologic BCL-2 Family Targeting for Cancer Cell Death and Immune Modulation

机译:用一块石头杀死两块细胞:靶向癌细胞死亡和免疫调节的药理性BCL-2家庭

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A crucial component of regulating organismal homeostasis is maintaining proper cell number and eliminating damaged or potentially malignant cells. Apoptosis, or programed cell death, is the mechanism responsible for this equilibrium. The intrinsic apoptotic pathway is also especially important in the development and maintenance of the immune system. Apoptosis is essential for proper positive and negative selection during B- and T-cell development and for efficient contraction of expanded lymphocytes following an immune response. Tight regulation of the apoptotic pathway is critical, as excessive cell death can lead to immunodeficiency while apoptotic resistance can lead to aberrant lymphoproliferation and autoimmune disease. Dysregulation of cell death is implicated in a wide range of hematological malignancies, and targeting various components of the apoptotic machinery in these cases is an attractive chemotherapeutic strategy. A wide array of compounds has been developed with the purpose of reactivating the intrinsic apoptotic pathway. These compounds, termed BH3 mimetics are garnering considerable attention as they gain greater clinical oncologic significance. As their use expands, it will be imperative to understand the effects these compounds have on immune homeostasis. Uncovering their potential immunomodulatory activity may allow for administration of BH3 mimetics for direct tumor cell killing as well as novel therapies for a wide range of immune-based directives. This review will summarize the major proteins involved in the intrinsic apoptotic pathway and define their roles in normal immune development and disease. Clinical and preclinical BH3 mimetics are described within the context of what is currently known about their ability to affect immune function. Prospects for future antitumor immune amplification and immune modulation are then proposed.
机译:调节机体动态平衡的关键组成部分是维持适当的细胞数量并消除受损或潜在的恶性细胞。凋亡或程序性细胞死亡是造成这种平衡的机制。内在的凋亡途径在免疫系统的发育和维持中也特别重要。凋亡对于B细胞和T细胞发育过程中正确的阳性和阴性选择以及免疫反应后有效收缩扩张的淋巴细胞至关重要。凋亡通路的严格调节至关重要,因为过度的细胞死亡可导致免疫缺陷,而凋亡抗性则可导致异常的淋巴细胞增殖和自身免疫性疾病。细胞死亡的失调涉及广泛的血液系统恶性肿瘤,在这些情况下靶向凋亡机制的各个组成部分是一种有吸引力的化学治疗策略。为了激活内在的凋亡途径,已经开发了各种各样的化合物。这些化合物,称为BH3模拟物,因其具有更大的临床肿瘤学意义而备受关注。随着其用途的扩大,必须了解这些化合物对免疫稳态的影响。揭示其潜在的免疫调节活性可允许给予BH3模拟物用于直接杀死肿瘤细胞,以及针对多种基于免疫的指令的新型疗法。这篇综述将总结内在的凋亡途径中涉及的主要蛋白质,并定义它们在正常免疫发育和疾病中的作用。 BH3模拟物和临床前临床模拟物是在目前关于它们影响免疫功能的能力的背景下进行描述的。然后提出了未来抗肿瘤免疫扩增和免疫调节的前景。

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