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涉及 PPARβ/δ 诱导神经元分化的信号转导通路。

Signal transduction pathways involved in PPARβ/δ-induced neuronal differentiation.

机构信息

Department of Basic and Applied Biology, University of L'Aquila, Italy.

出版信息

J Cell Physiol. 2011 Aug;226(8):2170-80. doi: 10.1002/jcp.22552.

Abstract

Neuroblastomas are pediatric tumors originating from neuroblasts in the developing peripheral nervous system. The neurotrophin brain-derived neurotrophic factor (BDNF) is a key regulator of survival and differentiation of specific neuronal populations in the central and peripheral nervous system. Patients whose neuroblastoma tumors express high levels of BDNF and TrkB have an unfavorable prognosis. We have previously reported on the neuronal differentiating activity of peroxisome proliferator-activated receptors (PPAR)β/δ natural and synthetic ligands by modulating BDNF/TrkB pathway, suggesting their potential use as new therapeutic strategies for neuroblastoma. The validation of new therapeutic agents implies the understanding of their mechanisms of action. Herein, we report the effects of activated-PPARβ/δ on signal transduction pathways known to be involved in neuronal differentiation, such as ERK1,2 and BDNF pathways. The results obtained, using also PPARβ/δ silencing, indicating a neuronal differentiating effect PPARβ/δ-dependent through BDNF-P75-ERK1,2 pathways, further support a role for PPARβ/δ in neuronal differentiation and pointing towards PPARβ/δ as a modulator of pathways crucial for neuronal differentiation. These findings open new perspectives in the formulation of potential therapeutic approaches to be used as adjuvant treatment with the standard therapies.

摘要

神经母细胞瘤是起源于发育中周围神经系统神经母细胞的小儿肿瘤。神经营养因子脑源性神经营养因子(BDNF)是中枢和周围神经系统中特定神经元群体存活和分化的关键调节因子。BDNF 和 TrkB 表达水平高的神经母细胞瘤患者预后不良。我们之前曾报道过过氧化物酶体增殖物激活受体(PPAR)β/δ天然和合成配体通过调节 BDNF/TrkB 通路具有神经元分化活性,提示它们可能作为神经母细胞瘤的新治疗策略。新治疗药物的验证意味着需要了解其作用机制。在此,我们报告了激活的 PPARβ/δ对已知参与神经元分化的信号转导通路(如 ERK1、2 和 BDNF 通路)的影响。使用 PPARβ/δ 沉默的结果表明,通过 BDNF-P75-ERK1、2 通路依赖于 PPARβ/δ 的神经元分化作用,进一步支持了 PPARβ/δ 在神经元分化中的作用,并指出 PPARβ/δ 是神经元分化关键途径的调节剂。这些发现为制定潜在的治疗方法开辟了新的前景,可作为标准治疗的辅助治疗。

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