首页> 美国卫生研究院文献>The Journal of Neuroscience >Glutamate Receptors in the Central Nucleus of the Amygdala Mediate Cisplatin-Induced Malaise and Energy Balance Dysregulation through Direct Hindbrain Projections
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Glutamate Receptors in the Central Nucleus of the Amygdala Mediate Cisplatin-Induced Malaise and Energy Balance Dysregulation through Direct Hindbrain Projections

机译:杏仁核中央核中的谷氨酸受体通过直接后脑投射介导顺铂诱导的不适和能量平衡失调。

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摘要

Cisplatin chemotherapy is used commonly to treat a variety of cancers despite severe side effects such as nausea, vomiting, and anorexia that compromise quality of life and limit treatment adherence. The neural mechanisms mediating these side effects remain elusive despite decades of clinical use. Recent data highlight the dorsal vagal complex (DVC), lateral parabrachial nucleus (lPBN), and central nucleus of the amygdala (CeA) as potential sites of action in mediating the side effects of cisplatin. Here, results from immunohistochemical studies in rats identified a population of cisplatin-activated DVC neurons that project to the lPBN and a population of cisplatin-activated lPBN calcitonin gene-related peptide (CGRP, a marker for glutamatergic neurons in the lPBN) neurons that project to the CeA, outlining a neuroanatomical circuit that is activated by cisplatin. CeA gene expressions of AMPA and NMDA glutamate receptor subunits were markedly increased after cisplatin treatment, suggesting that CeA glutamate receptor signaling plays a role in mediating cisplatin side effects. Consistent with gene expression results, behavioral/pharmacological data showed that CeA AMPA/kainate receptor blockade attenuates cisplatin-induced pica (a proxy for nausea/behavioral malaise in nonvomiting laboratory rodents) and that CeA NMDA receptor blockade attenuates cisplatin-induced anorexia and body weight loss in addition to pica, demonstrating that glutamate receptor signaling in the CeA is critical for the energy balance dysregulation caused by cisplatin treatment. Together, these data highlight a novel circuit and CGRP/glutamatergic mechanism through which cisplatin-induced malaise and energy balance dysregulation are mediated.>SIGNIFICANCE STATEMENT To treat cancer effectively, patients must follow prescribed chemotherapy treatments without interruption, yet most cancer treatments produce side effects that devastate quality of life (e.g., nausea, vomiting, anorexia, weight loss). Although hundreds of thousands of patients undergo chemotherapies each year, the neural mechanisms mediating their side effects are unknown. The current data outline a neural circuit activated by cisplatin chemotherapy and demonstrate that glutamate signaling in the amygdala, arising from hindbrain projections, is required for the full expression of cisplatin-induced malaise, anorexia, and body weight loss. Together, these data help to characterize the neural circuits and neurotransmitters mediating chemotherapy-induced energy balance dysregulation, which will ultimately provide an opportunity for the development of well tolerated cancer and anti-emetic treatments.
机译:尽管严重的副作用(例如恶心,呕吐和厌食症会损害生活质量并限制治疗依从性),但顺铂化疗通常用于治疗多种癌症。尽管数十年的临床使用,介导这些副作用的神经机制仍然难以捉摸。最近的数据突出了背迷走神经复合体(DVC),臂外侧臂旁核(lPBN)和杏仁核的中央核(CeA)作为介导顺铂副作用的潜在作用部位。在这里,来自大鼠免疫组织化学研究的结果确定了投射到lPBN的顺铂激活的DVC神经元群体和投射到lPBN的顺铂激活的lPBN降钙素基因相关肽(CGRP,谷氨酸能神经元的标志物)群体。到CeA,概述了由顺铂激活的神经解剖电路。顺铂处理后,AMPA和NMDA谷氨酸受体亚基的CeA基因表达显着增加,表明CeA谷氨酸受体信号传导在介导顺铂副作用中起作用。行为/药理学数据与基因表达结果一致,行为/药理学数据表明,CeA AMPA /海藻酸酯受体阻滞剂减轻顺铂诱导的皮卡(无呕吐实验鼠的恶心/行为不适),并且CeA NMDA受体阻滞剂减轻顺铂引起的厌食和体重。除了皮卡之外的其他损失,证明CeA中的谷氨酸受体信号传导对于顺铂治疗引起的能量平衡失调至关重要。这些数据共同突出了介导顺铂引起的不适和能量平衡失调的新型电路和CGRP /谷氨酸能机制。>意义声明要有效治疗癌症,患者必须遵循规定的化学疗法治疗而不能中断大多数癌症疗法都会产生破坏生活质量的副作用(例如,恶心,呕吐,厌食,体重减轻)。尽管每年有成千上万的患者接受化学疗法,但介导其副作用的神经机制尚不清楚。当前数据概述了由顺铂化疗激活的神经回路,并证明杏仁核中由后脑投射引起的谷氨酸信号是顺铂诱导的不适,厌食症和体重减轻的充分表达所必需的。总之,这些数据有助于表征介导化学疗法诱导的能量平衡失调的神经回路和神经递质,最终将为开发耐受性良好的癌症和止吐疗法提供机会。

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