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Neurotoxic Effects of Platinum Compounds: Studies in vivo on Intracellular Calcium Homeostasis in the Immature Central Nervous System

机译:铂类化合物的神经毒性作用:未成熟中枢神经系统中细胞内钙稳态的体内研究

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Platinum compounds cause significant clinical neurotoxicity. Several studies highlight neurological complications especially in paediatric oncology patients with Central Nervous System (CNS) and non-CNS malignancies. To understand the toxicity mechanisms of platinum drugs at cellular and molecular levels in the immature brain, which appears more vulnerable to injury than in the adult one, we compared the effects in vivo of the most used platinum compounds, i.e., cisdichlorodiammineplatinum (cisplatin, cisPt), and the new [Pt(O,O′-acac)(γ-acac)(DMS)] (PtAcacDMS). As models of developing brain areas, we have chosen the cerebellum and hippocampus dentate gyrus. Both areas show the neurogenesis events, from proliferation to differentiation and synaptogenesis, and therefore allow comparing the action of platinum compounds with DNA and non-DNA targets. Here, we focused on the changes in the intracellular calcium homeostasis within CNS architecture, using two immunohistochemical markers, the calcium buffer protein Calbindin and Plasma Membrane Calcium ATPase. From the comparison of the cisPt and PtAcacDMS effects, it emerges how essential the equilibrium and synergy between CB and PMCA1 is or how important the presence of at least one of them is to warrant the morphology and function of nervous tissue and limit neuroarchitecture damages, depending on the peculiar and intrinsic properties of the developing CNS areas.
机译:铂化合物会引起严重的临床神经毒性。几项研究突出了神经系统并发症,尤其是在患有中枢神经系统(CNS)和非CNS恶性肿瘤的小儿肿瘤患者中。为了了解未成年人大脑中铂类药物在细胞和分子水平上的毒性机制,这种机制似乎比成年人更容易受到伤害,我们比较了最常用的铂化合物即顺二氯二氨铂(顺铂,顺铂)在体内的作用。 )和新的[Pt(O,O'-acac)(γ-acac)(DMS)](PtAcacDMS)。作为发展大脑区域的模型,我们选择了小脑和海马齿状回。这两个区域都显示出从增殖到分化和突触形成的神经发生事件,因此可以比较铂化合物与DNA和非DNA靶标的作用。在这里,我们集中在中枢神经系统架构内的细胞内钙稳态的变化,使用两个免疫组织化学标记,钙缓冲蛋白钙结合蛋白和血浆膜钙ATP酶。通过比较cisPt和PtAcacDMS的作用,可以看出CB和PMCA1之间的平衡和协同作用多么重要,或者其中至少一种的存在对于保证神经组织的形态和功能并限制神经体系结构的损害有多重要,具体取决于发展中的中枢神经系统地区的独特和内在特性。

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