Paul Bence, Hare Dominic J, Bishop David P, Paton Chad, Nguyen Van Tran, Cole Nerida, Niedwiecki Megan M, Andreozzi Erica, Vais Angela, Billings Jessica L, Bray Lisa, Bush Ashley I, McColl Gawain, Roberts Blaine R, Adlard Paul A, Finkelstein David I, Hellstrom John, Hergt Janet M, Woodhead Jon D, Doble Philip A
School of Earth Sciences , The University of Melbourne , Parkville , Victoria 3052 , Australia.
The Florey Institute of Neuroscience and Mental Health , The University of Melbourne , Parkville , 3052 , Victoria , Australia.
Chem Sci. 2015 Oct 1;6(10):5383-5393. doi: 10.1039/c5sc02231b. Epub 2015 Jul 27.
Metals have a number of important roles within the brain. We used laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) to map the three-dimensional concentrations and distributions of transition metals, in particular iron (Fe), copper (Cu) and zinc (Zn) within the murine brain. LA-ICP-MS is one of the leading analytical tools for measuring metals in tissue samples. Here, we present a complete data reduction protocol for measuring metals in biological samples, including the application of a pyramidal voxel registration technique to reproducibly align tissue sections. We used gold (Au) nanoparticle and ytterbium (Yb)-tagged tyrosine hydroxylase antibodies to assess the co-localisation of Fe and dopamine throughout the entire mouse brain. We also examined the natural clustering of metal concentrations within the murine brain to elucidate areas of similar composition. This clustering technique uses a mathematical approach to identify multiple 'elemental clusters', avoiding user bias and showing that metal composition follows a hierarchical organisation of neuroanatomical structures. This work provides new insight into the distinct compartmentalisation of metals in the brain, and presents new avenues of exploration with regard to region-specific, metal-associated neurodegeneration observed in several chronic neurodegenerative diseases.
金属在大脑中发挥着许多重要作用。我们使用激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)来绘制小鼠大脑中过渡金属,特别是铁(Fe)、铜(Cu)和锌(Zn)的三维浓度和分布情况。LA-ICP-MS是测量组织样本中金属的主要分析工具之一。在此,我们展示了一种用于测量生物样本中金属的完整数据处理方案,包括应用金字塔体素配准技术来可重复地对齐组织切片。我们使用金(Au)纳米颗粒和镱(Yb)标记的酪氨酸羟化酶抗体来评估铁和多巴胺在整个小鼠大脑中的共定位情况。我们还研究了小鼠大脑中金属浓度的自然聚类,以阐明组成相似的区域。这种聚类技术采用数学方法来识别多个“元素簇”,避免了用户偏见,并表明金属组成遵循神经解剖结构的层次组织。这项工作为大脑中金属的独特分区提供了新的见解,并为在几种慢性神经退行性疾病中观察到的区域特异性、与金属相关的神经退行性变提供了新的探索途径。