Literature DB >> 23168745

Regional specificity of manganese accumulation and clearance in the mouse brain: implications for manganese-enhanced MRI.

B Grünecker1, S F Kaltwasser, A C Zappe, B T Bedenk, Y Bicker, V I Spoormaker, C T Wotjak, M Czisch.   

Abstract

Manganese-enhanced MRI has recently become a valuable tool for the assessment of in vivo functional cerebral activity in animal models. As a result of the toxicity of manganese at higher dosages, fractionated application schemes have been proposed to reduce the toxic side effects by using lower concentrations per injection. Here, we present data on regional-specific manganese accumulation during a fractionated application scheme over 8 days of 30 mg/kg MnCl2 , as well as on the clearance of manganese chloride over the course of several weeks after the termination of the whole application protocol supplying an accumulative dose of 240 mg/kg MnCl2 . Our data show most rapid accumulation in the superior and inferior colliculi, amygdala, bed nucleus of the stria terminalis, cornu ammonis of the hippocampus and globus pallidus. The data suggest that no ceiling effects occur in any region using the proposed application protocol. Therefore, a comparison of basal neuronal activity differences in different animal groups based on locally specific manganese accumulation is possible using fractionated application. Half-life times of manganese clearance varied between 5 and 7 days, and were longest in the periaqueductal gray, amygdala and entorhinal cortex. As the hippocampal formation shows one of the highest T1 -weighted signal intensities after manganese application, and manganese-induced memory impairment has been suggested, we assessed hippocampus-dependent learning as well as possible manganese-induced atrophy of the hippocampal volume. No interference of manganese application on learning was detected after 4 days of Mn(2+) application or 2 weeks after the application protocol. In addition, no volumetric changes induced by manganese application were found for the hippocampus at any of the measured time points. For longitudinal measurements (i.e. repeated manganese applications), a minimum of at least 8 weeks should be considered using the proposed protocol to allow for sufficient clearance of the paramagnetic ion from cerebral tissue.
Copyright © 2012 John Wiley & Sons, Ltd.

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Year:  2012        PMID: 23168745     DOI: 10.1002/nbm.2891

Source DB:  PubMed          Journal:  NMR Biomed        ISSN: 0952-3480            Impact factor:   4.044


  13 in total

1.  X-ray fluorescence imaging of the hippocampal formation after manganese exposure.

Authors:  Gregory Robison; Taisiya Zakharova; Sherleen Fu; Wendy Jiang; Rachael Fulper; Raul Barrea; Wei Zheng; Yulia Pushkar
Journal:  Metallomics       Date:  2013-11       Impact factor: 4.526

2.  A comparative analysis of mouse and human medial geniculate nucleus connectivity: a DTI and anterograde tracing study.

Authors:  Orion P Keifer; David A Gutman; Erin E Hecht; Shella D Keilholz; Kerry J Ressler
Journal:  Neuroimage       Date:  2014-10-23       Impact factor: 6.556

Review 3.  Manganese-Enhanced Magnetic Resonance Imaging for Detection of Vasoactive Intestinal Peptide Receptor 2 Agonist Therapy in a Model of Parkinson's Disease.

Authors:  Katherine E Olson; Aditya N Bade; Charles R Schutt; Jingdong Dong; Scott J Shandler; Michael D Boska; R Lee Mosley; Howard E Gendelman; Yutong Liu
Journal:  Neurotherapeutics       Date:  2016-07       Impact factor: 7.620

4.  Development of manganese-enhanced magnetic resonance imaging of the rostral ventrolateral medulla of conscious rats: Importance of normalization and comparison with other regions of interest.

Authors:  Daniel J Huereca; Konstandinos A Bakoulas; Farhad Ghoddoussi; Bruce A Berkowitz; Avril Genene Holt; Patrick J Mueller
Journal:  NMR Biomed       Date:  2018-01-12       Impact factor: 4.044

Review 5.  Manganese Toxicity Upon Overexposure: a Decade in Review.

Authors:  Stefanie L O'Neal; Wei Zheng
Journal:  Curr Environ Health Rep       Date:  2015-09

6.  Hippocampus-dependent place learning enables spatial flexibility in C57BL6/N mice.

Authors:  Karl R Kleinknecht; Benedikt T Bedenk; Sebastian F Kaltwasser; Barbara Grünecker; Yi-Chun Yen; Michael Czisch; Carsten T Wotjak
Journal:  Front Behav Neurosci       Date:  2012-12-27       Impact factor: 3.558

7.  Pallidal index as biomarker of manganese brain accumulation and associated with manganese levels in blood: a meta-analysis.

Authors:  Shao-Jun Li; Li Jiang; Xue Fu; Shuang Huang; Yan-Ni Huang; Xiang-Rong Li; Jing-Wen Chen; Yong Li; Hai-Lan Luo; Fang Wang; Shi-Yan Ou; Yue-Ming Jiang
Journal:  PLoS One       Date:  2014-04-09       Impact factor: 3.240

8.  Association of Serum Manganese Levels with  Alzheimer's Disease and Mild Cognitive Impairment:  A Systematic Review and Meta-Analysis.

Authors:  Ke Du; Mingyan Liu; Yanzhu Pan; Xin Zhong; Minjie Wei
Journal:  Nutrients       Date:  2017-03-03       Impact factor: 5.717

Review 9.  Manganese-Enhanced MRI: Biological Applications in Neuroscience.

Authors:  Jackeline Moraes Malheiros; Fernando Fernandes Paiva; Beatriz Monteiro Longo; Clement Hamani; Luciene Covolan
Journal:  Front Neurol       Date:  2015-07-10       Impact factor: 4.003

10.  Spatial learning and memory impairments are associated with increased neuronal activity in 5XFAD mouse as measured by manganese-enhanced magnetic resonance imaging.

Authors:  Xiang Tang; Di Wu; Li-Hua Gu; Bin-Bin Nie; Xin-Yang Qi; Yan-Juan Wang; Fang-Fang Wu; Xiao-Li Li; Feng Bai; Xiao-Chun Chen; Lin Xu; Qing-Guo Ren; Zhi-Jun Zhang
Journal:  Oncotarget       Date:  2016-09-06
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