Literature DB >> 21422517

Tau transgenic mice as models for cerebrospinal fluid tau biomarkers.

Donna M Barten1, Gregory W Cadelina, Nina Hoque, Lynn B DeCarr, Valerie L Guss, Ling Yang, Sethu Sankaranarayanan, Paul D Wes, Marianne E Flynn, Jere E Meredith, Michael K Ahlijanian, Charles F Albright.   

Abstract

Levels of tau in cerebrospinal fluid (CSF) are elevated in Alzheimer's disease (AD) patients. It is believed this elevation is related to the tau pathology and neurodegeneration observed in AD, but not all tauopathies have increased CSF tau. There has been little pre-clinical work to investigate mechanisms of increased CSF tau due to the difficulty in collecting CSF samples from mice, the most commonly used pre-clinical models. We developed methods to collect CSF from mice without contamination from tau in brain tissue, which is approximately 50,000 fold more abundant in brain than CSF. Using these methods, we measured CSF tau from 3xTg, Tg4510, and Tau Alone transgenic mice. All three lines of mice showed age-dependent increases in CSF tau. They varied in phenotype from undetectable to severe tau pathology and neurodegeneration, suggesting that degenerating neurons are unlikely to be the only source of pathologic CSF tau. Overall, CSF tau levels mirrored expression levels and changes of tau in the brain, but they did not always correlate exactly. CSF tau was often more sensitive to changes in brain transgene expression and pathology. In addition, we also developed ELISA assays specific to different regions of the tau protein. We used these assays to provide evidence that CSF tau exists as fragments, with little intact C-terminus and partial loss of the N-terminus. Taken together, these assays and mouse models may be used to facilitate a deeper understanding of CSF tau in neurodegenerative disease.

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Year:  2011        PMID: 21422517     DOI: 10.3233/JAD-2011-110161

Source DB:  PubMed          Journal:  J Alzheimers Dis        ISSN: 1387-2877            Impact factor:   4.472


  42 in total

1.  Hyperdynamic microtubules, cognitive deficits, and pathology are improved in tau transgenic mice with low doses of the microtubule-stabilizing agent BMS-241027.

Authors:  Donna M Barten; Patrizia Fanara; Cathy Andorfer; Nina Hoque; P Y Anne Wong; Kristofor H Husted; Gregory W Cadelina; Lynn B Decarr; Ling Yang; Victoria Liu; Chancy Fessler; Joan Protassio; Timothy Riff; Holly Turner; Christopher G Janus; Sethu Sankaranarayanan; Craig Polson; Jere E Meredith; Gemma Gray; Amanda Hanna; Richard E Olson; Soong-Hoon Kim; Gregory D Vite; Francis Y Lee; Charles F Albright
Journal:  J Neurosci       Date:  2012-05-23       Impact factor: 6.167

2.  Sensitive quantitative assays for tau and phospho-tau in transgenic mouse models.

Authors:  Christopher M Acker; Stefanie K Forest; Ray Zinkowski; Peter Davies; Cristina d'Abramo
Journal:  Neurobiol Aging       Date:  2012-06-21       Impact factor: 4.673

3.  Tau reduction in the presence of amyloid-β prevents tau pathology and neuronal death in vivo.

Authors:  Sarah L DeVos; Bianca T Corjuc; Caitlin Commins; Simon Dujardin; Riley N Bannon; Diana Corjuc; Benjamin D Moore; Rachel E Bennett; Mehdi Jorfi; Jose A Gonzales; Patrick M Dooley; Allyson D Roe; Rose Pitstick; Daniel Irimia; Matthew P Frosch; George A Carlson; Bradley T Hyman
Journal:  Brain       Date:  2018-07-01       Impact factor: 13.501

4.  Tau Antibody Targeting Pathological Species Blocks Neuronal Uptake and Interneuron Propagation of Tau in Vitro.

Authors:  Chloe K Nobuhara; Sarah L DeVos; Caitlin Commins; Susanne Wegmann; Benjamin D Moore; Allyson D Roe; Isabel Costantino; Matthew P Frosch; Rose Pitstick; George A Carlson; Christoph Hock; Roger M Nitsch; Fabio Montrasio; Jan Grimm; Anne E Cheung; Anthone W Dunah; Marion Wittmann; Thierry Bussiere; Paul H Weinreb; Bradley T Hyman; Shuko Takeda
Journal:  Am J Pathol       Date:  2017-04-11       Impact factor: 4.307

5.  Seed-competent high-molecular-weight tau species accumulates in the cerebrospinal fluid of Alzheimer's disease mouse model and human patients.

Authors:  Shuko Takeda; Caitlin Commins; Sarah L DeVos; Chloe K Nobuhara; Susanne Wegmann; Allyson D Roe; Isabel Costantino; Zhanyun Fan; Samantha B Nicholls; Alexis E Sherman; Ana T Trisini Lipsanopoulos; Clemens R Scherzer; George A Carlson; Rose Pitstick; Elaine R Peskind; Murray A Raskind; Ge Li; Thomas J Montine; Matthew P Frosch; Bradley T Hyman
Journal:  Ann Neurol       Date:  2016-08-03       Impact factor: 10.422

6.  Propagation of tau pathology in a model of early Alzheimer's disease.

Authors:  Alix de Calignon; Manuela Polydoro; Marc Suárez-Calvet; Christopher William; David H Adamowicz; Kathy J Kopeikina; Rose Pitstick; Naruhiko Sahara; Karen H Ashe; George A Carlson; Tara L Spires-Jones; Bradley T Hyman
Journal:  Neuron       Date:  2012-02-23       Impact factor: 17.173

7.  A Quantitative Analysis of Brain Soluble Tau and the Tau Secretion Factor.

Authors:  Pengcheng Han; Geidy Serrano; Thomas G Beach; Richard J Caselli; Junxiang Yin; Ningning Zhuang; Jiong Shi
Journal:  J Neuropathol Exp Neurol       Date:  2017-01-01       Impact factor: 3.685

Review 8.  A critical appraisal of the pathogenic protein spread hypothesis of neurodegeneration.

Authors:  Dominic M Walsh; Dennis J Selkoe
Journal:  Nat Rev Neurosci       Date:  2016-04       Impact factor: 34.870

9.  Antisense reduction of tau in adult mice protects against seizures.

Authors:  Sarah L DeVos; Dustin K Goncharoff; Guo Chen; Carey S Kebodeaux; Kaoru Yamada; Floy R Stewart; Dorothy R Schuler; Susan E Maloney; David F Wozniak; Frank Rigo; C Frank Bennett; John R Cirrito; David M Holtzman; Timothy M Miller
Journal:  J Neurosci       Date:  2013-07-31       Impact factor: 6.167

10.  Proteins recruited to exosomes by tau overexpression implicate novel cellular mechanisms linking tau secretion with Alzheimer's disease.

Authors:  Sudad Saman; Norman C Y Lee; Itoro Inoyo; Jun Jin; Zhihan Li; Thomas Doyle; Ann C McKee; Garth F Hall
Journal:  J Alzheimers Dis       Date:  2014       Impact factor: 4.472

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