The Potential of Induced Pluripotent Stem Cells to Treat and Model Alzheimer's Disease

被引:4
作者
Schulz, Joseph M. [1 ]
机构
[1] Univ Cent Florida, Coll Med, Burnett Sch Biomed Sci, Orlando, FL 32816 USA
关键词
AMYLOID-PRECURSOR-PROTEIN; RETROVIRUS-MEDIATED TRANSDUCTION; MICROGLIAL PHAGOCYTOSIS; GENOMIC INSTABILITY; TAU-PROTEIN; A-BETA; NEURODEGENERATIVE DISEASE; FRONTOTEMPORAL DEMENTIA; EPIGENETIC VARIATIONS; TRANSCRIPTION FACTOR;
D O I
10.1155/2021/5511630
中图分类号
Q813 [细胞工程];
学科分类号
摘要
An estimated 6.2 million Americans aged 65 or older are currently living with Alzheimer's disease (AD), a neurodegenerative disease that disrupts an individual's ability to function independently through the degeneration of key regions in the brain, including but not limited to the hippocampus, the prefrontal cortex, and the motor cortex. The cause of this degeneration is not known, but research has found two proteins that undergo posttranslational modifications: tau, a protein concentrated in the axons of neurons, and amyloid precursor protein (APP), a protein concentrated near the synapse. Through mechanisms that have yet to be elucidated, the accumulation of these two proteins in their abnormal aggregate forms leads to the neurodegeneration that is characteristic of AD. Until the invention of induced pluripotent stem cells (iPSCs) in 2006, the bulk of research was carried out using transgenic animal models that offered little promise in their ability to translate well from benchtop to bedside, creating a bottleneck in the development of therapeutics. However, with iPSC, patient-specific cell cultures can be utilized to create models based on human cells. These human cells have the potential to avoid issues in translatability that have plagued animal models by providing researchers with a model that closely resembles and mimics the neurons found in humans. By using human iPSC technology, researchers can create more accurate models of AD ex vivo while also focusing on regenerative medicine using iPSC in vivo. The following review focuses on the current uses of iPSC and how they have the potential to regenerate damaged neuronal tissue, in the hopes that these technologies can assist in getting through the bottleneck of AD therapeutic research.
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页数:16
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共 194 条
[71]   Different developmental potential of pluripotent stem cells generated by different reprogramming strategies [J].
Jiang, Jing ;
Ding, Guohui ;
Lin, Jiangwei ;
Zhang, Man ;
Shi, Linyu ;
Lv, Wenjian ;
Yang, Hui ;
Xiao, Huasheng ;
Pei, Gang ;
Li, Yixue ;
Wu, Jiarui ;
Li, Jinsong .
JOURNAL OF MOLECULAR CELL BIOLOGY, 2011, 3 (03) :197-199
[72]   Overview of General and Discriminating Markers of Differential Microglia Phenotypes [J].
Jurga, Agnieszka M. ;
Paleczna, Martyna ;
Kuter, Katarzyna Z. .
FRONTIERS IN CELLULAR NEUROSCIENCE, 2020, 14
[73]   The MAPT p.A152T variant is a risk factor associated with tauopathies with atypical clinical and neuropathological features [J].
Kara, Eleanna ;
Ling, Helen ;
Pittman, Alan M. ;
Shaw, Karen ;
de Silva, Rohan ;
Simone, Roberto ;
Holton, Janice L. ;
Warren, Jason D. ;
Rohrer, Jonathan D. ;
Xiromerisiou, Georgia ;
Lees, Andrew ;
Hardy, John ;
Houlden, Henry ;
Revesz, Tamas .
NEUROBIOLOGY OF AGING, 2012, 33 (09) :2231.e7-2231.e14
[74]  
Kim Hee Jin, 2015, Alzheimers Dement (N Y), V1, P95, DOI 10.1016/j.trci.2015.06.007
[75]   Epigenetic memory in induced pluripotent stem cells [J].
Kim, K. ;
Doi, A. ;
Wen, B. ;
Ng, K. ;
Zhao, R. ;
Cahan, P. ;
Kim, J. ;
Aryee, M. J. ;
Ji, H. ;
Ehrlich, L. I. R. ;
Yabuuchi, A. ;
Takeuchi, A. ;
Cunniff, K. C. ;
Hongguang, H. ;
Mckinney-Freeman, S. ;
Naveiras, O. ;
Yoon, T. J. ;
Irizarry, R. A. ;
Jung, N. ;
Seita, J. ;
Hanna, J. ;
Murakami, P. ;
Jaenisch, R. ;
Weissleder, R. ;
Orkin, S. H. ;
Weissman, I. L. ;
Feinberg, A. P. ;
Daley, G. Q. .
NATURE, 2010, 467 (7313) :285-U60
[76]   The A673T mutation in the amyloid precursor protein reduces the production of β-amyloid protein from its β-carboxyl terminal fragment in cells [J].
Kokawa, Asuka ;
Ishihara, Seiko ;
Fujiwara, Hitomi ;
Nobuhara, Mika ;
Iwata, Minori ;
Ihara, Yasuo ;
Funamoto, Satoru .
ACTA NEUROPATHOLOGICA COMMUNICATIONS, 2015, 3 :66
[77]   PSEN1ΔE9, APPswe, and APOE4 Confer Disparate Phenotypes in Human iPSC-Derived Microglia [J].
Konttinen, Henna ;
Cabral-da-Silva, Mauricio e Castro ;
Ohtonen, Sohvi ;
Wojciechowski, Sara ;
Shakirzyanova, Anastasia ;
Caligola, Simone ;
Giugno, Rosalba ;
Ishchenko, Yevheniia ;
Hernandez, Damian ;
Fazaludeen, Mohammad Feroze ;
Eamen, Shaila ;
Budia, Mireia Gomez ;
Fagerlund, Ilkka ;
Scoyni, Flavia ;
Korhonen, Paula ;
Huber, Nadine ;
Haapasalo, Annakaisa ;
Hewitt, Alex W. ;
Vickers, James ;
Smith, Grady C. ;
Oksanen, Minna ;
Graff, Caroline ;
Kanninen, Katja M. ;
Lehtonen, Sarka ;
Propson, Nicholas ;
Schwartz, Michael P. ;
Pebay, Alice ;
Koistinaho, Jari ;
Ooi, Lezanne ;
Malm, Tarja .
STEM CELL REPORTS, 2019, 13 (04) :669-683
[78]   Pathologic Accumulation of α-Synuclein and Aβ in Parkinson Disease Patients With Dementia [J].
Kotzbauer, Paul T. ;
Cairns, Nigel J. ;
Campbell, Meghan C. ;
Willis, Allison W. ;
Racette, Brad A. ;
Tabbal, Samer D. ;
Perlmutter, Joel S. .
ARCHIVES OF NEUROLOGY, 2012, 69 (10) :1326-1331
[79]   Defective synaptic connectivity and axonal neuropathology in a human iPSC-based model of familial Parkinson's disease [J].
Kouroupi, Georgia ;
Taoufik, Era ;
Vlachos, Ioannis S. ;
Tsioras, Konstantinos ;
Antoniou, Nasia ;
Papastefanaki, Florentia ;
Chroni-Tzartou, Dafni ;
Wrasidlo, Wolfgang ;
Bohl, Delphine ;
Stellas, Dimitris ;
Politis, Panagiotis K. ;
Vekrellis, Kostas ;
Papadimitriou, Dimitra ;
Stefanis, Leonidas ;
Bregestovski, Piotr ;
Hatzigeorgiou, Artemis G. ;
Masliah, Eliezer ;
Matsas, Rebecca .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2017, 114 (18) :E3679-E3688
[80]   Distinguishing features of microglia- and monocyte-derived macrophages after stroke [J].
Kronenberg, Golo ;
Uhlemann, Ria ;
Richter, Nadine ;
Klempin, Friederike ;
Wegner, Stephanie ;
Staerck, Lilian ;
Wolf, Susanne ;
Uckert, Wolfgang ;
Kettenmann, Helmut ;
Endres, Matthias ;
Gertz, Karen .
ACTA NEUROPATHOLOGICA, 2018, 135 (04) :551-568