For: | Pessôa LVF, Bressan FF, Freude KK. Induced pluripotent stem cells throughout the animal kingdom: Availability and applications. World J Stem Cells 2019; 11(8): 491-505 [PMID: 31523369 DOI: 10.4252/wjsc.v11.i8.491] |
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URL: | https://www.wjgnet.com/1948-0210/full/v11/i8/491.htm |
Number | Citing Articles |
1 |
Mahmoud Tarek Hefnawy, Nour Shaheen, Kholoud Elsamman, Muhammad Ashraf Husain, Naydeen Mostafa, Mohamed Hazem Khalil, Yara Amro, Mostafa Meshref. Essential Guide to Neurodegenerative Disorders. 2025; : 523 doi: 10.1016/B978-0-443-15702-8.00032-4
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2 |
Michael Dannemann, Irene Gallego Romero. Harnessing pluripotent stem cells as models to decipher human evolution. The FEBS Journal 2022; 289(11): 2992 doi: 10.1111/febs.15885
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3 |
Lucas Simões Machado, Naira Caroline Godoy Pieri, Ramon Cesar Botigelli, Raquel Vasconcelos Guimarães Castro, Aline Fernanda Souza, Alessandra Bridi, Marina Amaro Lima, Paulo Fantinato Neto, Laís Vicari de Figueiredo Pessôa, Simone Maria Massami Kitamura Martins, André Furugen Cesar De Andrade, Kristine Karla Freude, Fabiana Fernandes Bressan. Generation of neural progenitor cells from porcine‐induced pluripotent stem cells. Journal of Tissue Engineering and Regenerative Medicine 2020; 14(12): 1880 doi: 10.1002/term.3143
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4 |
Érika Almeida Praxedes, Fabiana Fernandes Bressan, Alexsandra Fernandes Pereira. A Comparative Approach of Cellular Reprogramming in the Rodentia Order. Cellular Reprogramming 2020; 22(5): 227 doi: 10.1089/cell.2020.0024
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5 |
Misganaw Gebrie Worku. Pluripotent and Multipotent Stem Cells and Current Therapeutic Applications: Review. Stem Cells and Cloning: Advances and Applications 2021; : 3 doi: 10.2147/SCCAA.S304887
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6 |
Laís Vicari de Figueiredo Pessôa, Naira Caroline Godoy Pieri, Kaiana Recchia, Fabiana Fernandes Bressan. Novel Perspectives of Stem Cell Manufacturing and Therapies. 2021; doi: 10.5772/intechopen.94199
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7 |
Hongli Jiao, Ming-Song Lee, Athillesh Sivapatham, Ellen M. Leiferman, Wan-Ju Li. Epigenetic regulation of BAF60A determines efficiency of miniature swine iPSC generation. Scientific Reports 2022; 12(1) doi: 10.1038/s41598-022-12919-6
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8 |
Disha D. Shah, Mehul R. Chorawala, Aanshi J. Pandya, Nirjari Kothari, Bhupendra G. Prajapati, Priyajeet S. Parekh. Advancing the Battle against Cystic Fibrosis: Stem Cell and Gene Therapy Insights. Current Medical Science 2024; 44(6): 1155 doi: 10.1007/s11596-024-2936-5
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9 |
Lei Han, Hao He, Yihao Yang, Qingyin Meng, Fan Ye, Gong Chen, Jing Zhang. Distinctive Clinical and Pathologic Features of Immature Teratomas Arising from Induced Pluripotent Stem Cell-Derived Beta Cell Injection in a Diabetes Patient. Stem Cells and Development 2022; 31(5-6): 97 doi: 10.1089/scd.2021.0255
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10 |
Younsu Lee, Okjae Koo, Islam M. Saadeldin. Generation of induced pluripotent stem cells from the Asian bats. International Journal of Veterinary Science and Medicine 2024; 12(1): 81 doi: 10.1080/23144599.2024.2384835
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11 |
Raquel V. G. de Castro, Naira C. G. Pieri, Paulo Fantinato Neto, Bianca M. Grizendi, Renata G. S. Dória, Flavio V. Meirelles, Lawrence C. Smith, Joaquim M. Garcia, Fabiana F. Bressan, Leonora Buzanska. In Vitro Induction of Pluripotency from Equine Fibroblasts in 20% or 5% Oxygen. Stem Cells International 2020; 2020: 1 doi: 10.1155/2020/8814989
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12 |
Carolina Gonzales da Silva, Carlos Frederico Martins. Somatic Cell Nuclear Transfer Technology. Methods in Molecular Biology 2023; 2647: 105 doi: 10.1007/978-1-0716-3064-8_5
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13 |
Nathalia de Lima e Martins Lara, Maryam Ahmadi Jeyhoonabadi, Rkia Dardari, Franklin D. West, Ina Dobrinski. iPSCs from Diverse Species. 2021; : 93 doi: 10.1016/B978-0-12-822228-7.00005-9
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14 |
Laura Barrachina, Tarlan Eslami Arshaghi, Aisling O'Brien, Ana Ivanovska, Frank Barry. Induced pluripotent stem cells in companion animals: how can we move the field forward?. Frontiers in Veterinary Science 2023; 10 doi: 10.3389/fvets.2023.1176772
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15 |
Kaiana Recchia, Lucas Simões Machado, Ramon Cesar Botigelli, Naira Caroline Godoy Pieri, Gabriela Barbosa, Raquel Vasconcelos Guimarães de Castro, Mariana Groke Marques, Laís Vicari de Figueiredo Pessôa, Paulo Fantinato Neto, Flávio Vieira Meirelles, Aline Fernanda de Souza, Simone Maria Massami Kitamura Martins, Fabiana Fernandes Bressan. <i>In vitro</i> induced pluripotency from urine-derived cells in porcine. World Journal of Stem Cells 2022; 14(3): 231-244 doi: 10.4252/wjsc.v14.i3.231
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16 |
Abinaya Chandrasekaran, Barbara Blicher Thomsen, Jørgen Steen Agerholm, Laís Vicari de Figueiredo Pessôa, Naira Caroline Godoy Pieri, Vahideh Sabaghidarmiyan, Katarina Langley, Miriam Kolko, André Furugen Cesar de Andrade, Fabiana Fernandes Bressan, Poul Hyttel, Mette Berendt, Kristine Freude. Neural Derivates of Canine Induced Pluripotent Stem Cells-Like Cells From a Mild Cognitive Impairment Dog. Frontiers in Veterinary Science 2021; 8 doi: 10.3389/fvets.2021.725386
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17 |
Vera Zywitza, Ejona Rusha, Dmitry Shaposhnikov, Jorge Ruiz-Orera, Narasimha Telugu, Valentyna Rishko, Masafumi Hayashi, Geert Michel, Lars Wittler, Jan Stejskal, Susanne Holtze, Frank Göritz, Robert Hermes, Jichang Wang, Zsuzsanna Izsvák, Silvia Colleoni, Giovanna Lazzari, Cesare Galli, Thomas B. Hildebrandt, Katsuhiko Hayashi, Sebastian Diecke, Micha Drukker. Naïve-like pluripotency to pave the way for saving the northern white rhinoceros from extinction. Scientific Reports 2022; 12(1) doi: 10.1038/s41598-022-07059-w
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18 |
Nousheen Zahoor, Areej Arif, Muhammad Shuaib, Kai Jin, Bichun Li, Zeyu Li, Xiaomeng Pei, Xilin Zhu, Qisheng Zuo, Yingjie Niu, Jiuzhou Song, Guohong Chen. Induced Pluripotent Stem Cells in Birds: Opportunities and Challenges for Science and Agriculture. Veterinary Sciences 2024; 11(12): 666 doi: 10.3390/vetsci11120666
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19 |
Masaya Tsukamoto, Kazuto Kimura, Takumi Yoshida, Kikuya Sugiura, Shingo Hatoya. Canine induced pluripotent stem cells efficiently differentiate into definitive endoderm in 3D cell culture conditions using high-dose activin A. Regenerative Therapy 2022; 21: 502 doi: 10.1016/j.reth.2022.10.002
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20 |
Raiane Cristina Fratini de Castro, Tiago William Buranello, Kaiana Recchia, Aline Fernanda de Souza, Naira Caroline Godoy Pieri, Fabiana Fernandes Bressan. Emerging Contributions of Pluripotent Stem Cells to Reproductive Technologies in Veterinary Medicine. Journal of Developmental Biology 2024; 12(2): 14 doi: 10.3390/jdb12020014
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21 |
Ashwini Nerkar Rajbhoj, Vikram V. Khare, Amita Aditya, Suhas Pande, Daisy Happy, Nayana Anasane. Stem Cells Application in Oral Mucosal Disorders. Journal of Indian Academy of Oral Medicine and Radiology 2021; 33(4): 379 doi: 10.4103/jiaomr.jiaomr_66_21
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22 |
William Vincent Holt. Biobanks, offspring fitness and the influence of developmental plasticity in conservation biology. Animal Reproduction 2023; 20(2) doi: 10.1590/1984-3143-ar2023-0026
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23 |
Harish K. Handral, Shi Hua Tay, Weng Wan Chan, Deepak Choudhury. 3D Printing of cultured meat products. Critical Reviews in Food Science and Nutrition 2022; 62(1): 272 doi: 10.1080/10408398.2020.1815172
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24 |
He Li, Yadong Liu. The hopes and hypes of plant and bacteria-derived cellulose application in stem cell technology. Cellulose 2022; 29(6): 3035 doi: 10.1007/s10570-022-04443-7
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25 |
Mridula Goswami, Gyanendra Kumar, Sadhna Sharma. “Dental Stem Cells”: Awareness, knowledge, and attitude of dental professionals—A cross‐sectional study. Special Care in Dentistry 2020; 40(1): 90 doi: 10.1111/scd.12442
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26 |
Satish Kumar, Manmohan Singh Chauhan. Relative abundance of pluripotency-associated candidate genes in immature oocytes andin vitro-produced buffalo embryos (Bubalus bubalis). Zygote 2021; 29(6): 459 doi: 10.1017/S0967199421000101
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27 |
Ken Princen, Neeve Marien, Wanda Guedens, Geert‐Jan Graulus, Peter Adriaensens. Hydrogels with Reversible Crosslinks for Improved Localised Stem Cell Retention: A Review. ChemBioChem 2023; 24(20) doi: 10.1002/cbic.202300149
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28 |
Yi Chen, Meng Li, Yanqing Wu. The occurrence and development of induced pluripotent stem cells. Frontiers in Genetics 2024; 15 doi: 10.3389/fgene.2024.1389558
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29 |
Bettina Seeger. Farm Animal-derived Models of the Intestinal Epithelium: Recent Advances and Future Applications of Intestinal Organoids. Alternatives to Laboratory Animals 2020; 48(5-6): 215 doi: 10.1177/0261192920974026
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30 |
Dharmendra Kumar, Thirumala R Talluri, Naresh L Selokar, Iqbal Hyder, Wilfried A Kues. Perspectives of pluripotent stem cells in livestock. World Journal of Stem Cells 2021; 13(1): 1-29 doi: 10.4252/wjsc.v13.i1.1
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31 |
Henriette Reventlow Frederiksen, Alexandra Glantz, Kåre Kryger Vøls, Søren Skov, Pernille Tveden-Nyborg, Kristine Freude, Ulrik Doehn. CRISPR-Cas9 immune-evasive hESCs are rejected following transplantation into immunocompetent mice. Frontiers in Genome Editing 2024; 6 doi: 10.3389/fgeed.2024.1403395
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32 |
Dhanya V. Menon, Smitha Bhaskar, Preethi Sheshadri, Chaitanya G. Joshi, Darshan Patel, Anujith Kumar. Positioning canine induced pluripotent stem cells (iPSCs) in the reprogramming landscape of naïve or primed state in comparison to mouse and human iPSCs. Life Sciences 2021; 264: 118701 doi: 10.1016/j.lfs.2020.118701
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33 |
Clayton Edenfield, Jacob Siracusa, Ruoning Wang, Xiaozhong Yu. iPSCs from Diverse Species. 2021; : 1 doi: 10.1016/B978-0-12-822228-7.00012-6
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34 |
Rachel A. Scarfone, Samantha M. Pena, Keith A. Russell, Dean H. Betts, Thomas G. Koch. The use of induced pluripotent stem cells in domestic animals: a narrative review. BMC Veterinary Research 2020; 16(1) doi: 10.1186/s12917-020-02696-7
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35 |
Stephen D. Cahalan, Ines Boehm, Ross A. Jones, Richard J. Piercy. Recognising the potential of large animals for modelling neuromuscular junction physiology and disease. Journal of Anatomy 2022; 241(5): 1120 doi: 10.1111/joa.13749
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36 |
Brendon Willian Bessi, Ramon Cesar Botigelli, Naira Caroline Godoy Pieri, Lucas Simões Machado, Jessica Brunhara Cruz, Pamela de Moraes, Aline Fernanda de Souza, Kaiana Recchia, Gabriela Barbosa, Raquel Vasconcelos Guimarães de Castro, Marcelo Fábio Gouveia Nogueira, Fabiana Fernandes Bressan. Cattle In Vitro Induced Pluripotent Stem Cells Generated and Maintained in 5 or 20% Oxygen and Different Supplementation. Cells 2021; 10(6): 1531 doi: 10.3390/cells10061531
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37 |
Shahida Anusha Siddiqui, Sipper Khan, Misbah Murid, Zarnab Asif, Natalya Pavlovna Oboturova, Andrey Ashotovich Nagdalian, Andrey Vladimirovich Blinov, Salam A. Ibrahim, Seid Mahdi Jafari. Marketing Strategies for Cultured Meat: A Review. Applied Sciences 2022; 12(17): 8795 doi: 10.3390/app12178795
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38 |
Laís Vicari de Figueiredo Pessôa, Abinaya Chandrasekaran, Barbara Blicher Thomsen, Mette Berendt, Poul Hyttel, Kristine Freude. iPSCs from Diverse Species. 2021; : 77 doi: 10.1016/B978-0-12-822228-7.00010-2
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39 |
James M. Harper. Primary Cell Culture as a Model System for Evolutionary Molecular Physiology. International Journal of Molecular Sciences 2024; 25(14): 7905 doi: 10.3390/ijms25147905
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40 |
Fabiana Fernandes Bressan, Vinícius Bassanezze, Laís Vicari de Figueiredo Pessôa, Chester Bittencourt Sacramento, Tathiane Maistro Malta, Simone Kashima, Paulo Fantinato Neto, Ricardo De Francisco Strefezzi, Naira Caroline Godoy Pieri, José Eduardo Krieger, Dimas Tadeu Covas, Flávio Vieira Meirelles. Generation of induced pluripotent stem cells from large domestic animals. Stem Cell Research & Therapy 2020; 11(1) doi: 10.1186/s13287-020-01716-5
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41 |
Yurou Wu, Chengwei Wang, Xinyun Fan, Yuxiao Ma, Zibo Liu, Xun Ye, Chongyang Shen, Chunjie Wu. The impact of induced pluripotent stem cells in animal conservation. Veterinary Research Communications 2024; 48(2): 649 doi: 10.1007/s11259-024-10294-3
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42 |
Kaiana Recchia, Laís Vicari de Figueiredo Pessôa, Naira Caroline Godoy Pieri, Fabiana Fernandes Bressan. Use of induced pluripotent stem cells for regenerative medicine and understanding of cell biology. Reproduction, Fertility and Development 2024; 37(1) doi: 10.1071/RD24136
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43 |
Andrea De Pieri, Benjamin D. Korman, Astrid Jüngel, Karin Wuertz‐Kozak. Engineering Advanced In Vitro Models of Systemic Sclerosis for Drug Discovery and Development. Advanced Biology 2021; 5(4) doi: 10.1002/adbi.202000168
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44 |
Alessia Bertero, Teresa Coccini, Francesca Caloni. Current Topics in iPSCs Technology. 2022; : 529 doi: 10.1016/B978-0-323-99892-5.00022-0
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45 |
Wenting Xu, Huajin Li, Liangyue Peng, Liyu Pu, Sijia Xiang, Yue Li, Leiting Tao, Wenbin Liu, Jinhui Liu, Yamei Xiao, Shaojun Liu. Fish Pluripotent Stem-Like Cell Line Induced by Small-Molecule Compounds From Caudal Fin and its Developmental Potentiality. Frontiers in Cell and Developmental Biology 2022; 9 doi: 10.3389/fcell.2021.817779
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46 |
Fabiana Fernandes Bressan, Carlos Eduardo Ambrósio, Tiziana A. Brevini. Editorial: Embryonic, reprogrammed, and multipotent cells in domestic animals: In vivo and in vitro mechanisms and applications. Frontiers in Veterinary Science 2023; 10 doi: 10.3389/fvets.2023.1151065
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47 |
Katrina Albert, Jonna Niskanen, Sara Kälvälä, Šárka Lehtonen. Utilising Induced Pluripotent Stem Cells in Neurodegenerative Disease Research: Focus on Glia. International Journal of Molecular Sciences 2021; 22(9): 4334 doi: 10.3390/ijms22094334
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48 |
John S.K. Yuen Jr, Andrew J. Stout, N. Stephanie Kawecki, Sophia M. Letcher, Sophia K. Theodossiou, Julian M. Cohen, Brigid M. Barrick, Michael K. Saad, Natalie R. Rubio, Jaymie A. Pietropinto, Hailey DiCindio, Sabrina W. Zhang, Amy C. Rowat, David L. Kaplan. Perspectives on scaling production of adipose tissue for food applications. Biomaterials 2022; 280: 121273 doi: 10.1016/j.biomaterials.2021.121273
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49 |
Kaiana Recchia, Laís Vicari de Figueiredo Pessôa, Naira Caroline Godoy Pieri, Pedro Ratto Lisboa Pires, Fabiana Fernandes Bressan. Influence of Cell Type in In Vitro Induced Reprogramming in Cattle. Life 2022; 12(8): 1139 doi: 10.3390/life12081139
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50 |
Huajin Li, Wenting Xu, Sijia Xiang, Leiting Tao, Wen Fu, Jinhui Liu, Wenbin Liu, Yamei Xiao, Liangyue Peng. Defining the Pluripotent Marker Genes for Identification of Teleost Fish Cell Pluripotency During Reprogramming. Frontiers in Genetics 2022; 13 doi: 10.3389/fgene.2022.819682
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51 |
Masaya Tsukamoto, Kazuto Kimura, Miyuu Tanaka, Mitsuru Kuwamura, Manami Ohtaka, Mahito Nakanishi, Kikuya Sugiura, Shingo Hatoya. Generation of Footprint‐Free Canine Induced Pluripotent Stem Cells from Peripheral Blood Mononuclear Cells Using Sendai Virus Vector. Molecular Reproduction and Development 2020; 87(6): 663 doi: 10.1002/mrd.23349
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52 |
Naira Caroline Godoy Pieri, Aline Fernanda de Souza, Ramon Cesar Botigelli, Laís Vicari de Figueiredo Pessôa, Kaiana Recchia, Lucas Simões Machado, Mayra Hirakawa Glória, Raquel Vasconcelos Guimarães de Castro, Diego Feitosa Leal, Paulo Fantinato Neto, Simone Maria Massami Kitamura Martins, Daniele dos Santos Martins, Fabiana Fernandes Bressan, André Furugen Cesar de Andrade. Porcine Primordial Germ Cell-Like Cells Generated from Induced Pluripotent Stem Cells Under Different Culture Conditions. Stem Cell Reviews and Reports 2022; 18(5): 1639 doi: 10.1007/s12015-021-10198-8
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