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[해외논문] Exosome-Mediated Ultra-Effective Direct Conversion of Human Fibroblasts into Neural Progenitor-like Cells

ACS nano, v.12 no.3, 2018년, pp.2531 - 2538  

Lee, Yong Seung (Institute for Bio-Medical Convergence, College of Medicine , Catholic Kwandong University , Gangneung-si , Gangwon-do 270-701 , Republic of Korea) ,  Jung, Woon Yong (Department of Pathology , Catholic Kwandong University International St. Mary’s Hospital , Incheon Metropolitan City 404-834 , Republic of Korea) ,  Heo, Hyejung (Institute for Bio-Medical Convergence, College of Medicine , Catholic Kwandong University , Gangneung-si , Gangwon-do 270-701 , Republic of Korea) ,  Park, Min Geun (Department of Surgery , Catholic Kwandong University International St. Mary’s Hospital , Incheon Metropolitan City 404-834 , Republic of Korea) ,  Oh, Seung-Hun (Department of Neurology, CHA Bundang Medical Center , CHA University , Seongnam 13497 , Republic of Korea) ,  Park, Byong-Gon (Department of Physiology, College of Medicine , Catholic Kwandong University , Gangneung-si , Gangwon-do 270-7) ,  Kim, Soonhag

Abstract AI-Helper 아이콘AI-Helper

Exosomes, naturally secreted nanoparticles, have been introduced as vehicles for horizontal transfer of genetic material. We induced autologous exosomes containing a cocktail of reprogramming factors (“reprosomes”) to convert fibroblasts into neural progenitor cells (NPCs). The fibroblasts were trea...

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참고문헌 (38)

  1. Li, X., Zuo, X., Jing, J., Ma, Y., Wang, J., Liu, D., Zhu, J., Du, X., Xiong, L., Du, Y., Xu, J., Xiao, X., Wang, J., Chai, Z., Zhao, Y., Deng, H.. Small-Molecule-Driven Direct Reprogramming of Mouse Fibroblasts into Functional Neurons. Cell stem cell, vol.17, no.2, 195-203.

  2. Mertens, Jerome, Marchetto, Maria C., Bardy, Cedric, Gage, Fred H.. Evaluating cell reprogramming, differentiation and conversion technologies in neuroscience. Nature reviews. Neuroscience, vol.17, no.7, 424-437.

  3. Yu, K.R., Shin, J.H., Kim, J.J., Koog, M., Lee, J., Choi, S., Kim, H.S., Seo, Y., Lee, S., Shin, T.h., Jee, M., Kim, D.W., Jung, S., Shin, S., Han, D., Kang, K.S.. Rapid and Efficient Direct Conversion of Human Adult Somatic Cells into Neural Stem Cells by HMGA2/let-7b. Cell reports, vol.10, no.3, 441-452.

  4. Generation of Integration-free and Region-Specific Neural Progenitors from Primate Fibroblasts. Cell reports, vol.3, no.5, 1580-1591.

  5. Ring, Karen L., Tong, Leslie M., Balestra, Maureen E., Javier, Robyn, Andrews-Zwilling, Yaisa, Li, Gang, Walker, David, Zhang, William R., Kreitzer, Anatol C., Huang, Yadong. Direct Reprogramming of Mouse and Human Fibroblasts into Multipotent Neural Stem Cells with a Single Factor. Cell stem cell, vol.11, no.1, 100-109.

  6. Mirakhori, Fahimeh, Zeynali, Bahman, Rassouli, Hassan, Shahbazi, Ebrahim, Hashemizadeh, Shiva, Kiani, Sahar, Salekdeh, Ghasem Hosseini, Baharvand, Hossein. Induction of Neural Progenitor-Like Cells from Human Fibroblasts via a Genetic Material-Free Approach. PloS one, vol.10, no.8, e0135479-.

  7. Joo, Jin Young, Lee, Jonghwan, Ko, Hae Young, Lee, Yong Seung, Lim, Do-Hwan, Kim, Eun-Young, Cho, Sujeong, Hong, Ki-Sung, Ko, Jung Jae, Lee, Suman, Lee, Young Sik, Choi, Youngsok, Lee, Kyung-Ah, Kim, Soonhag. Microinjection free delivery of miRNA inhibitor into zygotes. Scientific reports, vol.4, 5417-.

  8. Masuda, Shigeo, Wu, Jun, Hishida, Tomoaki, Pandian, Ganesh N., Sugiyama, Hiroshi, Izpisua Belmonte, Juan Carlos. Chemically induced pluripotent stem cells (CiPSCs): a transgene-free approach. Journal of molecular cell biology : JMCB, vol.5, no.5, 354-355.

  9. Hannafon, Bethany N., Ding, Wei-Qun. Intercellular Communication by Exosome-Derived microRNAs in Cancer. International journal of molecular sciences, vol.14, no.7, 14240-14269.

  10. Quesenberry, Peter J., Aliotta, Jason, Deregibus, Maria Chiara, Camussi, Giovanni. Role of extracellular RNA-carrying vesicles in cell differentiation and reprogramming. Stem cell research & therapy, vol.6, 153-.

  11. Ratajczak, J, Miekus, K, Kucia, M, Zhang, J, Reca, R, Dvorak, P, Ratajczak, M Z. Embryonic stem cell-derived microvesicles reprogram hematopoietic progenitors: evidence for horizontal transfer of mRNA and protein delivery. Leukemia : official journal of the Leukemia Society of America, Leukemia Research Fund, U.K, vol.20, no.5, 847-856.

  12. Aliotta, Jason M., Sanchez-Guijo, Fermin M., Dooner, Gerri J., Johnson, Kevin W., Dooner, Mark S., Greer, Kenneth A., Greer, Deborah, Pimentel, Jeffrey, Kolankiewicz, Luiz M., Puente, Napoleon, Faradyan, Sam, Ferland, Paulette, Bearer, Elaine L., Passero, Michael A., Adedi, Mehrdad, Colvin, Gerald A., Quesenberry, Peter J.. Alteration of Marrow Cell Gene Expression, Protein Production, and Engraftment into Lung by Lung-Derived Microvesicles: A Novel Mechanism for Phenotype Modulation. Stem cells®, vol.25, no.9, 2245-2256.

  13. Deregibus, Maria Chiara, Cantaluppi, Vincenzo, Calogero, Raffaele, Lo Iacono, Marco, Tetta, Ciro, Biancone, Luigi, Bruno, Stefania, Bussolati, Benedetta, Camussi, Giovanni. Endothelial progenitor cell-derived microvesicles activate an angiogenic program in endothelial cells by a horizontal transfer of mRNA. Blood, vol.110, no.7, 2440-2448.

  14. Eldh, Maria, Ekström, Karin, Valadi, Hadi, Sjöstrand, Margareta, Olsson, Bob, Jernås, Margareta, Lötvall, Jan, Tailleux, Ludovic. Exosomes Communicate Protective Messages during Oxidative Stress; Possible Role of Exosomal Shuttle RNA. PloS one, vol.5, no.12, e15353-.

  15. King, Hamish W, Michael, Michael Z, Gleadle, Jonathan M. Hypoxic enhancement of exosome release by breast cancer cells. BMC cancer, vol.12, 421-421.

  16. Takeuchi, Toshihide, Suzuki, Mari, Fujikake, Nobuhiro, Popiel, H. Akiko, Kikuchi, Hisae, Futaki, Shiroh, Wada, Keiji, Nagai, Yoshitaka. Intercellular chaperone transmission via exosomes contributes to maintenance of protein homeostasis at the organismal level. Proceedings of the National Academy of Sciences of the United States of America, vol.112, no.19, E2497-E2506.

  17. Park, J.A., Sharif, A.S., Tschumperlin, D.J., Lau, L., Limbrey, R., Howarth, P., Drazen, J.M.. Tissue factor-bearing exosome secretion from human mechanically stimulated bronchial epithelial cells in vitro and in vivo. The Journal of allergy and clinical immunology : official organ of American Academy of Allergy, vol.130, no.6, 1375-1383.

  18. 10.4172/2324-8769.1000105 

  19. Brami-Cherrier, Karen, Roze, Emmanuel, Girault, Jean-Antoine, Betuing, Sandrine, Caboche, Jocelyne. Role of the ERK/MSK1 signalling pathway in chromatin remodelling and brain responses to drugs of abuse. Journal of neurochemistry, vol.108, no.6, 1323-1335.

  20. Sukezane, Taiko, Oneyama, Chitose, Kakumoto, Kyoko, Shibutani, Kana, Hanafusa, Hidesaburo, Akagi, Tsuyoshi. Human diploid fibroblasts are resistant to MEK/ERK-mediated disruption of the actin cytoskeleton and invasiveness stimulated by Ras. Oncogene, vol.24, no.36, 5648-5655.

  21. Cuenda, A., Rousseau, S.. p38 MAP-Kinases pathway regulation, function and role in human diseases. Biochimica et biophysica acta, Molecular cell research, vol.1773, no.8, 1358-1375.

  22. Hinde, Elizabeth, Cardarelli, Francesco, Chen, Aaron, Khine, Michelle, Gratton, Enrico. Tracking the mechanical dynamics of human embryonic stem cell chromatin. Epigenetics & chromatin, vol.5, 20-20.

  23. Musselman, Catherine A, Lalonde, Marie-Eve, C척t챕, Jacques, Kutateladze, Tatiana G. Perceiving the epigenetic landscape through histone readers. Nature structural & molecular biology, vol.19, no.12, 1218-1227.

  24. Reik, Wolf. Stability and flexibility of epigenetic gene regulation in mammalian development. Nature, vol.447, no.7143, 425-432.

  25. Kang, P.J., Moon, J.H., Yoon, B.S., Hyeon, S., Jun, E.K., Park, G., Yun, W., Park, J., Park, M., Kim, A., Whang, K.Y., Koh, G.Y., Oh, S., You, S.. Reprogramming of mouse somatic cells into pluripotent stem-like cells using a combination of small molecules. Biomaterials, vol.35, no.26, 7336-7345.

  26. Yoshikawa, K., Naitoh, M., Kubota, H., Ishiko, T., Aya, R., Yamawaki, S., Suzuki, S.. Multipotent stem cells are effectively collected from adult human cheek skin. Biochemical and biophysical research communications, vol.431, no.1, 104-110.

  27. Vacher, Helene, Mohapatra, Durga P., Trimmer, James S.. Localization and Targeting of Voltage-Dependent Ion Channels in Mammalian Central Neurons. Physiological reviews, vol.88, no.4, 1407-1447.

  28. Victor, Matheus B., Richner, M., Hermanstyne, Tracey O., Ransdell, Joseph L., Sobieski, C., Deng, P.Y., Klyachko, Vitaly A., Nerbonne, Jeanne M., Yoo, Andrew S.. Generation of Human Striatal Neurons by MicroRNA-Dependent Direct Conversion of Fibroblasts. Neuron, vol.84, no.2, 311-323.

  29. Zhou, Ying, Xu, Huitao, Xu, Wenrong, Wang, Bingying, Wu, Huiyi, Tao, Yang, Zhang, Bin, Wang, Mei, Mao, Fei, Yan, Yongmin, Gao, Shuo, Gu, Hongbing, Zhu, Wei, Qian, Hui. Exosomes released by human umbilical cord mesenchymal stem cells protect against cisplatin-induced renal oxidative stress and apoptosis in vivo and in vitro. Stem cell research & therapy, vol.4, no.2, 34-34.

  30. Han, D., Tapia, N., Hermann, A., Hemmer, K., Hoing, S., Arauzo-Bravo, Marcos J., Zaehres, H., Wu, G., Frank, S., Moritz, S., Greber, B., Yang, J., Lee, H., Schwamborn, Jens C., Storch, A., Scholer, Hans R.. Direct Reprogramming of Fibroblasts into Neural Stem Cells by Defined Factors. Cell stem cell, vol.10, no.4, 465-472.

  31. Boissart, Claire, Nissan, Xavier, Giraud-Triboult, Karine, Peschanski, Marc, Benchoua, Alexandra. miR-125 potentiates early neural specification of human embryonic stem cells. Development, vol.139, no.7, 1247-1257.

  32. Franzoni, Eleonora, Booker, Sam A, Parthasarathy, Srinivas, Rehfeld, Frederick, Grosser, Sabine, Srivatsa, Swathi, Fuchs, Heiko R, Tarabykin, Victor, Vida, Imre, Wulczyn, F Gregory. miR-128 regulates neuronal migration, outgrowth and intrinsic excitability via the intellectual disability gene Phf6. eLife, vol.4, e04263-.

  33. Victor, Matheus B., Richner, M., Hermanstyne, Tracey O., Ransdell, Joseph L., Sobieski, C., Deng, P.Y., Klyachko, Vitaly A., Nerbonne, Jeanne M., Yoo, Andrew S.. Generation of Human Striatal Neurons by MicroRNA-Dependent Direct Conversion of Fibroblasts. Neuron, vol.84, no.2, 311-323.

  34. Yoo, Andrew S., Sun, Alfred X., Li, Li, Shcheglovitov, Aleksandr, Portmann, Thomas, Li, Yulong, Lee-Messer, Chris, Dolmetsch, Ricardo E., Tsien, Richard W., Crabtree, Gerald R.. MicroRNA-mediated conversion of human fibroblasts to neurons. Nature, vol.476, no.7359, 228-231.

  35. Lee, Yong Seung, Heo, Hyejung, Lee, Jonghwan, Moon, Sung Ung, Jung, Woon Yong, Park, Yong Keun, Park, Min Geun, Oh, Seung-Hun, Kim, Soonhag. An ultra-effective method of generating extramultipotent cells from human fibroblasts by ultrasound. Biomaterials, vol.143, 65-78.

  36. Al-Dosari, Mohammed S., Gao, Xiang. Nonviral Gene Delivery: Principle, Limitations, and Recent Progress. The AAPS journal, vol.11, no.4, 671-.

  37. Seow, Yiqi, Wood, Matthew J. Biological Gene Delivery Vehicles: Beyond Viral Vectors. Molecular therapy : the journal of the American Society of Gene Therapy, vol.17, no.5, 767-777.

  38. Lobb, Richard J., Becker, Melanie, Wen Wen, Shu, Wong, Christina S. F., Wiegmans, Adrian P., Leimgruber, Antoine, Möller, Andreas. Optimized exosome isolation protocol for cell culture supernatant and human plasma. Journal of extracellular vesicles, vol.4, no.1, 10.3402/jev.v4.27031-.

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