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NTIS 바로가기Advanced healthcare materials, v.10 no.4, 2021년, pp.2000583 -
Seo, Jeongyeon (Center for Cell‐) , Lanara, Christina (Encapsulation Research Department of Chemistry KAIST Daejeon 34141 Korea) , Choi, Ji Yu (Institute of Electronic Structure and Laser Foundation for Research and Technology Hellas (FORTH) Nikolaou Plastira 100 Heraklion Crete GR‐) , Kim, Jungnam (70013 Greece) , Cho, Hyeoncheol (Center for Cell‐) , Chang, Young‐Tae (Encapsulation Research Department of Chemistry KAIST Daejeon 34141 Korea) , Kang, Kyungtae (Center for Cell‐) , Stratakis, Emmanuel (Encapsulation Research Department of Chemistry KAIST Daejeon 34141 Korea) , Choi, Insung S. (Center for Cell‐)
AbstractNeuronal migration is a complicated but fundamental process for proper construction and functioning of neural circuits in the brain. Many in vivo studies have suggested the involvement of environmental physical features of a neuron in its migration, but little effort has been made for the in...
Hatten, Mary E.. CENTRAL NERVOUS SYSTEM NEURONAL MIGRATION. Annual review of neuroscience, vol.22, 511-539.
Ghashghaei, H. Troy, Lai, Cary, Anton, E. S.. Neuronal migration in the adult brain: are we there yet?. Nature reviews. Neuroscience, vol.8, no.2, 141-151.
Silva, Carla G., Peyre, Elise, Nguyen, Laurent. Cell migration promotes dynamic cellular interactions to control cerebral cortex morphogenesis. Nature reviews. Neuroscience, vol.20, no.6, 318-329.
Rakic, Pasko. Mode of cell migration to the superficial layers of fetal monkey neocortex. Journal of comparative neurology, vol.145, no.1, 61-83.
Nadarajah, Bagirathy, Brunstrom, Janice E., Grutzendler, Jaime, Wong, Rachel O. L., Pearlman, Alan L.. Two modes of radial migration in early development of the cerebral cortex. Nature neuroscience, vol.4, no.2, 143-150.
Rakic, Pasko. Neuron‐glia relationship during granule cell migration in developing cerebellar cortex. A Golgi and electonmicroscopic study in Macacus rhesus. Journal of comparative neurology, vol.141, no.3, 283-312.
Weiss, Paul. In vitro experiments on the factors determining the course of the outgrowing nerve fiber. The Journal of experimental zoology, vol.68, no.3, 393-448.
O'Rourke, NA, Dailey, ME, Smith, SJ, McConnell, SK. Diverse migratory pathways in the developing cerebral cortex. Science, vol.258, no.5080, 299-302.
Corbin, Joshua G., Nery, Susana, Fishell, Gord. Telencephalic cells take a tangent: non-radial migration in the mammalian forebrain. Nature neuroscience, vol.4, no.suppl, 1177-1182.
Nat. Rev. Neurosci. Oscar M. 780 2 2001
Wichterle, H., Garcia-Verdugo, J.M., Alvarez-Buylla, A.. Direct Evidence for Homotypic, Glia-Independent Neuronal Migration. Neuron, vol.18, no.5, 779-791.
Sun, Gerald J., Zhou, Yi, Stadel, Ryan P., Moss, Jonathan, Yong, Jing Hui A., Ito, Shiori, Kawasaki, Nicholas K., Phan, Alexander T., Oh, Justin H., Modak, Nikhil, Reed, Randall R., Toni, Nicolas, Song, Hongjun, Ming, Guo-li. Tangential migration of neuronal precursors of glutamatergic neurons in the adult mammalian brain. Proceedings of the National Academy of Sciences of the United States of America, vol.112, no.30, 9484-9489.
Khan, Saida P., Auner, Gregory G., Newaz, Golam M.. Influence of nanoscale surface roughness on neural cell attachment on silicon. Nanomedicine : nanotechnology, biology and medicine, vol.1, no.2, 125-129.
Brunetti, V., Maiorano, G., Rizzello, L., Sorce, B., Sabella, S., Cingolani, R., Pompa, P. P.. Neurons sense nanoscale roughness with nanometer sensitivity. Proceedings of the National Academy of Sciences of the United States of America, vol.107, no.14, 6264-6269.
Cho, Woo Kyung, Kang, Kyungtae, Kang, Gyumin, Jang, Min Jee, Nam, Yoonkey, Choi, Insung S.. Pitch‐Dependent Acceleration of Neurite Outgrowth on Nanostructured Anodized Aluminum Oxide Substrates. Angewandte Chemie. international edition, vol.49, no.52, 10114-10118.
Piret, G., Perez, M.T., Prinz, C.N.. Neurite outgrowth and synaptophysin expression of postnatal CNS neurons on GaP nanowire arrays in long-term retinal cell culture. Biomaterials, vol.34, no.4, 875-887.
Prinz, Christelle, Hällström, Waldemar, Mårtensson, Thomas, Samuelson, Lars, Montelius, Lars, Kanje, Martin. Axonal guidance on patterned free-standing nanowire surfaces. Nanotechnology, vol.19, no.34, 345101-.
Park, Matthew, Oh, Eunkyul, Seo, Jeongyeon, Kim, Mi‐Hee, Cho, Hyeoncheol, Choi, Ji Yu, Lee, Haiwon, Choi, Insung S.. Control over Neurite Directionality and Neurite Elongation on Anisotropic Micropillar Arrays. Small, vol.12, no.9, 1148-1152.
Onesto, V., Cancedda, L., Coluccio, M. L., Nanni, M., Pesce, M., Malara, N., Cesarelli, M., Di Fabrizio, E., Amato, F., Gentile, F.. Nano-topography Enhances Communication in Neural Cells Networks. Scientific reports, vol.7, 9841-.
Kuddannaya, Shreyas, Tong, Chong Swee, Fan, Yantao, Zhang, Yilei. Geometrically Mediated Topographic Steering of Neurite Behaviors and Network Formation. Advanced materials interfaces, vol.5, no.7, 1700819-.
Kang, Kyungtae, Kim, Mi-Hee, Park, Matthew, Choi, Insung S.. Neurons on Nanotopographies: Behavioral Responses and Biological Implications. Journal of nanoscience and nanotechnology, vol.14, no.1, 513-521.
Kim, Mi-Hee, Park, Matthew, Kang, Kyungtae, Choi, Insung S.. Neurons on nanometric topographies: insights into neuronal behaviors in vitro. Biomaterials science, vol.2, no.2, 148-155.
Simitzi, C., Ranella, A., Stratakis, E.. Controlling the morphology and outgrowth of nerve and neuroglial cells: The effect of surface topography. Acta Biomaterialia: structure-property-function relationships in biomaterials, vol.51, 21-52.
Rajnicek, Ann M., Britland, Stephen, McCaig, Colin D.. Contact guidance of CNS neurites on grooved quartz: influence of groove dimensions, neuronal age and cell type. Journal of cell science, vol.110, no.23, 2905-2913.
Nguyen, Anh Tuan, Sathe, Sharvari R, Yim, Evelyn K F. From nano to micro: topographical scale and its impact on cell adhesion, morphology and contact guidance. Journal of physics, an Institute of Physics journal. Condensed matter, vol.28, no.18, 183001-.
Gomez, N., Lu, Y., Chen, S., Schmidt, C.E.. Immobilized nerve growth factor and microtopography have distinct effects on polarization versus axon elongation in hippocampal cells in culture. Biomaterials, vol.28, no.2, 271-284.
Tuft, Bradley W., Xu, Linjing, White, Scott P., Seline, Alison E., Erwood, Andrew M., Hansen, Marlan R., Guymon, C. Allan. Neural Pathfinding on Uni- and Multidirectional Photopolymerized Micropatterns. ACS applied materials & interfaces, vol.6, no.14, 11265-11276.
Kang, Kyungtae, Choi, Sung‐Eun, Jang, Hee Su, Cho, Woo Kyung, Nam, Yoonkey, Choi, Insung S., Lee, Jin Seok. In Vitro Developmental Acceleration of Hippocampal Neurons on Nanostructures of Self‐Assembled Silica Beads in Filopodium‐Size Ranges. Angewandte Chemie. international edition, vol.51, no.12, 2855-2858.
Wu, Tong, Xue, Jiajia, Xia, Younan. Engraving the Surface of Electrospun Microfibers with Nanoscale Grooves Promotes the Outgrowth of Neurites and the Migration of Schwann Cells. Angewandte Chemie. international edition, vol.59, no.36, 15626-15632.
Antman-Passig, Merav, Levy, Shahar, Gartenberg, Chaim, Schori, Hadas, Shefi, Orit. Mechanically Oriented 3D Collagen Hydrogel for Directing Neurite Growth. Tissue engineering. Part A, vol.23, no.9, 403-414.
Chua, J.S., Chng, C.P., Moe, A.A.K., Tann, J.Y., Goh, E.L.K., Chiam, K.H., Yim, E.K.F.. Extending neurites sense the depth of the underlying topography during neuronal differentiation and contact guidance. Biomaterials, vol.35, no.27, 7750-7761.
Kang, Kyungtae, Park, Yi-Seul, Park, Matthew, Jang, Min Jee, Kim, Seong-Min, Lee, Juno, Choi, Ji Yu, Jung, Da Hee, Chang, Young-Tae, Yoon, Myung-Han, Lee, Jin Seok, Nam, Yoonkey, Choi, Insung S.. Axon-First Neuritogenesis on Vertical Nanowires. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.16, no.1, 675-680.
Leclech, Claire, Renner, Marianne, Villard, Catherine, Métin, Christine. Topographical cues control the morphology and dynamics of migrating cortical interneurons. Biomaterials, vol.214, 119194-.
Schaar, Bruce T., McConnell, Susan K.. Cytoskeletal coordination during neuronal migration. Proceedings of the National Academy of Sciences of the United States of America, vol.102, no.38, 13652-13657.
Umeshima, Hiroki, Hirano, Tomoo, Kengaku, Mineko. Microtubule-based nuclear movement occurs independently of centrosome positioning in migrating neurons. Proceedings of the National Academy of Sciences of the United States of America, vol.104, no.41, 16182-16187.
Solecki, David J., Trivedi, Niraj, Govek, Eve-Ellen, Kerekes, Ryan A., Gleason, Shaun S., Hatten, Mary E.. Myosin II Motors and F-Actin Dynamics Drive the Coordinated Movement of the Centrosome and Soma during CNS Glial-Guided Neuronal Migration. Neuron, vol.63, no.1, 63-80.
Bellion, A.. Nucleokinesis in Tangentially Migrating Neurons Comprises Two Alternating Phases: Forward Migration of the Golgi/Centrosome Associated with Centrosome Splitting and Myosin Contraction at the Rear. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.25, no.24, 5691-5699.
Tsai, Jin-Wu, Bremner, K Helen, Vallee, Richard B. Dual subcellular roles for LIS1 and dynein in radial neuronal migration in live brain tissue. Nature neuroscience, vol.10, no.8, 970-979.
Baranes, Koby, Hibsh, Dror, Cohen, Sharon, Yamin, Tony, Efroni, Sol, Sharoni, Amos, Shefi, Orit. Comparing Transcriptome Profiles of Neurons Interfacing Adjacent Cells and Nanopatterned Substrates Reveals Fundamental Neuronal Interactions. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.19, no.3, 1451-1459.
Kim, Deok-Ho, Han, Karam, Gupta, Kshitiz, Kwon, Keon W., Suh, Kahp-Yang, Levchenko, Andre. Mechanosensitivity of fibroblast cell shape and movement to anisotropic substratum topography gradients. Biomaterials, vol.30, no.29, 5433-5444.
Sun, Xiaoyu, Driscoll, Meghan K., Guven, Can, Das, Satarupa, Parent, Carole A., Fourkas, John T., Losert, Wolfgang. Asymmetric nanotopography biases cytoskeletal dynamics and promotes unidirectional cell guidance. Proceedings of the National Academy of Sciences of the United States of America, vol.112, no.41, 12557-12562.
Tang, Q. Y., Qian, W. X., Xu, Y. H., Gopalakrishnan, S., Wang, J. Q., Lam, Y. W., Pang, S. W.. Control of cell migration direction by inducing cell shape asymmetry with patterned topography. Journal of biomedical materials research. Part A, vol.103, no.7, 2383-2393.
Arnold, Marco, Hirschfeld-Warneken, Vera C., Lohmüller, Theobald, Heil, Patrick, Blümmel, Jacques, Cavalcanti-Adam, Elisabetta A., López-García, Mónica, Walther, Paul, Kessler, Horst, Geiger, Benjamin, Spatz, Joachim P.. Induction of Cell Polarization and Migration by a Gradient of Nanoscale Variations in Adhesive Ligand Spacing. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.8, no.7, 2063-2069.
Kim, Deok-Ho, Seo, Chang-Ho, Han, Karam, Kwon, Keon Woo, Levchenko, Andre, Suh, Kahp-Yang. Guided Cell Migration on Microtextured Substrates with Variable Local Density and Anisotropy. Advanced functional materials, vol.19, no.10, 1579-1586.
Paradisanos, I., Fotakis, C., Anastasiadis, S. H., Stratakis, E.. Gradient induced liquid motion on laser structured black Si surfaces. Applied physics letters, vol.107, no.11, 111603-.
Ranella, A., Barberoglou, M., Bakogianni, S., Fotakis, C., Stratakis, E.. Tuning cell adhesion by controlling the roughness and wettability of 3D micro/nano silicon structures. Acta Biomaterialia: structure-property-function relationships in biomaterials, vol.6, no.7, 2711-2720.
Calof, A L, Lander, A D. Relationship between neuronal migration and cell-substratum adhesion: laminin and merosin promote olfactory neuronal migration but are anti- adhesive. The Journal of cell biology, vol.115, no.3, 779-794.
Faissner, Andreas, Reinhard, Jacqueline. The extracellular matrix compartment of neural stem and glial progenitor cells. GLIA, vol.63, no.8, 1330-1349.
Martini, Francisco J., Valiente, Manuel, López Bendito, Guillermina, Szabó, Gábor, Moya, Fernando, Valdeolmillos, Miguel, Marín, Oscar. Biased selection of leading process branches mediates chemotaxis during tangential neuronal migration. Development, vol.136, no.1, 41-50.
Calderon de Anda, Froylan, Gärtner, Annette, Tsai, Li-Huei, Dotti, Carlos G.. Pyramidal neuron polarity axis is defined at the bipolar stage. Journal of cell science, vol.121, no.2, 178-185.
Marín, Oscar, Valiente, Manuel, Ge, Xuecai, Tsai, Li-Huei. Guiding neuronal cell migrations.. Cold Spring Harbor perspectives in biology, vol.2, no.2, a001834-.
Nadarajah, Bagirathy, Parnavelas, John G.. Modes of neuronal migration in the developing cerebral cortex. Nature reviews. Neuroscience, vol.3, no.6, 423-432.
Ayala, Ramsés, Shu, Tianzhi, Tsai, Li-Huei. Trekking across the Brain: The Journey of Neuronal Migration. Cell, vol.128, no.1, 29-43.
Simitzi, C., Efstathopoulos, P., Kourgiantaki, A., Ranella, A., Charalampopoulos, I., Fotakis, C., Athanassakis, I., Stratakis, E., Gravanis, A.. Laser fabricated discontinuous anisotropic microconical substrates as a new model scaffold to control the directionality of neuronal network outgrowth. Biomaterials, vol.67, 115-128.
Er, Jun Cheng, Leong, Cheryl, Teoh, Chai Lean, Yuan, Qiang, Merchant, Paolomi, Dunn, Matthew, Sulzer, David, Sames, Dalibor, Bhinge, Akshay, Kim, Dongyoon, Kim, Seong‐Min, Yoon, Myung‐Han, Stanton, Lawrence W., Je, Shawn H., Yun, Seong‐Wook, Chang, Young‐Tae. NeuO: a Fluorescent Chemical Probe for Live Neuron Labeling. Angewandte Chemie. international edition, vol.54, no.8, 2442-2446.
Cooper, J.A.. A mechanism for inside-out lamination in the neocortex. Trends in neurosciences, vol.31, no.3, 113-119.
Hayashi, Kanehiro, Kubo, Ken-ichiro, Kitazawa, Ayako, Nakajima, Kazunori. Cellular dynamics of neuronal migration in the hippocampus. Frontiers in neuroscience, vol.9, 135-.
Ward, Michael E., Jiang, Hui, Rao, Yi. Regulated formation and selection of neuronal processes underlie directional guidance of neuronal migration. Molecular and cellular neurosciences, vol.30, no.3, 378-387.
Tanaka, Daisuke H., Yanagida, Mitsutoshi, Zhu, Yan, Mikami, Sakae, Nagasawa, Takashi, Miyazaki, Jun-ichi, Yanagawa, Yuchio, Obata, Kunihiko, Murakami, Fujio. Random Walk Behavior of Migrating Cortical Interneurons in the Marginal Zone: Time-Lapse Analysis in Flat-Mount Cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.29, no.5, 1300-1311.
Yanagida, Mitsutoshi, Miyoshi, Ryota, Toyokuni, Ryohei, Zhu, Yan, Murakami, Fujio. Dynamics of the leading process, nucleus, and Golgi apparatus of migrating cortical interneurons in living mouse embryos. Proceedings of the National Academy of Sciences of the United States of America, vol.109, no.41, 16737-16742.
Seo, Jeongyeon, Kim, Juan, Joo, Sunghoon, Choi, Ji Yu, Kang, Kyungtae, Cho, Woo Kyung, Choi, Insung S.. Nanotopography‐Promoted Formation of Axon Collateral Branches of Hippocampal Neurons. Small, vol.14, no.33, 1801763-.
Xie, Chong, Hanson, Lindsey, Xie, Wenjun, Lin, Ziliang, Cui, Bianxiao, Cui, Yi. Noninvasive Neuron Pinning with Nanopillar Arrays. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.10, no.10, 4020-4024.
Noctor, Stephen C, Martínez-Cerdeño, Verónica, Ivic, Lidija, Kriegstein, Arnold R. Cortical neurons arise in symmetric and asymmetric division zones and migrate through specific phases. Nature neuroscience, vol.7, no.2, 136-144.
Xu, Zhen, Fang, Peilin, Xu, Bingzhe, Lu, Yufeng, Xiong, Jinghui, Gao, Feng, Wang, Xin, Fan, Jun, Shi, Peng. High-throughput three-dimensional chemotactic assays reveal steepness-dependent complexity in neuronal sensation to molecular gradients. Nature communications, vol.9, no.1, 4745-.
Kitazawa, Ayako, Kubo, Ken-ichiro, Hayashi, Kanehiro, Matsunaga, Yuki, Ishii, Kazuhiro, Nakajima, Kazunori. Hippocampal Pyramidal Neurons Switch from a Multipolar Migration Mode to a Novel “Climbing” Migration Mode during Development. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.34, no.4, 1115-1126.
Kang, Kyungtae, Yoon, Seo Young, Choi, Sung‐Eun, Kim, Mi‐Hee, Park, Matthew, Nam, Yoonkey, Lee, Jin Seok, Choi, Insung S.. Cytoskeletal Actin Dynamics are Involved in Pitch‐Dependent Neurite Outgrowth on Bead Monolayers. Angewandte Chemie. international edition, vol.53, no.24, 6075-6079.
Hoffman-Kim, Diane, Mitchel, Jennifer A., Bellamkonda, Ravi V.. Topography, Cell Response, and Nerve Regeneration. Annual review of biomedical engineering, vol.12, no.1, 203-231.
Seo, Jeongyeon, Youn, Wongu, Choi, Ji Yu, Cho, Hyeoncheol, Choi, Hyunwoo, Lanara, Christina, Stratakis, Emmanuel, Choi, Insung S.. Neuro‐taxis: Neuronal movement in gradients of chemical and physical environments. Developmental neurobiology, vol.80, no.9, 361-377.
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