Browse by UCL people
Group by: Type | Date
Number of items: 27.
Article
Blackie, L;
Tozluoglu, M;
Trylinski, M;
Walther, RF;
Schweisguth, F;
Mao, Y;
Pichaud, F;
(2021)
A combination of notch signaling, preferential adhesion and endocytosis induces a slow mode of cell intercalation in the Drosophila retina.
Development
10.1242/dev.197301.
(In press).
|
Davis, JR;
Luchici, A;
Mosis, F;
Thackery, J;
Salazar, JA;
Mao, Y;
Dunn, GA;
... Stramer, BM; + view all
(2015)
Inter-cellular forces orchestrate contact inhibition of locomotion.
Cell
, 161
(2)
pp. 361-373.
10.1016/j.cell.2015.02.015.
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Duda, M;
Kirkland, NJ;
Khalilgharibi, N;
Tozluoglu, M;
Yuen, AC;
Carpi, N;
Bove, A;
... Mao, Y; + view all
(2019)
Polarization of Myosin II Refines Tissue Material Properties to Buffer Mechanical Stress.
Developmental Cell
, 48
(2)
245-260.e7.
10.1016/j.devcel.2018.12.020.
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Guzmán-Herrera, A;
Mao, Y;
(2020)
Polarity during tissue repair, a multiscale problem.
Current Opinion in Cell Biology
, 62
pp. 31-36.
10.1016/j.ceb.2019.07.015.
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Heller, D;
Hoppe, A;
Restrepo, S;
Gatti, L;
Tournier, AL;
Tapon, N;
Basler, K;
(2016)
EpiTools: An Open-Source Image Analysis Toolkit for Quantifying Epithelial Growth Dynamics.
Developmental Cell
, 36
(1)
pp. 103-116.
10.1016/j.devcel.2015.12.012.
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Ioannou, F;
Dawi, MA;
Tetley, RJ;
Mao, Y;
Muñoz, JJ;
(2020)
Development of a New 3D Hybrid Model for Epithelia Morphogenesis.
Frontiers in Bioengineering and Biotechnology
, 8
, Article 405. 10.3389/fbioe.2020.00405.
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Khalilgharibi, N;
Fouchard, J;
Asadipour, N;
Barrientos, R;
Duda, M;
Bonfanti, A;
Yonis, A;
... Charras, G; + view all
(2019)
Stress relaxation in epithelial monolayers is controlled by the actomyosin cortex.
Nature Physics
, 15
pp. 839-847.
10.1038/s41567-019-0516-6.
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Khalilgharibi, N;
Mao, Y;
(2021)
To form and function: on the role of basement membrane mechanics in tissue development, homeostasis and disease.
Open Biology
, 11
(2)
, Article 200360. 10.1098/rsob.200360.
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Kirkland, NJ;
Yuen, AC;
Tozluoglu, M;
Hui, N;
Paluch, EK;
Mao, Y;
(2020)
Tissue Mechanics Regulate Mitotic Nuclear Dynamics during Epithelial Development.
Current Biology
, 30
(13)
pp. 2419-2432.
10.1016/j.cub.2020.04.041.
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Lam, MSY;
Lisica, A;
Ramkumar, N;
Hunter, G;
Mao, Y;
Charras, G;
Baum, B;
(2020)
Isotropic myosin-generated tissue tension is required for the dynamic orientation of the mitotic spindle.
Molecular Biology of the Cell
, 31
(13)
pp. 1370-1379.
10.1091/mbc.E19-09-0545.
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Mao, Y;
Baum, B;
(2015)
Tug of war - The influence of opposing physical forces on epithelial cell morphology.
Developmental Biology
, 401
(1)
92 - 102.
10.1016/j.ydbio.2014.12.030.
|
Mao, Y;
Green, JBA;
(2017)
Systems morphodynamics: understanding the development of tissue hardware.
Philosophical Transactions of the Royal Society B: Biological Sciences
, 372
(1720)
, Article 20160505. 10.1098/rstb.2016.0505.
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Mao, Y;
Kerr, M;
Freeman, M;
(2008)
Modulation of Drosophila Retinal Epithelial Integrity by the Adhesion Proteins Capricious and Tartan.
PLoS ONE
, 3
(3)
, Article e1827. 10.1371/journal.pone.0001827.
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Mao, Y;
Tournier, AL;
Hoppe, A;
Kester, L;
Thompson, BJ;
Tapon, N;
(2013)
Differential proliferation rates generate patterns of mechanical tension that orient tissue growth.
The EMBO Journal
, 32
(21)
2790 - 2803.
10.1038/emboj.2013.197.
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Mosaffa, P;
Tetley, RJ;
Rodriguez-Ferran, A;
Mao, Y;
Munoz, JJ;
(2020)
Junctional and cytoplasmic contributions in wound healing.
Journal of the Royal Society, Interface
, 17
(169)
, Article 20200264. 10.1098/rsif.2020.0264.
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Paci, G;
Mao, Y;
(2021)
Forced into shape: Mechanical forces in Drosophila development and homeostasis.
Seminars in Cell & Developmental Biology
10.1016/j.semcdb.2021.05.026.
(In press).
|
Phillips, Thomas AA;
Caprettini, Valeria;
Aggarwal, Nandini;
Marcotti, Stefania;
Tetley, Rob;
Mao, Yanlan;
Shaw, Tanya;
... Cox, Susan; + view all
(2023)
A method for reproducible high-resolution imaging of 3D cancer cell spheroids.
Journal of Microscopy
10.1111/jmi.13169.
(In press).
|
Sanchez-Gutierrez, D;
Tozluoglu, M;
Barry, JD;
Pascual, A;
Mao, Y;
Escudero, LM;
(2016)
Fundamental physical cellular constraints drive self-organization of tissues.
The EMBO Journal
, 35
(1)
pp. 77-88.
10.15252/embj.201592374.
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Steib, Emmanuelle;
Tetley, Rob;
Laine, Romain F;
Norris, Dominic P;
Mao, Yanlan;
Vermot, Julien;
(2022)
TissUExM enables quantitative ultrastructural analysis in whole vertebrate embryos by expansion microscopy.
Cell Reports Methods
, 2
(10)
, Article 100311. 10.1016/j.crmeth.2022.100311.
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Tetley, RJ;
Mao, Y;
(2018)
The same but different: cell intercalation as a driver of tissue deformation and fluidity.
Philosophical Transactions B: Biological Sciences
, 373
(1759)
, Article 20170328. 10.1098/rstb.2017.0328.
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Tetley, RJ;
Staddon, MF;
Heller, D;
Hoppe, A;
Banerjee, S;
Mao, Y;
(2019)
Tissue fluidity promotes epithelial wound healing.
Nature Physics
, 15
pp. 1195-1203.
10.1038/s41567-019-0618-1.
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Tozluoǧlu, M;
Duda, M;
Kirkland, NJ;
Barrientos, R;
Burden, JJ;
Muñoz, JJ;
Mao, Y;
(2019)
Planar Differential Growth Rates Initiate Precise Fold Positions in Complex Epithelia.
Developmental Cell
, 51
(3)
299-312.e4.
10.1016/j.devcel.2019.09.009.
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Tozluoglu, M;
Mao, Y;
Bates, PA;
Sahai, E;
(2015)
Cost-benefit analysis of the mechanisms that enable migrating cells to sustain motility upon changes in matrix environments.
Journal of the Royal Society Interface
, 12
(106)
, Article 20141355. 10.1098/rsif.2014.1355.
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Vicente-Munuera, P;
Gómez-Gálvez, P;
Tetley, RJ;
Forja, C;
Tagua, A;
Letrán, M;
Tozluoglu, M;
... Escudero, LM; + view all
(2020)
EpiGraph: an open-source platform to quantify epithelial organization.
Bioinformatics
, 36
(4)
pp. 1314-1316.
10.1093/bioinformatics/btz683.
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Zhu, H;
Mao, Y;
(2015)
Robustness of cell cycle control and flexible orders of signaling events.
Scientific Reports
, 5
, Article 14627. 10.1038/srep14627.
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Zhu, H;
Owen, MR;
Mao, Y;
(2016)
The spatiotemporal order of signaling events unveils the logic of development signaling.
Bioinformatics
, 32
(15)
pp. 2313-2320.
10.1093/bioinformatics/btw121.
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Thesis
Kirkland, Natalie Jayne;
(2019)
Investigating how mechanical perturbation and tissue architecture affect cell behaviours in pseudostratified epithelia of Drosophila melanogaster.
Doctoral thesis (Ph.D), UCL (University College London).
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