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Oriented clonal cell dynamics enables accurate growth and shaping of vertebrate cartilage

Kaucka, Marketa (author)
Karolinska Institutet
Zikmund, Tomas (author)
Tesarova, Marketa (author)
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Gyllborg, Daniel (author)
Karolinska Institutet
Hellander, Andreas (author)
Uppsala universitet,Avdelningen för beräkningsvetenskap,Tillämpad beräkningsvetenskap
Jaros, Josef (author)
Karolinska Institutet
Kaiser, Jozef (author)
Petersen, Julian (author)
Szarowska, Bara (author)
Newton, Phillip T. (author)
Karolinska Institutet
Dyachuk, Vyacheslav (author)
Karolinska Institutet
li, Lei (author)
Qian, Hong (author)
Karolinska Institutet
Johansson, Anne-Sofie (author)
Mishina, Yuji (author)
Currie, Joshua D. (author)
Tanaka, Elly M. (author)
Erickson, Alek (author)
Dudley, Andrew (author)
Brismar, Hjalmar (author)
Karolinska Institutet,KTH,Cellulär biofysik,Science for Life Laboratory, SciLifeLab
Southam, Paul (author)
Coen, Enrico (author)
Chen, Min (author)
Weinstein, Lee S. (author)
Hampl, Ales (author)
Arenas, Ernest (author)
Karolinska Institutet
Chagin, Andrei S. (author)
Karolinska Institutet
Fried, Kaj (author)
Karolinska Institutet
Adameyko, Igor (author)
Karolinska Institutet
Currie, Josh (author)
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 (creator_code:org_t)
Elife Sciences Publications LTD, 2017
2017
English.
In: eLIFE. - : Elife Sciences Publications LTD. - 2050-084X. ; 6
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Cartilaginous structures are at the core of embryo growth and shaping before the bone forms. Here we report a novel principle of vertebrate cartilage growth that is based on introducing transversally-oriented clones into pre-existing cartilage. This mechanism of growth uncouples the lateral expansion of curved cartilaginous sheets from the control of cartilage thickness, a process which might be the evolutionary mechanism underlying adaptations of facial shape. In rod-shaped cartilage structures (Meckel, ribs and skeletal elements in developing limbs), the transverse integration of clonal columns determines the well-defined diameter and resulting rod-like morphology. We were able to alter cartilage shape by experimentally manipulating clonal geometries. Using in silico modeling, we discovered that anisotropic proliferation might explain cartilage bending and groove formation at the macro-scale.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Industriell bioteknik -- Biomaterial (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Industrial Biotechnology -- Bio Materials (hsv//eng)
NATURVETENSKAP  -- Biologi -- Cellbiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Cell Biology (hsv//eng)
NATURVETENSKAP  -- Data- och informationsvetenskap -- Bioinformatik (hsv//swe)
NATURAL SCIENCES  -- Computer and Information Sciences -- Bioinformatics (hsv//eng)

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