Cell chirality: emergence of asymmetry from cell culture

Author:

Wan Leo Q.123,Chin Amanda S.1,Worley Kathryn E.1,Ray Poulomi12

Affiliation:

1. Department of Biomedical Engineering, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA

2. Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA

3. Center for Modeling, Simulation and Imaging in Medicine, Rensselaer Polytechnic Institute, 110 8th Street, Troy, NY 12180, USA

Abstract

Increasing evidence suggests that intrinsic cell chirality significantly contributes to the left–right (LR) asymmetry in embryonic development, which is a well-conserved characteristic of living organisms. With animal embryos, several theories have been established, but there are still controversies regarding mechanisms associated with embryonic LR symmetry breaking and the formation of asymmetric internal organs. Recently, in vitro systems have been developed to determine cell chirality and to recapitulate multicellular chiral morphogenesis on a chip. These studies demonstrate that chirality is indeed a universal property of the cell that can be observed with well-controlled experiments such as micropatterning. In this paper, we discuss the possible benefits of these in vitro systems to research in LR asymmetry, categorize available platforms for single-cell chirality and multicellular chiral morphogenesis, and review mathematical models used for in vitro cell chirality and its applications in in vivo embryonic development. These recent developments enable the interrogation of the intracellular machinery in LR axis establishment and accelerate research in birth defects in laterality. This article is part of the themed issue ‘Provocative questions in left–right asymmetry’.

Funder

American Heart Association

March of Dimes Foundation

Division of Civil, Mechanical and Manufacturing Innovation

National Institute of Child Health and Human Development

Pew Charitable Trusts

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

Reference39 articles.

1. Left-Right Symmetry Breaking in Tissue Morphogenesis via Cytoskeletal Mechanics

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3. Micropatterned mammalian cells exhibit phenotype-specific left-right asymmetry

4. Polarity reveals intrinsic cell chirality

5. Micropatterning of cells reveals chiral morphogenesis

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