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      Pattern production through a chiral chasing mechanism

      Physical Review E
      American Physical Society (APS)

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          Pattern formation outside of equilibrium

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            Instabilities and pattern formation in crystal growth

            J. Langer (1980)
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              WNT and DKK determine hair follicle spacing through a reaction-diffusion mechanism.

              Mathematical reaction-diffusion models have been suggested to describe formation of animal pigmentation patterns and distribution of epidermal appendages. However, the crucial signals and in vivo mechanisms are still elusive. Here we identify WNT and its inhibitor DKK as primary determinants of murine hair follicle spacing, using a combined experimental and computational modeling approach. Transgenic DKK overexpression reduces overall appendage density. Moderate suppression of endogenous WNT signaling forces follicles to form clusters during an otherwise normal morphogenetic program. These results confirm predictions of a WNT/DKK-specific mathematical model and provide in vivo corroboration of the reaction-diffusion mechanism for epidermal appendage formation.
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                Author and article information

                Journal
                PLEEE8
                Physical Review E
                Phys. Rev. E
                American Physical Society (APS)
                2470-0045
                2470-0053
                September 2017
                September 1 2017
                : 96
                : 3
                Article
                10.1103/PhysRevE.96.032401
                29347000
                0e05fbcc-7526-4f02-8c7d-d8ad3710141b
                © 2017

                https://link.aps.org/licenses/aps-default-license

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