Wound Healing: A Cellular Perspective

Заживление ран: клеточная перспектива
Geoffrey C. Gurtner, Nina Kosaric, Mélanie Rodrigues, Clark A. Bonham
2018-11-26

cellular heterogeneitymicroenvironmental factorssingle-cell technologiesskin stem cell subsetswound healing
Wound healing is one of the most complex processes in the human body. It involves the spatial and temporal synchronization of a variety of cell types with distinct roles in the phases of hemostasis, inflammation, growth, re-epithelialization, and remodeling. With the evolution of single cell technologies, it has been possible to uncover phenotypic and functional heterogeneity within several of these cell types. There have also been discoveries of rare, stem cell subsets within the skin, which are unipotent in the uninjured state, but become multipotent following skin injury. Unraveling the roles of each of these cell types and their interactions with each other is important in understanding the mechanisms of normal wound closure. Changes in the microenvironment including alterations in mechanical forces, oxygen levels, chemokines, extracellular matrix and growth factor synthesis directly impact cellular recruitment and activation, leading to impaired states of wound healing. Single cell technologies can be used to decipher these cellular alterations in diseased states such as in chronic wounds and hypertrophic scarring so that effective therapeutic solutions for healing wounds can be developed.
1
Microenvironmental changes (mechanical forces, oxygen, chemokines, extracellular matrix, growth factors) directly alter cellular recruitment and activation, causing impaired wound healing.
2
Rare skin stem cell subsets that are unipotent in uninjured skin become multipotent following injury.
3
Single-cell approaches can decipher cellular alterations in diseased states (chronic wounds, hypertrophic scarring) to guide development of effective therapies.
4
Single-cell technologies reveal phenotypic and functional heterogeneity within multiple cell types involved in wound healing.
5
Wound healing requires coordinated spatial and temporal synchronization of diverse cell types across hemostasis, inflammation, growth, re-epithelialization, and remodeling phases.

Cellular components of skin wounds (various cell types and stem cell subsets involved in wound healing)

Phenotypic and functional heterogeneity, roles and interactions of these skin wound cell types, and how microenvironmental changes (mechanical forces, oxygen, chemokines, ECM, growth factors) affect their recruitment/activation and wound healing outcomes

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2018-11-26
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Authors
Geoffrey C. Gurtner
Nina Kosaric
Mélanie Rodrigues
Clark A. Bonham
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