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Re-epithelialization and immune cell behaviour in an ex vivo human skin model

2020·8.278 Zitationen·Scientific ReportsOpen Access
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8.278

Zitationen

5

Autoren

2020

Jahr

Abstract

keratinocyte layers, indicating that proliferation and migration were involved in wound closure. After eight to twelve days, a multi-layered epidermis was formed expressing epidermal differentiation markers (K10, filaggrin, DSG-1, CDSN). Investigations about immune cell-specific manners revealed more T cells in the blister roof epidermis compared to normal epidermis. We identified several cell populations in blister roof epidermis and suction blister fluid that are absent in normal epidermis which correlated with their decrease in the dermis, indicating a dermal efflux upon negative pressure. Together, our model recapitulates the main features of epithelial wound regeneration, and can be applied for testing wound healing therapies and investigating underlying mechanisms.

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Wound Healing and TreatmentsTendon Structure and TreatmentDermatologic Treatments and Research
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