The biology of vernix caseosa
Open Access
- 19 September 2006
- journal article
- Published by Wiley in International Journal of Cosmetic Science
- Vol. 28 (5) , 319-333
- https://doi.org/10.1111/j.1467-2494.2006.00338.x
Abstract
The biology and physical properties of the uniquely human skin cream ‘vernix caseosa’ are discussed. This material coats the foetal skin surface during the last trimester of gestation and provides multiple beneficial functions for the foetus and newborn infant. Vernix has a complex structure similar to stratum corneum but lacks lipid lamellae and is more plastic due to the absence of desmosomal constraints. In utero, vernix is made in part by foetal sebaceous glands, interacts with pulmonary surfactant, detaches into the amniotic fluid, and is swallowed by the foetus. At the time of birth, vernix has a remarkably constant water content approximating 80%. Postnatally, vernix is simultaneously a cleanser, a moisturizer, an anti-infective, and an anti-oxidant. Vernix facilitates acid mantle development and supports normal bacterial colonization. Its hydrated cellular structure and unusual lipid composition provide a ‘best’ solution for the needs of the foetus and newborn, not least of which is the attraction of caregivers. Vernix is an important natural biomaterial of potential interest to cosmetic scientists, and other disciplines involved in product development and therapies targeting the complex interface between the stratum corneum and a changing terrestrial environment.Keywords
This publication has 52 references indexed in Scilit:
- TRANSEPIDERMAL WATER LOSS IN NEWBORN INFANTSActa Paediatrica, 2008
- The Organization of Human Epidermis: Functional Epidermal Units and Phi ProportionalityJournal of Investigative Dermatology, 2003
- Antimicrobial Polypeptides of Human Vernix Caseosa and Amniotic Fluid: Implications for Newborn Innate DefensePediatric Research, 2003
- Sebaceous Gland Secretion is a Major Physiologic Route of Vitamin E Delivery to SkinJournal of Investigative Dermatology, 1999
- Glutamine: is it a conditionally required nutrient for the human gastrointestinal system?Journal of the American College of Nutrition, 1996
- Amniotic fluid epidermal growth factor levels in normal and abnormal pregnanciesJournal of the Society for Gynecologic Investigation, 1996
- Barrier function regulates epidermal lipid and DNA synthesisBritish Journal of Dermatology, 1993
- Cornification and Basement Membrane Formation in a Bilayered Human Skin Equivalent Maintained at an Air-Liquid InterfaceJournal of Burn Care & Rehabilitation, 1992
- Filaggrin breakdown to water binding compounds during development of the rat stratum corneum is controlled by the water activity of the environmentDevelopmental Biology, 1986
- The Ultrastructure of the Skin of Human EmbryosJournal of Investigative Dermatology, 1966