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Updated: Mar 31, 2026

Transcutaneous Microcirculatory Imaging in Preterm Neonates
Published on: December 31, 2015
Skin Physiology of the Neonate and Infant: Clinical Implications
Teresa Oranges1, Valentina Dini1, Marco Romanelli1
1Wound Healing Research Unit, Department of Dermatology, University of Pisa , Pisa, Italy .
Insights
Infant skin matures after birth, requiring objective assessments of hydration and barrier function. Understanding these changes is crucial for preventing infections and ensuring proper care for all newborns.
Area of Science:
- Dermatology and Neonatology: Focuses on infant skin physiology and development.
Background:
- Infant skin possesses unique characteristics due to adaptation from a wet in utero environment to a drier external world post-birth.
- Understanding these evolving properties is essential for providing appropriate infant skincare.
Approach:
- Utilizes noninvasive biophysical techniques to objectively assess infant skin development.
- Measures key parameters like skin hydration, transepidermal water loss, and pH for accurate evaluation.
Key Points:
- Objective measurements of skin physiology parameters are vital for assessing infant skin maturation.
- Standardized procedures allow for reproducible assessment of skin barrier integrity and function over time.
- Preterm infants have a less developed skin barrier, increasing risks of infection and complications.
Conclusions:
- Detailed, objective evaluations of infant skin maturation are necessary to enhance infant skincare protocols.
- Standardized protocols can lead to more personalized care for full-term, preterm, and all infants.
- Improved understanding and monitoring of infant skin barrier function are critical for overall infant health.
Abstract:
Significance: The skin is a complex and dynamic organ that performs several vital functions. The maturation process of the skin starts at birth with the adaption of the skin to the comparatively dry environment compared to the in utero milieu. This adaptive flexibility results in the unique properties of infant skin. To deliver appropriate care to infant skin, it is necessary to understand that it is evolving with unique characteristics. Recent Advances: The role of biophysical noninvasive techniques in the assessment of skin development underlines the importance of an objective evaluation of skin physiology parameters. Skin hydration, transepidermal water loss, and pH values are measurable with specific instruments that give us an accurate and reproducible assessment during infant skin maturation. The recording of these values, following standard measurement procedures, allows us to evaluate the integrity of the skin barrier and to monitor the functionality of the maturing skin over time. Critical Issues: During the barrier development, impaired skin function makes the skin vulnerable to chemical damage, microbial infections, and skin diseases, possibly compromising the general health of the infant. Preterm newborns, during the first weeks of life, have an even less developed skin barrier and, therefore, are even more at risk. Thus, it is extremely important to evaluate the risk of infection, skin breakdown, topical agent absorption, and the risk of thermoregulation failure. Future Directions: Detailed and objective evaluations of infant skin maturation are necessary to improve infant skin care. The results of these evaluations should be formed into general protocols that will allow doctors and caregivers to give more personalized care to full-term newborns, preterm newborns, and infants.
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