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Updated: Feb 12, 2026

Isolation of Mouse Epidermal Keratinocytes and Their In Vitro Clonogenic Culture
Published on: August 10, 2019
Degraded melanocores are incompetent to protect epidermal keratinocytes against UV damage
Wen-Juan Yi1, Meng-Yun Su1, Ying Shi1
1a Department of Dermatology , Renmin Hospital of Wuhan University , Wuhan 430060 , China.
Abstract:
Melanosomes are membrane-bound intracellular organelles that are uniquely generated by melanocytes (MCs) in the basal layer of human epidermis. Highly pigmented mature melanosomes are transferred from MCs to keratinocytes (KCs), and then positioned in the supra-nuclear region to ensure protection against ultraviolet radiation (UVR). However, the molecular mechanism underlying melanosome (or melanin pigment) transfer remains enigmatic. Emerging evidence shows that exo-/endo-cytosis of the melanosome core (termed melanocore) has been considered as the main transfer manner between MCs and KCs. As KCs in the skin migrate up from the basal layer and undergo terminal differentiation, the melanocores they have taken up from MCs are subjected to degradation. In this study, we isolated individual melanocores from human MCs in culture and then induced their destruction/disruption using a physical approach. The results demonstrate that the ultrastructural integrity of melanocores is essential for their antioxidant and photoprotective properties. In addition, we also show that cathepsin V (CTSV), a lysosomal acid protease, is involved in melanocore degradation in calcium-induced differentiated KCs and is also suppressed in KCs following exposure to UVA or UVB radiation. Thus, our study demonstrates that change in the proportion of melanocores in the intact/undegraded state by CTSV-related degradation in KCs affects photoprotection of the skin.
Insights
The structural integrity of melanocores is vital for skin
Area of Science:
- Dermatology and Cell Biology
- Skin Physiology
- Melanogenesis Research
Background:
- Melanosomes are crucial organelles produced by melanocytes (MCs) in the epidermis.
- These pigmented structures protect keratinocytes (KCs) from UV radiation (UVR).
- The exact mechanism of melanosome transfer and degradation remains unclear.
Purpose of the Study:
- To investigate the role of melanocore ultrastructure in photoprotection.
- To identify molecular factors involved in melanocore degradation within KCs.
- To understand how melanocore degradation impacts skin's UV defense.
Main Methods:
- Isolation of individual melanocores from human MCs.
- Physical induction of melanocore disruption.
- Analysis of melanocore degradation in differentiated KCs.
- Assessment of cathepsin V (CTSV) involvement.
Main Results:
- Melanocore ultrastructural integrity is essential for antioxidant and photoprotective functions.
- Cathepsin V (CTSV) mediates melanocore degradation in differentiated KCs.
- CTSV activity is suppressed in KCs upon UVA/UVB exposure.
- Melanocore degradation by CTSV influences skin's UV protection.
Conclusions:
- The structural integrity of melanocores is critical for their protective functions.
- Cathepsin V plays a key role in regulating melanocore degradation in keratinocytes.
- Modulating melanocore degradation impacts the skin's ability to protect against UV radiation.
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