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Scanning electron microscopy of the epidermal lamina densa in normal human skin
1Department of Dermatology, Faculty of Medicine, Tottori University, Yonago, Japan.
Insights
This study reveals the detailed ultrastructure of the epidermal lamina densa, identifying cobblestone-like structures expressing type IV collagen and underlying microfilaments, anchoring fibrils, and oxytalan fibers.
Area of Science:
- Dermatology
- Cell Biology
- Microscopy
Background:
- The lamina densa is a critical component of the epidermal basement membrane.
- Understanding its ultrastructure is essential for comprehending skin biology and disease.
Purpose of the Study:
- To elucidate the detailed surface ultrastructure of the human epidermal lamina densa.
- To investigate the localization of type IV collagen within the lamina densa.
- To identify the filamentous elements underlying the lamina densa.
Main Methods:
- High-power scanning electron microscopy (SEM) of human epidermis treated with sodium chloride.
- Transmission and scanning immunoelectron microscopy (IEM) for type IV collagen localization.
- Trypsinization to reveal underlying structures.
Main Results:
- The lamina densa surface exhibits microridges and microvalleys composed of 7-15 nm cobblestone-like structures expressing type IV collagen.
- Trypsinization revealed 10 nm microfilaments with beaded appearances, similar to the surface structures.
- Anchoring fibrils, oxytalan fibers, and thinner filaments were observed beneath the lamina densa, along with a deeper network of collagen and possibly elaunin fibers.
Conclusions:
- The study provides a detailed ultrastructural map of the epidermal lamina densa and its associated filamentous network.
- Type IV collagen is a key component of the cobblestone-like structures on the lamina densa surface.
- The findings enhance our understanding of the structural organization of the dermal-epidermal junction.
Abstract:
The lamina densa of normal human epidermis was exposed by treatment with 1 M sodium chloride and was examined by high-power scanning electron microscopy before and after trypsinization. Localization of type IV collagen in the lamina densa was also studied by transmission and scanning immunoelectron microscopy. Before trypsinization, the surface of the lamina densa consisted of microridges and microvalleys. The microridges varied in height and were connected with each other. They were arranged in a concentric fashion around the tips of the dermal microprojections. At a higher magnification, the surface of the lamina densa was composed of densely packed cobblestone-like structures approximately 7-15 nm in size, between which were interspaces 4-11 nm wide. These structures expressed type IV collagen. After trypsinization, the lamina densa was found to be composed of microfilaments approximately 10 nm thick showing beaded appearances. These microfilaments exhibited the same cobblestone-like structures as the lamina densa surface. Observation of the torn lamina densa demonstrated anchoring fibrils and oxytalan fibers that were attached to the lamina densa itself. Another kind of filament about 7 nm thick linked the anchoring fibrils and the oxytalan fibers. Beneath the lamina densa was a network of fibers about 40-50 nm thick, which was composed of collagen fibers and possibly also elaunin fibers. In conclusion, this study revealed the detailed surface ultrastructure of the epidermal lamina densa and its underlying filamentous elements.
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