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- 3D-SeboSkin Model for Human ex vivo Studies of Hidradenitis Suppurativa/Acne Inversa
- 605 3D-SeboSkin model application in Hidradenitis suppurativa/acne inversa
- 600 Differential Molecular Signature of Dermal Papilla Cells (DPCs) from Balding and Non balding Scalp in 2D, 3D culture and Co-culture with Adipose-derived stem cells (ASCs)
- Swiss Practice Recommendations for the Management of Hidradenitis Suppurativa/Acne Inversa
- Hidradenitis Suppurativa Tunnels: Unveiling a Unique Disease Entity
- A Comprehensive Review: The Bidirectional Role of Sebum in Skin Health
- Design and fabrication of customizable microneedles enabled by 3D printing for biomedical applications
- Bioengineering a 3D integumentary organ system from iPS cells using an in vivo transplantation model
- Long-term expansion and differentiation of adult murine epidermal stem cells in 3D organoid cultures
- Tannic acid-functionalized 3D porous nanofiber sponge for antibiotic-free wound healing with enhanced hemostasis, antibacterial, and antioxidant properties
- Surface Tension Guided Hanging-Drop: Producing Controllable 3D Spheroid of High-Passaged Human Dermal Papilla Cells and Forming Inductive Microtissues for Hair-Follicle Regeneration
- 3D bioprinting of integral ADSCs-NO hydrogel scaffolds to promote severe burn wound healing
- 3D Bioprinting for Engineered Tissue Constructs and Patient‐Specific Models: Current Progress and Prospects in Clinical Applications
- Methods for the isolation and 3D culture of dermal papilla cells from human hair follicles
- Advances and Innovations of 3D Bioprinting Skin
- Epithelial differentiation of human adipose-derived stem cells (hASCs) undergoing three-dimensional (3D) cultivation with collagen sponge scaffold (CSS) via an indirect co-culture strategy
- Incorporation of hair follicles in 3D bioprinted models of human skin
- Controllable Production of Transplantable Adult Human High-Passage Dermal Papilla Spheroids Using 3D Matrigel Culture
- 3D Printing—A “Touch-Button” Approach to Manufacture Microneedles for Transdermal Drug Delivery
- 3D printed microneedles: revamping transdermal drug delivery systems
- The 3D Bioprinted Scaffolds for Wound Healing
- Culture and Differentiation of Human Hair Follicle Dermal Papilla Cells in a Soft 3D Self-Assembling Peptide Scaffold
- Silk fibroin–gelatin photo-crosslinked 3D-bioprinted hydrogel with MOF-methylene blue nanoparticles for infected wound healing
- Fabrication of a 3D hair follicle‐like hydrogel by soft lithography
- Advancements in 3D skin bioprinting: processes, bioinks, applications and sensor integration
- Wnt1a maintains characteristics of dermal papilla cells that induce mouse hair regeneration in a 3D preculture system
- 3D bioprinting of engineered exosomes secreted from M2-polarized macrophages through immunomodulatory biomaterial promotes in vivo wound healing and angiogenesis
- Sculpting the future: A narrative review of 3D printing in plastic surgery and prosthetic devices
- 3D Printing of Skin Equivalents with Hair Follicle Structures and Epidermal‐Papillary‐Dermal Layers Using Gelatin/Hyaluronic Acid Hydrogels
- 3D Printed Hollow Microneedles for Treating Skin Wrinkles Using Different Anti-Wrinkle Agents: A Possible Futuristic Approach