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Research 30 of 890
- Role of the bone morphogenetic protein signalling in skin carcinogenesis. Effect of transgenic overexpression of BMP antognist Noggin on skin tumour development; molecular mechanisms underlying tumour suppressive role of the BMP signalling in skin.
- Morpho-Regulation of Ectodermal Organs
- The role of Wnt and Shh signaling systems in noggin-induced tumorigenesis
- Estrogen modulates mesenchymal-epidermal interactions in the adult nipple
- Noggin overexpression inhibits eyelid opening by altering epidermal apoptosis and differentiation
- Development, Structure, and Keratin Expression in <i>C57BL/6J</i> Mouse Eccrine Glands
- Bone Morphogenetic Protein Signaling Regulates Postnatal Hair Follicle Differentiation and Cycling
- Bone Morphogenetic Protein Antagonist Noggin Promotes Skin Tumorigenesis via Stimulation of the Wnt and Shh Signaling Pathways
- Conversion of the Nipple to Hair-Bearing Epithelia by Lowering Bone Morphogenetic Protein Pathway Activity at the Dermal-Epidermal Interface
- Conditional Activin Receptor Type 1B (Acvr1b) Knockout Mice Reveal Hair Loss Abnormality
- The cellular basis of mechanosensory Merkel-cell innervation during development
- Stimulation of ectodermal organ development by Ectodysplasin-A1
- Mutant laboratory mice with abnormalities in hair follicle morphogenesis, cycling, and/or structure: An update
- Secretory phospholipase A2-IIA overexpressing mice exhibit cyclic alopecia mediated through aberrant hair shaft differentiation and impaired wound healing response
- Regenerative Hair Waves in Aging Mice and Extra-Follicular Modulators Follistatin, Dkk1, and Sfrp4
- Transient stimulation of TRPV4‐expressing keratinocytes promotes hair follicle regeneration in mice
- mTOR signaling promotes stem cell activation via counterbalancing BMP-mediated suppression during hair regeneration
- Molecular biology of hair morphogenesis: Development and cycling
- Shh maintains dermal papilla identity and hair morphogenesis via a Noggin–Shh regulatory loop
- Genetically modified laboratory mice with sebaceous glands abnormalities
- Progressive Alopecia Reveals Decreasing Stem Cell Activation Probability during Aging of Mice with Epidermal Deletion of DNA Methyltransferase 1
- β-catenin Activity in the Dermal Papilla Regulates Morphogenesis and Regeneration of Hair
- Impaired wound healing in transgenic mice overexpressing the activin antagonist follistatin in the epidermis
- Overexpression of Smad7 results in severe pathological alterations in multiple epithelial tissues
- Neural Stem Cells Restore Hair Growth through Activation of the Hair Follicle Niche
- The overexpression of R-spondin 3 affects hair morphogenesis and hair development along with the formation and maturation of the hair follicle stem cells
- Patched-assoziierte Tumoren: Modifikatorgene und Pathogenese
- Control of hair follicle cell fate by underlying mesenchyme through a CSL–Wnt5a–FoxN1 regulatory axis
- Macrophages Contribute to the Cyclic Activation of Adult Hair Follicle Stem Cells
- A role for p75 neurotrophin receptor in the control of apoptosis‐driven hair follicle regression