scholarly article | Q13442814 |
P2093 | author name string | Maksim V Plikus | |
Christian F Guerrero-Juarez | |||
P2860 | cites work | Nerve-derived sonic hedgehog defines a niche for hair follicle stem cells capable of becoming epidermal stem cells | Q42728761 |
Hedgehog signaling plays a conserved role in inhibiting fat formation | Q42806335 | ||
Characterization of the adipocyte cellular lineage in vivo | Q43077735 | ||
C/EBPalpha identifies differentiating preadipocytes around hair follicles in foetal and neonatal rat and mouse skin. | Q44851857 | ||
Ciliary Hedgehog Signaling Restricts Injury-Induced Adipogenesis. | Q46673942 | ||
Adipocyte-myofibroblast transition as a possible pathophysiological step in androgenetic alopecia. | Q48176413 | ||
Repeal and Replace: Adipocyte Regeneration in Wound Repair | Q50445749 | ||
WNT and DKK determine hair follicle spacing through a reaction-diffusion mechanism | Q51929587 | ||
PDGF isoforms induce and maintain anagen phase of murine hair follicles | Q54332374 | ||
Observations on the Remarkable (and Mysterious) Wound-Healing Process of the Bottlenose Dolphin | Q56773005 | ||
IGF-I Signalling Controls the Hair Growth Cycle and the Differentiation of Hair Shafts | Q56784822 | ||
Delayed Hair Follicle Morphogenesis and Hair Follicle Dystrophy in a Lipoatrophy Mouse Model of Pparg Total Deletion | Q59282117 | ||
Lgr6 Marks Stem Cells in the Hair Follicle That Generate All Cell Lineages of the Skin | Q63406949 | ||
Some particularities of human skin and the skin of nonhuman primates | Q70619359 | ||
Expression of transforming growth factor beta isoforms and their receptors during hair growth phases in mice | Q71663246 | ||
Changes in the skin in relation to the hair growth cycle | Q73150744 | ||
Control of murine hair follicle regression (catagen) by TGF-beta1 in vivo | Q73615626 | ||
Transforming Growth Factor-β Receptor Type I and Type II Expression During Murine Hair Follicle Development and Cycling | Q73775315 | ||
Hair cycle-dependent changes in the gene expression and protein content of transforming factor β1 and β3 in murine skin | Q73815218 | ||
Fat in skin of the mouse during cycles of hair growth | Q74027181 | ||
Matrix metalloproteinase inhibition impairs adipose tissue development in mice | Q77743242 | ||
Dermatology: the eccrine sweat glands | Q79061242 | ||
Comprehensive analysis of FGF and FGFR expression in skin: FGF18 is highly expressed in hair follicles and capable of inducing anagen from telogen stage hair follicles | Q81688936 | ||
Identification of white adipocyte progenitor cells in vivo | Q82206003 | ||
Inhibition of adipogenesis by Wnt signaling | Q22254771 | ||
Inhibition of Bmp signaling affects growth and differentiation in the anagen hair follicle | Q24595260 | ||
Adipocyte extracellular matrix composition, dynamics and role in obesity | Q24627461 | ||
Molecular dissection of mesenchymal-epithelial interactions in the hair follicle | Q24815112 | ||
Defining dermal adipose tissue | Q26861455 | ||
Hair cycle regulation of Hedgehog signal reception | Q28185267 | ||
Requirement of fibroblast growth factor 10 in development of white adipose tissue | Q28504753 | ||
Roles for PDGF-A and sonic hedgehog in development of mesenchymal components of the hair follicle | Q28506996 | ||
Characterization of Wnt gene expression in developing and postnatal hair follicles and identification of Wnt5a as a target of Sonic hedgehog in hair follicle morphogenesis | Q28591573 | ||
Label-retaining cells reside in the bulge area of pilosebaceous unit: implications for follicular stem cells, hair cycle, and skin carcinogenesis | Q29615762 | ||
Dynamics between Stem Cells, Niche, and Progeny in the Hair Follicle | Q30498374 | ||
Self-Organizing and Stochastic Behaviors During the Regeneration of Hair Stem Cells | Q30512824 | ||
Epidermal Wnt/β-catenin signaling regulates adipocyte differentiation via secretion of adipogenic factors | Q30576465 | ||
Bone-marrow adipocytes as negative regulators of the haematopoietic microenvironment | Q33701168 | ||
Adipocyte-derived collagen VI affects early mammary tumor progression in vivo, demonstrating a critical interaction in the tumor/stroma microenvironment | Q33743676 | ||
Transcriptional control of preadipocyte determination by Zfp423. | Q33753951 | ||
Adipocyte Accumulation in the Bone Marrow during Obesity and Aging Impairs Stem Cell-Based Hematopoietic and Bone Regeneration | Q33765723 | ||
Histone H3K27 methyltransferase Ezh2 represses Wnt genes to facilitate adipogenesis. | Q33841907 | ||
Regenerative hair waves in aging mice and extra-follicular modulators follistatin, dkk1, and sfrp4 | Q33916800 | ||
Specific collagen XVIII isoforms promote adipose tissue accrual via mechanisms determining adipocyte number and affect fat deposition | Q34002255 | ||
Syndecan-1 is required to maintain intradermal fat and prevent cold stress | Q34015240 | ||
The growth of hair follicles and its relation to the adjacent dermal structures | Q34035349 | ||
Drosophila genome-wide obesity screen reveals hedgehog as a determinant of brown versus white adipose cell fate | Q34092765 | ||
Adipocytes promote ovarian cancer metastasis and provide energy for rapid tumor growth | Q34147708 | ||
A comprehensive guide for the accurate classification of murine hair follicles in distinct hair cycle stages | Q34301829 | ||
Capturing and profiling adult hair follicle stem cells. | Q34306293 | ||
Distinct fibroblast lineages determine dermal architecture in skin development and repair. | Q34391786 | ||
Fibroblast growth factor signalling in the hair growth cycle: expression of the fibroblast growth factor receptor and ligand genes in the murine hair follicle | Q34405808 | ||
Hair follicle predetermination. | Q34420916 | ||
Hair follicle aging is driven by transepidermal elimination of stem cells via COL17A1 proteolysis | Q34515576 | ||
Fetal development of subcutaneous white adipose tissue is dependent on Zfp423. | Q34550053 | ||
Independent stem cell lineages regulate adipose organogenesis and adipose homeostasis | Q34605960 | ||
Wnt-dependent de novo hair follicle regeneration in adult mouse skin after wounding | Q34629066 | ||
Development of the mouse dermal adipose layer occurs independently of subcutaneous adipose tissue and is marked by restricted early expression of FABP4. | Q34652284 | ||
Cyclic dermal BMP signalling regulates stem cell activation during hair regeneration | Q34737529 | ||
LRP5 regulates human body fat distribution by modulating adipose progenitor biology in a dose- and depot-specific fashion. | Q35064400 | ||
Rapid depot-specific activation of adipocyte precursor cells at the onset of obesity | Q35235848 | ||
Plexin D1 determines body fat distribution by regulating the type V collagen microenvironment in visceral adipose tissue | Q35377599 | ||
Wnt7b is an important intrinsic regulator of hair follicle stem cell homeostasis and hair follicle cycling. | Q35431848 | ||
Niche-induced cell death and epithelial phagocytosis regulate hair follicle stem cell pool | Q35688878 | ||
Myofibroblasts in murine cutaneous fibrosis originate from adiponectin-positive intradermal progenitors | Q35755610 | ||
Analysis of apoptosis during hair follicle regression (catagen) | Q35764942 | ||
Adipocyte Lineage Cells Contribute to the Skin Stem Cell Niche to Drive Hair Cycling | Q35819382 | ||
A PPARγ-FGF1 axis is required for adaptive adipose remodelling and metabolic homeostasis | Q35981284 | ||
BMP signaling in the control of skin development and hair follicle growth. | Q35992960 | ||
Molecular principles of hair follicle induction and morphogenesis | Q36043778 | ||
Obesity-induced remodeling of the adipose tissue elastin network is independent of the metalloelastase MMP-12. | Q36068555 | ||
Identification of stem cell populations in sweat glands and ducts reveals roles in homeostasis and wound repair | Q36176254 | ||
Dermal white adipose tissue: a new component of the thermogenic response | Q36197802 | ||
Principles and mechanisms of regeneration in the mouse model for wound-induced hair follicle neogenesis | Q36198602 | ||
Defining BMP functions in the hair follicle by conditional ablation of BMP receptor IA. | Q36324810 | ||
Adipocyte-derived endotrophin promotes malignant tumor progression | Q36357889 | ||
Dermal Adipocytes: From Irrelevance to Metabolic Targets? | Q36421885 | ||
Epidermal β-catenin activation remodels the dermis via paracrine signalling to distinct fibroblast lineages | Q36548726 | ||
WISP2 regulates preadipocyte commitment and PPARγ activation by BMP4. | Q36616934 | ||
A Guide to Studying Human Hair Follicle Cycling In Vivo | Q36669777 | ||
Intradermal adipocytes mediate fibroblast recruitment during skin wound healing | Q36682969 | ||
Dermal adipocytes and hair cycling: is spatial heterogeneity a characteristic feature of the dermal adipose tissue depot? | Q36723199 | ||
Adiponectin, Leptin, and Fatty Acids in the Maintenance of Metabolic Homeostasis through Adipose Tissue Crosstalk. | Q36895502 | ||
β-Catenin Stabilization in Skin Fibroblasts Causes Fibrotic Lesions by Preventing Adipocyte Differentiation of the Reticular Dermis | Q36922404 | ||
Marrow Adipose Tissue: Trimming the Fat | Q36923810 | ||
Complex hair cycle domain patterns and regenerative hair waves in living rodents | Q37038427 | ||
Metabolic dysregulation and adipose tissue fibrosis: role of collagen VI. | Q37110569 | ||
Ebf1-dependent control of the osteoblast and adipocyte lineages | Q37133899 | ||
Skin aging: are adipocytes the next target? | Q37194238 | ||
Lipoatrophy and severe metabolic disturbance in mice with fat-specific deletion of PPARγ. | Q37319591 | ||
Analyses of regenerative wave patterns in adult hair follicle populations reveal macro-environmental regulation of stem cell activity | Q37382487 | ||
Macroenvironmental regulation of hair cycling and collective regenerative behavior | Q37406287 | ||
Nfatc1 orchestrates aging in hair follicle stem cells | Q37409450 | ||
Hair follicles' transit-amplifying cells govern concurrent dermal adipocyte production through Sonic Hedgehog | Q37416659 | ||
The Role of Adipocytes in Tissue Regeneration and Stem Cell Niches | Q37505068 | ||
What we talk about when we talk about fat. | Q37601812 | ||
Spatiotemporal antagonism in mesenchymal-epithelial signaling in sweat versus hair fate decision | Q37677008 | ||
The dermal papilla: an instructive niche for epithelial stem and progenitor cells in development and regeneration of the hair follicle | Q38225354 | ||
Hair cycle control by leptin as a new anagen inducer | Q38311195 | ||
Matrix metalloproteinases are differentially expressed in adipose tissue during obesity and modulate adipocyte differentiation | Q38358677 | ||
Skin morphology and its role in thermoregulation in mole-rats, Heterocephalus glaber and Cryptomys hottentotus | Q38476228 | ||
A multi-scale model for hair follicles reveals heterogeneous domains driving rapid spatiotemporal hair growth patterning | Q38684631 | ||
Distinct Fibroblasts in the Papillary and Reticular Dermis: Implications for Wound Healing | Q39021351 | ||
Skin Adipocyte Stem Cell Self-Renewal Is Regulated by a PDGFA/AKT-Signaling Axis | Q39286426 | ||
Some histological aspects of the palmar digital pads in the vervet monkey | Q39350143 | ||
Hedgehog associated to microparticles inhibits adipocyte differentiation via a non-canonical pathway. | Q39449375 | ||
TLE3 is a dual-function transcriptional coregulator of adipogenesis | Q39565699 | ||
Zfp423 Maintains White Adipocyte Identity through Suppression of the Beige Cell Thermogenic Gene Program | Q39726997 | ||
Signaling Networks among Stem Cell Precursors, Transit-Amplifying Progenitors, and their Niche in Developing Hair Follicles. | Q39892897 | ||
Sonic hedgehog increases the commitment of pluripotent mesenchymal cells into the osteoblastic lineage and abolishes adipocytic differentiation | Q40787603 | ||
Induction of the hair growth phase in postnatal mice by localized transient expression of Sonic hedgehog | Q40851834 | ||
White fat progenitor cells reside in the adipose vasculature. | Q41145314 | ||
Lrig1 expression defines a distinct multipotent stem cell population in mammalian epidermis | Q41390151 | ||
Human Skin Fibroblasts Derived from Papillary and Reticular Dermis: Differences in Growth Potential in Vitro | Q41521539 | ||
Innate immunity. Dermal adipocytes protect against invasive Staphylococcus aureus skin infection | Q41566039 | ||
Unravelling hair follicle–adipocyte communication | Q41849112 | ||
Epithelial Wnt ligand secretion is required for adult hair follicle growth and regeneration | Q41865262 | ||
Distinct functions for Wnt/β-catenin in hair follicle stem cell proliferation and survival and interfollicular epidermal homeostasis | Q41887923 | ||
Regeneration of fat cells from myofibroblasts during wound healing. | Q42165518 | ||
The Role of IGF-I in Human Skin and its Appendages: Morphogen as Well as Mitogen? | Q42448465 | ||
Subcutaneous abdominal adipose tissue subcompartments: potential role in rosiglitazone effects | Q42448720 | ||
The influence of the hair cycle on the thickness of mouse skin | Q42458934 | ||
P433 | issue | 3 | |
P304 | page(s) | 163-173 | |
P577 | publication date | 2018-01-12 | |
P1433 | published in | Nature Reviews Endocrinology | Q2079257 |
P1476 | title | Emerging nonmetabolic functions of skin fat. | |
P478 | volume | 14 |
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