April 2017 in “Journal of Investigative Dermatology” This study found that anagen hair follicles can quickly regenerate after radiation damage by forming new progenitor cells outside the bulge, bypassing the need for telogen entry.
April 2018 in “Journal of Investigative Dermatology” This paper presents a new methodology combining magnetic tweezers and traction force microscopy to study keratinocyte mechanobiology, but reports no experimental results yet.
January 2026 in “Microsystems & Nanoengineering” This review discusses advancements in skin microphysiological systems, such as 3D bioprinting, skin organoids, and skin-on-a-chip, and their effectiveness in emulating human skin functions for research and preclinical applications, highlighting the potential for replacing animal testing with these innovative technologies.
5 citations
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January 2019 in “Methods in molecular biology” In this study, researchers showed that multiphoton microscopy with fluorescent protein tagging enables single-cell imaging and tracking in live transgenic mice, offering new insights into cell dynamics in stem cell research compared to traditional histological methods.
January 2022 in “Institutional Repositories DataBase (IRDB)” This study found that pen-type microwells enhanced hair follicle germ formation by promoting cell assembly, suggesting microwell array geometry significantly influences in vitro hair follicle development.
6 citations
,
January 2018 in “Advances in experimental medicine and biology”
14 citations
,
February 2020 in “Scientific reports” This study found that telocytes in human scalp tissue were located around hair follicles and glands and may be involved in skin regeneration and homeostasis.
17 citations
,
May 2025 in “MedComm” This review highlights how organoid technology is transforming precision medicine by summarizing its development and applications in modeling diseases, testing drug efficacy, and tailoring patient-specific treatments, despite current challenges in standardization and ethical considerations.
This study presents a two-photon imaging method to visualize low-threshold mechanoreceptor axon terminals in live mouse forepaw skin, enabling repeated high-resolution imaging to study sensory circuits during development and adulthood.
January 2026 in “Advanced Healthcare Materials” This study introduces a new multiaxial bioreactor system that uniformly stretches tissue-engineered skin grafts and improves skin tissue maturation through enhanced cellular distribution and environmental monitoring.
September 2023 in “Membranes” This source reviews the potential of 3D printing, biomaterials, and smart sensors in tissue engineering, noting their application in creating artificial membranes for skin and tissue regeneration and assessing their strengths and limitations for wound dressing development and disease modeling.
April 2026 in “Experimental & Molecular Medicine” This study used integrated single-cell chromatin and transcriptomic analyses in developing mouse skin to uncover gene networks involved in skin lineage specification and identified Mef2c+ upper fibroblasts as potential precursors to certain muscle-like structures, with cross-species findings in human skin.
8 citations
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September 2011 in “Scanning” This study found that multiphoton microscopy effectively visualizes the microstructure of in vivo mouse skin, offering a clear view of various skin layers and components like corneocytes and collagen fibers.
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” This study constructed a consensus single-cell atlas of hidradenitis suppurativa tunnels, identifying distinct microenvironmental endotypes with different inflammatory and fibrotic profiles, suggesting that TNF blockade may not be sufficient for addressing all lesions.
11 citations
,
March 2024 in “Cell and Tissue Research” In this review, researchers summarize the methods for characterizing telocytes, outline their physiological roles and implications in diseases, and discuss potential future studies including precise markers and targeted therapies.
5 citations
,
January 2024 in “Science Advances” In this study, researchers identified Tenascin-C as a marker for touch dome keratinocytes, which maintain themselves and can develop into Merkel cells following injury, showing they share molecular traits with various epidermal keratinocytes.
September 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” This study describes the use of a genetically engineered mouse model, mTurquoise2-Col4a1, to fluorescently label collagen IV and observe basement membrane dynamics during skin development, revealing its stability and pliability during rapid growth phases.
39 citations
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May 2015 in “Advanced drug delivery reviews” This review discusses skin tissue engineering and highlights the potential role of microRNAs in improving bioengineered skin equivalents, concluding that further exploration of microRNA targets could address unmet clinical needs.
19 citations
,
October 2022 in “The Ocular Surface”
December 2023 in “The journal of cell biology/The Journal of cell biology” This study developed the mTurquoise2-Col4a1 mouse model and used fluorescent tagging of collagen IV to offer new insights into basement membrane dynamics during hair follicle budding, revealing that basement membranes are flexible and stable structures in developing skin tissue.
29 citations
,
May 2023 in “Cell”
June 2026 in “Frontiers in Immunology” This review synthesizes both traditional and emerging molecular mechanisms of tissue remodeling across different organs, aiming to establish a theoretical basis for precision interventions in pathological conditions, according to the authors.
This article discusses a novel device for applying mediums to human and animal tissues and reports no new clinical results, focusing on its potential for precise applications and enhanced cell transplants.
August 1994 in “Journal of Dermatological Science”
May 2026 in “Zenodo (CERN European Organization for Nuclear Research)” This study created a comprehensive single-cell atlas of hidradenitis suppurativa tunnels, identifying distinct microenvironmental endotypes linked to specific signaling pathways, suggesting that TNF blockade may not effectively address predominant pathways in many lesions and highlighting the potential for individualized treatment strategies.
1 citations
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June 2012 in “OhioLink ETD Center (Ohio Library and Information Network)” In this study, the 40-MBR system was shown to enhance drug-screening efficiency by providing reliable, real-time monitoring of cell conditions in 3-D cultures compared to traditional methods.
87 citations
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October 1987 in “Journal of Investigative Dermatology” August 2025 in “Stem Cells” This study developed a molecular systems architecture to map the complex interactions between mesenchymal stromal cells and their microenvironment, providing a framework for future predictive models that could enhance therapeutic strategies and reduce adverse effects.
April 2026 in “Biomaterials” July 2024 in “Journal of Investigative Dermatology”