43 citations
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September 2014 in “Molecular Plant” CLE40 and CRN/CLV2 pathways have opposite effects on root growth in Arabidopsis.
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October 1985 in “The Journal of Cell Biology” Researchers isolated and identified structural components of human hair follicles, providing a model for studying hair formation.
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December 2018 in “International Journal of Modern Computation Information and Communication Technology” AI can greatly improve healthcare by enhancing disease prevention, detection, diagnosis, and treatment.
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December 2014 in “Cell Stem Cell” Intravital imaging helps us better understand stem cells in their natural environment and could improve knowledge of organ regeneration and cancer development.
A person with a new mutation in the SCN1A gene developed brain inflammation after COVID-19.
November 2025 in “Journal of Cancer Research and Clinical Oncology” Endoscopic-assisted surgery leads to higher patient satisfaction in breast reconstruction.
February 2020 in “Biophysical journal” Zebrafish with mutations similar to human Cantú Syndrome have heart cells with altered channel properties, making them a good model to study the condition.
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May 2023 in “Cell” 6 citations
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December 2024 in “F1000Research” Fibroblast and immune cell interactions affect tissue repair and fibrosis.
February 2020 in “Oxford University Press eBooks” The alpha-helix was confirmed as a key structure in proteins.
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October 1990 in “Archives of Dermatological Research” The connective tissue around hair follicles changes structure throughout the hair cycle.
Newly designed proteins can effectively degrade specific proteins in cells, offering a promising alternative for targeted protein degradation.
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December 2021 in “Molecules” Inorganic nanomaterials can improve brain disease imaging by being more precise and faster than traditional methods.
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April 2017 in “Journal of structural biology” Human hair keratin fibers have a detailed nano-scale structure that changes with different conditions.
January 2015 in “Elsevier eBooks” Nanocarriers like liposomes and cyclodextrins improve how angiotensin-(1-7) is delivered in the body.
September 1994 in “Otolaryngology-Head and Neck Surgery” Several doctors received research grants, new workshops and conferences were announced, and new officers were elected.
S1PR1 helps control inflammation in blood vessel cells by affecting gene activity differently in various cell types and locations.
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November 2007 in “Journal of Structural Biology” Keratin heterodimers are preferred for their specific and structural advantages.
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December 2025 in “Scientific Reports” A machine learning model can predict alopecia areata early using specific gene markers.
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October 2013 The framework helps develop medical apps on mobile devices to reduce reliance on desktop computers.
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November 2019 in “Journal of Integrative Plant Biology” CaM7 and CNGC14 interaction controls root hair growth in Arabidopsis.
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September 2017 in “Journal of Investigative Dermatology Symposium Proceedings” Hair loss in black women needs more research, early intervention, and community education.
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July 2023 in “Journal of Functional Biomaterials” Bubble-based systems show promise for precise, targeted drug delivery and diagnosis, especially in cancer treatment.
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March 2019 in “Journal of Histochemistry and Cytochemistry” Neuronatin is found in specific cells within rat testis, hair follicles, tongue, and pancreas, suggesting it has various roles in tissue development and function.
September 2024 in “Dermatologica Sinica” Early and accurate diagnosis of congenital smooth muscle hamartomas is crucial to distinguish them from other conditions.
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June 2025 in “Journal of Cellular and Molecular Medicine” CuATSM speeds up wound healing and reduces scarring.
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June 2012 in “BMC Research Notes” The HGCA tool helps identify genes that work together by analyzing their co-expression patterns.
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July 2018 in “International Journal of Applied Pharmaceutics” Chitosan nanoparticles are promising for sustained caffeine delivery through the skin.
March 2005 in “International Journal of Cosmetic Science” DVI provides detailed 3D imaging of hair and shows how various products protect and enhance hair.