January 1964 in “OSTI OAI (U.S. Department of Energy Office of Scientific and Technical Information)” CXCL7 is essential for muscle repair by aiding early neutrophil infiltration.
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January 1997 in “Biochemical Pharmacology” Human liver enzyme DHEA ST helps process minoxidil.
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November 1991 in “Journal of Neuropathology & Experimental Neurology” Brindled mice show abnormal catecholamine neuron development due to copper deficiency.
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September 2018 in “Journal of the American Heart Association” EP 2 receptor is essential for heart repair by helping macrophages work properly.
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May 2002 in “PubMed” Overexpressing COX-2 in mice skin reduces skin tumor development.
November 2023 in “Journal of Investigative Dermatology” Removing GRK2 in skin cells causes hair loss similar to immune-related alopecia.
Arabidopsis Formin 2 stabilizes actin filaments, affecting cell-to-cell movement and virus susceptibility.
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August 2016 in “Dermatology - Open Journal” Mitochondria change shape to meet energy needs during cell movement.
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April 1998 in “PubMed” Activated erbB-2 in mice skin causes severe skin and hair abnormalities.
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March 2018 in “Journal of Chromatography A” New method accurately measures finasteride and M3 in urine, helping evaluate pharmacokinetics.
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April 1992 in “Biochemical Journal” Minoxidil reduces lysine hydroxylase in skin cells.
Not having the gene PLAAT3 leads to fat loss, high insulin resistance, and abnormal fat levels in the blood due to a disruption in fat cell development and function.
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May 2007 in “Differentiation” Foxn1 helps skin cells mature by controlling a specific protein's activity.
Higher sulfotransferase enzyme levels predict better response to minoxidil for hair growth.
January 2026 in “International Journal of Research and Innovation in Applied Science” Recognizing specific markers is crucial for correctly diagnosing and treating rare multifocal MPTT in males.
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October 2006 in “Molecular and Cellular Endocrinology” The L457(3.43)R mutation in the human lutropin receptor causes increased activity and hormone insensitivity, leading to precocious puberty.
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September 2019 in “EBioMedicine” sPLA2-IIA increases growth in hair follicle stem cells and cancer cells, suggesting it could be targeted for hair growth and cancer treatment.
November 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” Dermal EZH2 controls skin cell growth and differentiation in mice.
July 2024 in “PLANT PHYSIOLOGY” CIPK13 and CIPK18 genes are crucial for root hair growth in plants.
The document concluded that certain compounds might strongly bind to and potentially inhibit a key SARS-CoV-2 protein, but further testing is needed.
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March 2014 in “EMBO Reports” Protein ubiquitylation is crucial for controlling stem cell functions and could be targeted for cancer treatment.
PTHrP is important for bone formation and may be targeted for osteoporosis treatment and longevity therapies.
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June 2011 in “Journal of Investigative Dermatology” Overexpressing 14-3-3σ in mice skin reduces cell growth and hair density.
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October 2004 in “Journal of Investigative Dermatology” Normal human melanocytes can avoid cell death through multiple pathways.
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July 2005 in “Molecular and Cellular Biology” A specific gene segment can make mouse skin cells glow, helping study hair growth and gene effects.
VDAC2 promotes cell death in cashmere goat hair follicles through the P53 pathway.
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January 2004 in “British Journal of Pharmacology” Minoxidil protects heart and improves recovery.
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July 2022 in “Journal of Medicinal Chemistry” Adding a second method to PROTACs could improve cancer treatment.
July 2022 in “The journal of investigative dermatology/Journal of investigative dermatology” MPZL3 is important for controlling the hair growth cycle in mice and humans.