77 citations
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September 2017 in “Journal of Investigative Dermatology” TRPV3 in skin cells causes inflammation and cell death.
75 citations
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February 2017 in “Aging” SkQ1 antioxidant improved health and lifespan in mice.
67 citations
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September 2017 in “Cell Reports” Caloric restriction improves skin and fur structure but can cause muscle loss and movement issues.
46 citations
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April 2021 in “International Journal of Molecular Sciences” Curcumin shows promise in reducing pain and inflammation, but more research is needed.
44 citations
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March 2015 in “PLOS ONE” Fibroblast Growth Factor-9 (FGF-9) can help improve heart function in diabetic mice after a heart attack by reducing inflammation and harmful changes to the heart's structure.
42 citations
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April 2021 in “Pharmaceuticals” Five FDA-approved drugs may help block COVID-19 virus entry.
40 citations
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July 2015 in “Kidney International” IL-3 worsens lupus nephritis and blocking it improves kidney health.
37 citations
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December 2020 in “Molecules” A new delivery system makes Curcumin more effective and safer against viruses.
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October 2014 in “Wound Repair and Regeneration” The model helps understand scar contraction and develop new treatments.
30 citations
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November 2024 in “ACS Materials Au” Microneedles are promising for disease monitoring and drug delivery due to their minimal invasiveness and versatility.
29 citations
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September 2020 in “Polymers” The PCL/PHB blend allows for slower, more controlled curcumin release than individual polymers.
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November 2020 in “Polymers” Crosslinked gelatin sponges show promise as skin substitutes for wound treatment.
27 citations
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October 2018 in “Saudi Journal of Biological Sciences” Curcumin can protect against mercury's harmful effects on brain and behavior.
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January 2024 in “Journal of Lipids” Cubosomes improve drug delivery for skin and eye diseases by enhancing adhesion, retention, and release.
25 citations
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August 2015 in “Molecules” Mimosine dipeptides are promising for treating hyperpigmentation and inflammation.
24 citations
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September 2020 in “Pharmaceutics” Lidocaine-loaded microparticles effectively relieve pain and fight bacteria in wounds.
23 citations
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December 2013 in “Molecular cancer therapeutics” Breast cancer treatments work better with AR activation, improving results and reducing side effects.
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July 2015 in “International Journal of Nanomedicine” Increased liposome fluidity boosts skin penetration of sodium fluorescein.
18 citations
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February 2023 in “Plants” Purple glutinous rice extracts can help whiten skin and reduce aging signs.
17 citations
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September 2024 in “Cosmetics” Cold-pressed plant oils have valuable natural antioxidants and skin care benefits.
16 citations
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January 2014 in “Obesity surgery” Vertical sleeve gastrectomy improved metabolism, behavior, and reproduction in obese rats with PCOS.
15 citations
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July 2015 in “Developmental Dynamics” Orai1 protein is crucial for tooth development and affects enamel thickness and mineralization.
14 citations
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November 2024 in “Pharmaceuticals” Spanlastic nano-vesicles improve famotidine's effectiveness and absorption.
14 citations
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November 2019 in “Materials” Diamond nanoparticles can penetrate skin and reach hair follicles, useful for imaging applications.
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October 2023 in “Pharmaceutics” The new nasal gel for schizophrenia improved drug absorption and brain effects in rats.
11 citations
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January 2025 in “Marine Drugs” All extraction methods can produce similar quality fucoidan, but a holistic approach is needed for method selection.
10 citations
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August 2024 in “ACS Omega” Nanocosmetics with natural extracts offer benefits but need more research on safety and environmental impact.
10 citations
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February 2018 in “Royal Society Open Science” Modified wheat protein in shampoo repairs and smooths damaged hair effectively.
9 citations
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June 2019 in “Cell cycle/Cell cycle (Georgetown, Tex. Online)” A specific RNA increases hair stem cell growth and skin healing by affecting a protein through interaction with a microRNA.
8 citations
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September 2024 in “International Journal of Molecular Sciences” Polymers can be designed to mimic natural cell environments for medical uses.