15 citations
,
August 2020 in “Analytical chemistry” Hair lipids do not protect against humidity.
11 citations
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December 2020 in “Advanced structured materials” Natural products like coconut oil and aloe vera are beneficial in cosmetics for their healing properties.
9 citations
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March 2022 in “Antioxidants” Synthetic antioxidants are effective, cheap, and stable, with some like zinc and cholecalciferol reducing child and cancer deaths, but the safety of additives like BHA, BHT, TBHQ, and PEG needs more research.
8 citations
,
June 2024 in “Pharmaceutics” PEA-ENL improves skin delivery and reduces inflammation without side effects.
7 citations
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January 2020 in “Skin Appendage Disorders” Take care of your hair as much as your face for a youthful look.
3 citations
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September 2022 in “Journal of Drug Delivery Science and Technology” Minoxidil, a hair loss treatment, works better and has fewer side effects when put into tiny particles called transethosomes, especially those containing oleic acid.
3 citations
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June 2008 in “Springer eBooks” Hair care products clean, protect, style, color, and change hair structure.
2 citations
,
February 2025 in “Journal of Nanobiotechnology” Modified frameworks with stearic acid enhance drug delivery and promote hair growth.
2 citations
,
July 2018 in “Skin research and technology” Greasy hair spreads sebum twice as much as nongreasy hair over time.
1 citations
,
July 2025 in “The Open Dermatology Journal” Tissue engineering in cosmetics offers safer, more effective products and ethical alternatives to animal testing.
1 citations
,
January 2025 in “Journal of Cosmetic Dermatology” Maintaining a balanced scalp microbiome can help reduce itchiness.
1 citations
,
August 2024 in “Polymers” Bacterial cellulose is a promising material for biomedical uses but needs improvements in antimicrobial properties and degradation rate.
1 citations
,
February 2023 in “Plants” BB4CMU rice bran oil may help treat hair loss and gray hair.
August 2025 in “Pharmaceutics” A new method improves betulin delivery and shows promise in cancer treatment.
April 2025 in “Cosmetics” The shampoo improves hair thickness, density, and reduces hair loss.
February 2025 in “Biomimetics” The shampoo straightens hair while keeping it healthy and less damaged.
February 2025 in “Skin Research and Technology” New non-invasive techniques can improve diagnosis and treatment of scalp and hair diseases.
October 2024 in “Cosmetics” ATG effectively reduces hair frizz without damaging hair strength.
October 2024 in “Cosmoderma” Proper hair care and suitable products are essential for men's scalp health and well-being.
November 2023 in “Cosmetics” Rice derivatives in conditioners protect and improve hair health.
Nanocarriers with plant extracts show promise for safe and effective hair growth treatment.
Enzymatic synthesis improved the water solubility of the flavonoid baicalin, which may help treat hair loss conditions.
April 2026 in “The Open Biotechnology Journal” Resveratrol shows health benefits but faces challenges in effectiveness and regulation.
September 2023 in “Pharmaceuticals” Tiny particles improved delivery of hair loss treatments to hair follicles, with lipid-based particles performing best.
188 citations
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December 2020 in “Foods” Polyphenols in plant foods help prevent diseases and have potential uses in food, cosmetics, and more.
63 citations
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June 2023 in “Journal of Nanobiotechnology” The sponge heals wounds without antibiotics and has strong antibacterial and antioxidant properties.
61 citations
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September 2024 in “Micromachines” Electrospun nanofiber membranes are promising for non-invasive medical uses like tissue repair and health monitoring.
39 citations
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January 1979 in “Journal of the Society of Cosmetic Scientists of Korea” Surfactants can protect or harm hair, skin, and nails, depending on their type and use.
January 2023 in “Fashion and textiles” Cationic and nonionic surfactants provide better color intensity and resistance for semi-permanent hair dye than anionic surfactants.
January 2023 in “Records of Pharmaceutical and Biomedical Sciences” Surfactants in spanlastics improve drug delivery by making nanovesicles more flexible and stable for painless administration through the mouth.