Kaynaklar
43 yayın
Her bağlantı yayının DOI adresine gider. DOI'lerin hepsi Ekim 2026'da tek tek doğrulandı.
Su, sıcaklık ve yıkama
Herrero-Fernandez M ve ark. (2022). Impact of Water Exposure and Temperature Changes on Skin Barrier Function. Journal of Clinical Medicine 11(2):298.
Klinik, n=50doi:10.3390/jcm11020298
Berardesca E ve ark. (1995). Effects of water temperature on surfactant-induced skin irritation. Contact Dermatitis 32(2):83–87.
Deneysel, n=10doi:10.1111/j.1600-0536.1995.tb00751.x
Ohlenschlaeger J ve ark. (1996). Temperature dependency of skin susceptibility to water and detergents. Acta Dermato-Venereologica 76(4):274–276.
Randomize deneysel, n=20doi:10.2340/0001555576274276
Danby SG ve ark. (2018). The Effect of Water Hardness on Surfactant Deposition after Washing and Subsequent Skin Irritation. Journal of Investigative Dermatology 138(1):68–77.
Deneysel, n=80doi:10.1016/j.jid.2017.08.037
Voegeli D (2008). The Effect of Washing and Drying Practices on Skin Barrier Function. Journal of Wound, Ostomy & Continence Nursing 35(1):84–90.
Deneysel, n=15doi:10.1097/01.WON.0000308623.68582.d7
Nguyen KH ve ark. (2022). Moisturizing effectiveness of immediate compared with delayed moisturization. Journal of Cosmetic Dermatology 21(10):5134–5140.
Çapraz klinik, n=60doi:10.1111/jocd.15003
Köpürtücüler
Ananthapadmanabhan KP ve ark. (2004). Cleansing without compromise: the impact of cleansers on the skin barrier and the technology of mild cleansing. Dermatologic Therapy 17(Suppl 1):16–25.
Walters RM ve ark. (2012). Cleansing Formulations That Respect Skin Barrier Integrity. Dermatology Research and Practice 2012:495917.
Derleme + laboratuvardoi:10.1155/2012/495917
Ananthapadmanabhan KP ve ark. (2013). Stratum corneum fatty acids: their critical role in preserving barrier integrity during cleansing. International Journal of Cosmetic Science 35(4):337–345.
Derlemedoi:10.1111/ics.12042
Leoty-Okombi S ve ark. (2021). Effect of Sodium Lauryl Sulfate (SLS) Applied as a Patch on Human Skin Physiology and Its Microbiota. Cosmetics 8(1):6.
Deneyseldoi:10.3390/cosmetics8010006
Hoffman L ve ark. (2008). Benefits of an emollient body wash for patients with chronic winter dry skin. Dermatologic Therapy 21(5):416–421.
Randomize, 5 haftadoi:10.1111/j.1529-8019.2008.00225.x
Cilt bariyeri ve kuruluk
Proksch E, Brandner JM, Jensen JM (2008). The skin: an indispensable barrier. Experimental Dermatology 17(12):1063–1072.
Elias PM (2005). Stratum Corneum Defensive Functions: An Integrated View. Journal of Investigative Dermatology 125(2):183–200.
Rawlings AV, Harding CR (2004). Moisturization and skin barrier function. Dermatologic Therapy 17(Suppl 1):43–48.
Engebretsen KA ve ark. (2016). The effect of environmental humidity and temperature on skin barrier function and dermatitis. Journal of the European Academy of Dermatology and Venereology 30(2):223–249.
Sistematik derlemedoi:10.1111/jdv.13301
White-Chu EF, Reddy M (2011). Dry skin in the elderly: Complexities of a common problem. Clinics in Dermatology 29(1):37–42.
Augustin M ve ark. (2019). Prevalence, predictors and comorbidity of dry skin in the general population. Journal of the European Academy of Dermatology and Venereology 33(1):147–150.
Kesitsel, n=48.630doi:10.1111/jdv.15157
Ter kokusu
Shelley WB, Hurley HJ, Nichols AC (1953). Axillary odor; experimental study of the role of bacteria, apocrine sweat, and deodorants. AMA Archives of Dermatology and Syphilology 68(4):430–446.
Natsch A ve ark. (2003). A Specific Bacterial Aminoacylase Cleaves Odorant Precursors Secreted in the Human Axilla. Journal of Biological Chemistry 278(8):5718–5727.
Laboratuvardoi:10.1074/jbc.M210142200
Natsch A, Schmid J, Flachsmann F (2004). Identification of Odoriferous Sulfanylalkanols in Human Axilla Secretions. Chemistry & Biodiversity 1(7):1058–1072.
Laboratuvardoi:10.1002/cbdv.200490079
Troccaz M ve ark. (2004). 3-Methyl-3-sulfanylhexan-1-ol as a Major Descriptor for the Human Axilla-Sweat Odour Profile. Chemistry & Biodiversity 1(7):1022–1035.
Laboratuvardoi:10.1002/cbdv.200490077
Troccaz M ve ark. (2009). Gender-Specific Differences between the Concentrations of Nonvolatile Odor Precursors in Axillary Secretions. Chemical Senses 34(3):203–210.
İnsan örnekleri, n=49doi:10.1093/chemse/bjn076
James AG ve ark. (2013). Microbiological and biochemical origins of human axillary odour. FEMS Microbiology Ecology 83(3):527–540.
Derlemedoi:10.1111/1574-6941.12054
Bawdon D ve ark. (2015). Identification of axillary Staphylococcus sp. involved in the production of the malodorous thioalcohol 3-methyl-3-sufanylhexan-1-ol. FEMS Microbiology Letters 362(16):fnv111.
Laboratuvardoi:10.1093/femsle/fnv111
Rudden M ve ark. (2020). The molecular basis of thioalcohol production in human body odour. Scientific Reports 10:12500.
Laboratuvardoi:10.1038/s41598-020-68860-z
Callewaert C ve ark. (2013). Characterization of Staphylococcus and Corynebacterium Clusters in the Human Axillary Region. PLoS ONE 8(8):e70538.
Gözlemsel, n=53doi:10.1371/journal.pone.0070538
Callewaert C ve ark. (2014). Deodorants and antiperspirants affect the axillary bacterial community. Archives of Dermatological Research 306(8):701–710.
Müdahale, n=9doi:10.1007/s00403-014-1487-1
Urban J ve ark. (2016). The effect of habitual and experimental antiperspirant and deodorant product use on the armpit microbiome. PeerJ 4:e1605.
Deneysel, n=18doi:10.7717/peerj.1605
Bouslimani A ve ark. (2019). The impact of skin care products on skin chemistry and microbiome dynamics. BMC Biology 17:47.
Deneysel, n=11doi:10.1186/s12915-019-0660-6
Callewaert C, Lambert J, Van de Wiele T (2017). Towards a bacterial treatment for armpit malodour. Experimental Dermatology 26(5):388–391.
Görüş yazısıdoi:10.1111/exd.13259
Prebiyotik ve cilt mikrobiyomu
Gibson GR ve ark. (2017). The ISAPP consensus statement on the definition and scope of prebiotics. Nature Reviews Gastroenterology & Hepatology 14(8):491–502.
Uzlaşı bildirisidoi:10.1038/nrgastro.2017.75
Salminen S ve ark. (2021). The ISAPP consensus statement on the definition and scope of postbiotics. Nature Reviews Gastroenterology & Hepatology 18(9):649–667.
Uzlaşı bildirisidoi:10.1038/s41575-021-00440-6
Krutmann J (2009). Pre- and probiotics for human skin. Journal of Dermatological Science 54(1):1–5.
Bockmühl D ve ark. (2007). Prebiotic Cosmetics: An Alternative to Antibacterial Products. International Journal of Cosmetic Science 29(1):63–64.
Kongre bildirisidoi:10.1111/j.1467-2494.2007.00355_2.x
Al-Ghazzewi FH, Tester RF (2014). Impact of prebiotics and probiotics on skin health. Beneficial Microbes 5(2):99–107.
Derlemedoi:10.3920/BM2013.0040
Hong KB ve ark. (2020). Changes in the Diversity of Human Skin Microbiota to Cosmetic Serum Containing Prebiotics: Results from a Randomized Controlled Trial. Journal of Personalized Medicine 10(3):91.
Randomize, plasebo kontrollü, n=60doi:10.3390/jpm10030091
Li M ve ark. (2023). Multi-omic approach to decipher the impact of skincare products with pre/postbiotics on skin microbiome and metabolome. Frontiers in Medicine 10:1165980.
Randomize klinik, n=53doi:10.3389/fmed.2023.1165980
Di Lodovico S ve ark. (2020). Prebiotic Combinations Effects on the Colonization of Staphylococcal Skin Strains. Microorganisms 9(1):37.
Laboratuvardoi:10.3390/microorganisms9010037
Le Bourgot C ve ark. (2022). Effects of short chain fructo-oligosaccharides on selected skin bacteria. Scientific Reports 12:9702.
Laboratuvardoi:10.1038/s41598-022-13093-5
Zeng M ve ark. (2025). Prebiotic Oligosaccharides in Skin Health: Benefits, Mechanisms, and Cosmetic Applications. Antioxidants 14(6):754.
Derlemedoi:10.3390/antiox14060754
Byrd AL, Belkaid Y, Segre JA (2018). The human skin microbiome. Nature Reviews Microbiology 16(3):143–155.
Derlemedoi:10.1038/nrmicro.2017.157
Grice EA, Segre JA (2011). The skin microbiome. Nature Reviews Microbiology 9(4):244–253.
Derlemedoi:10.1038/nrmicro2537
Holland KT, Bojar RA (2002). Cosmetics: what is their influence on the skin microflora?. American Journal of Clinical Dermatology 3(7):445–449.