Staphylococcus hominis and facial aging
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Baldwin HE, et al. The role of cutaneous microbiota harmony in maintaining a functional skin barrier. J Drugs Dermatol 2017;16(1):12-18.
Belkaid Y, Segre JA. Dialogue between skin microbiota and immunity. Science 2014;346(6212):954-959.
Bitschar K, et al. Keratinocytes as sensors and central players in the immune defense against Staphylococcus aureus in the skin. J Dermatol Sci 2017;87(3):215-220.
Boxberger M, et al. Challenges in exploring and manipulating the human skin microbiome. Microbiome 2021;9(1):1-14.
Chambers ES, Vukmanovic-Stejic M. Skin barrier immunity and aging. Immunology 2020;160(2):116-125.
Chiang HM, et al. Neonauclea reticulata (Havil.) Merr stimulates skin regeneration after uvb exposure via Ros scavenging and modulation of the MAPK/MMPs/collagen pathway. Evid Based Complement Alternat Med 2013;2013.
Farage MA, et al. Characteristics of the aging skin. Adv Wound Care 2013;2(1):5-10.
França A, et al. Virulence factors in coagulase-negative staphylococci. Pathogens 2021;10(2):1-46.
Fredricks DN. Microbial ecology of human skin in health and disease. J Investig Dermatol Symp Proc 2001;6(3):167-169.
Gronow S, et al. Construction of a deep-rough mutant of Burkholderia cepacia ATCC 25416 and characterization of its chemical and biological properties. J Biol Chem 2003;278(3):1647-1655.
Ho CY, Dreesen O. Faces of cellular senescence in skin aging. Mech Ageing Dev 2021;198(3):111525.
Jugé R, et al. Shift in skin microbiota of Western European women across aging. J Appl Microbiol 2018;125(3):907-916.
Khayyira AS, et al. Simultaneous profiling and cultivation of the skin microbiome of healthy young adult skin for the development of therapeutic agents. Heliyon 2020;6(4):e03700.
Khmaladze I, et al. Lactobacillus reuteri DSM 17938—A comparative study on the effect of probiotics and lysates on human skin. Exp Dermatol 2019;28(7):822-828.
Khmaladze I, et al. The skin interactome: A holistic “genome-microbiome-exposome” approach to understand and modulate skin health and aging. Clin Cosmet Investig Dermatol 2020;13:1021-1040.
Kosmadaki MG, Gilchrest BA. The role of telomeres in skin aging/photoaging. Micron 2004;35(3):155-159.
Lai Y, et al. Commensal bacteria regulate TLR3-dependent inflammation following skin injury. Nat Med 2010;15(12):1377-1382.
Lee AY. Skin pigmentation abnormalities and their possible relationship with skin aging. Int J Mol Sci 2021;22(7).
Lee YR, Noh EM, Han JH, et al. Brazilin inhibits UVB-induced MMP-1/3 expressions and secretions by suppressing the NF-κB pathway in human dermal fibroblasts. Eur J Pharmacol 2012;674(2-3):80-86.
Liu Y, et al. Skin microbiota analysis-inspired development of novel anti-infectives. Microbiome 2020;8(1):1-19.
Madison KC. Barrier function of the skin: “La Raison d’Être” of the epidermis. J Invest Dermatol 2003;121(2):231-241.
Mi T, et al. Niacinamide and 12-hydroxystearic acid prevented benzo(a)pyrene and squalene peroxides induced hyperpigmentation in skin equivalent. Exp Dermatol 2019;28(6):742-746.
Nakatsuji T, et al. Antimicrobials from human skin commensal bacteria protect against Staphylococcus aureus and are deficient in atopic dermatitis 2017;9(378):1-22.
Nakatsuji T, et al. A commensal strain of Staphylococcus epidermidis protects against skin neoplasia. Sci Adv 2018;4(2).
Nakatsuji T, et al. Development of a human skin commensal microbe for bacteriotherapy of atopic dermatitis and use in a phase 1 randomized clinical trial. Nat Med 2021;27(4):700-709.
Ogai K, et al. Skin microbiome profile of healthy Cameroonians and Japanese. Sci Rep 2022;12(1):1-8.
Ohshima H, et al. New solution of beauty problem by Staphylococcus hominis: Relevance between skin microbiome and skin condition in healthy subject. Skin Res Technol 2021;27(5):692-700.
Park JE, et al. The protective effect of kaempferia parviflora extract on UVB-induced skin photoaging in hairless mice. Photodermatol Photoimmunol Photomed 2014;30(5):237-245.
Pittayapruek P, et al. Role of matrix metalloproteinases in Photoaging and photocarcinogenesis. Int J Mol Sci 2016;17(6).
Quan T, et al. Reduced expression of connective tissue growth factor (CTGF/CCN2) mediates collagen loss in chronologically aged human skin. J Invest Dermatol 2010;130(2):415-424.
Quan T, Fisher G. Role of age-associated alterations of the dermal extracellular matrix microenvironment in human skin aging: A mini-review. Gerontology 2015:61(5):427-434.
Ratanapokasatit Y, et al. How Microbiomes Affect Skin Aging: The updated evidence and current perspectives. Life 2022;12(7).
Schommer NN, Gallo RL. Structure and function of the human skin microbiome. Physiol Behav 2018;176(5):139-148.
Severn MM, et al. The ubiquitous human skin commensal staphylococcus hominis protects against opportunistic pathogens. mBio 2022;13(3):1-21.
Shin JW, et al. Molecular mechanisms of dermal aging and antiaging approaches. Int J Mol Sci 2019;20(9).
Stollery N. A guide to bacterial skin infections. Practitioner 2006;250(1686):54-59.
Verdier-Sévrain S, Bonté F. Skin hydration: A review on its molecular mechanisms. J Cosmet Dermatol 2007;6(2):75-82.
Williams MR, Gallo RL. Evidence that human skin microbiome dysbiosis promotes atopic dermatitis. J Invest Dermatol 2017;137(12):2460-2461.
Yasui T, et al. In vivo observation of age-related structural changes of dermal collagen in human facial skin using collagen-sensitive second harmonic generation microscope equipped with 1250-nm mode-locked Cr:Forsterite laser . J Biomed Opt 2012;18(3):031108.
DOI: https://doi.org/10.24815/tigh.v4i1.39739
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