参考文献 References
[1] 蔡同凯,刘谋治,邓婕,等.透明质酸的作用机制及临床应用研究进展[J].药学实践杂志, 2022(002):040.
[2] 陈建澍,王婧茜,易喻,等.透明质酸及其衍生物研究进展[J].中国生物工程杂志, 2015, 35(2):111-118.
[3] Dovedytis M, Liu Z J, Bartlett S. Hyaluronic acid and its biomedical applications: A review[J].Engineered Regeneration, 2020(11):102-113.
[4] 朱益锐,蔡志祥,郭亚龙,等.基于透明质酸构建的功能材料及其在生物医药领域中的应用[J].功能高分子学报, 2021, 34(1):23.
[5] 蒙亮亮,杜桐,王欣欣,等.透明质酸在化妆品中的应用研究进展[J].山东化工,2018,47(18):52-54+56.
[6] 王朋田,刘宝珍,张建勇,等.乙酰化透明质酸钠改善皮肤的功效[J].香料香精化妆品, 2024(1):92-100.
[7] Jang M, Baek S, Kang G, et al. Dissolving microneedle with high molecular weight hyaluronic acid to improve skin wrinkles, dermal density and elasticity[J].International Journal of Cosmetic Science, 2020, 42.
[8] Lee B M, Park S J, Noh I, et al. The Effects of the Molecular Weights of Hyaluronic Acid on the Immune Responses[J].Biomaterials Research, 2021, 25(1).
[9] 张泽华,刘志林,陈晨. 超小分子透明质酸功效性能测试[J].Detergent & Cosmetics, 2023, 46(5).
[10] 朱永刚,张建勇,王兰芝. 透明质酸钠舒敏抗炎修复效果研究[J].日用化学品科学, 2021(044-012).
[11] Snetkov P, Zakharova K, Morozkina S, et al. Hyaluronic Acid: The Influence of Molecular Weight on Structural, Physical, Physico-Chemical, and Degradable Properties of Biopolymer[J].Polymers, 2020, 12(8):1800.
[12] Essendoubi M, Gobinet C, Reynaud R, et al. Human skin penetration of hyaluronic acid of different molecular weights as probed by Raman spectroscopy[J].Skin Research & Technology, 2016, 22(1):55-62.
[13] Weihermann A C, Lorencini M, Brohem C A, et al. Elastin structure and its involvement in skin photoageing [J].International Journal of Cosmetic Science, 2017.
[14] Rodríguez-Cotto R I, Ortiz-Martínez M G, Rivera-Ramírez E, et al. Particle pollution in Rio de Janeiro, Brazil: Increase and decrease of pro-inflammatory cytokines IL-6 and IL-8 in human lung cells[J].Environmental Pollution, 2014, 194(nov.):112-120.
[15] 朱晓敏,张晓军,何韶衡.化妆品过敏原皮肤斑贴试验的临床研究[J].安徽理工大学学报:自然科学版, 2012, 32(1):4.
[16] 陈教全,梁碧华,李华平,等.角质层结构及功能的研究进展[J].皮肤性病诊疗学杂志, 2020, 27(1):4.
[17] Sam, Osseiran, Jomer, et al.Characterizing stratum corneum structure, barrier function, and chemical content of human skin with coherent Raman scattering imaging [J]. Biomedical Optics Express, 2018, 9(12):6425-6443.
[18] Mcdaniel D H, Dover J S, Wortzman M, et al. In vitro and in vivo evaluation of a moisture treatment cream containing three critical elements of natural skin moisturization [J]. Journal of Cosmetic Dermatology, 2020, 19(5):1121-1128.
[19] Guillaumie F, Malle B M, Schwach-Abdellaoui K, et al. A New Sodium Hyaluronate for Skin Moisturization and Antiaging[J].Cosmetics & Toiletries, 2006.
[20] Kottner J, Lichterfeld A, Blume-Peytavi U. Transepidermal water loss in young and aged healthy humans: a systematic review and meta-analysis[J].Archives of Dermatological Research, 2013, 305(4):315-323.
[21] Caberlotto E, Cornillon C, Njikeu S, et al. Synchronized in vivo measurements of skin hydration and trans‐epidermal water loss. Exploring their mutual influences [J]. International Journal of Cosmetic Science, 2019, 41(5).
[22] Ryu H S, Joo Y H, Kim S O, et al. Influence of age and regional differences on skin elasticity as measured by the Cutometer[J].Skin Research and Technology, 2008, 14(3).
[23] Ohshima H, Kinoshita S, Oyobikawa M, et al. Use of Cutometer area parameters in evaluating age-related changes in the skin elasticity of the cheek[J].Skin Research and Technology, 2012.
[24] Choi J W, Kwon S H, Huh C H, et al. The influences of skin visco-elasticity, hydration level and aging on the formation of wrinkles: a comprehensive and objective approach [J]. Skin Research & Technology, 2013, 19(1).
[25] Dbrowska M, Nowak I. Noninvasive evaluation of the influence of aucubin-containing cosmetic macroemulsion on selected skin parameters[J].Journal of cosmetic dermatology, 2021, 20(3):1022-1030.
[26] Oba A , Edwards C .Relationships between changes in mechanical properties of the skin, wrinkling, and destruction of dermal collagen fiber bundles caused by photoaging[J].Skin Research & Technology, 2010, 12(4):283-288.