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汗等日常活动中流失率为 60%~80%,导致防治效果明 and mutagenesis[J]. Nanoscale,2015,7(38):15643-15656.
显下降。本研究通过仿生设计,以贻贝黏蛋白与透明质 [ 8 ] YANG J L,CHEN X,LUODAN A,et al. Alleviation of
酸钠结合构建的水凝胶网络在防护持久性方面发挥了 photoreceptor degeneration based on fullerenols in rd1
关键作用。该体系通过儿茶酚-皮肤蛋白共价键(汗液 mice by reversing mitochondrial dysfunction via modula‐
冲刷测试荧光信号保留率为 72.40%)和三维网络结构 tion of mitochondrial DNA transcription and leakage[J].
Small,2023,19(44):e2205998.
(扫描电镜显示多级球形组装)实现了长效驻留。这种
[ 9 ] CHENG H,SHI Z,YUE K,et al. Sprayable hydrogel
智能黏附特性既保证了其持续治疗作用,又解决了传统
dressing accelerates wound healing with combined reac‐
制剂需要频繁给药的问题。
tive oxygen species-scavenging and antibacterial abilities
病理学证据进一步验证了双重防护的协同效应。 [J]. Acta Biomater,2021,124:219-232.
紫外线照射组小鼠皮肤呈现典型的皮肤光损伤病理改 [10] BUKHARI S N A,ROSWANDI N L,WAQAS M,et al.
变,包括表皮增厚、真皮层可见胶原纤维断裂及炎症细 Hyaluronic acid,a promising skin rejuvenating biomedi‐
胞浸润,胶原密度显著降低且排列紊乱;相比之下,涂抹 cine:a review of recent updates and pre-clinical and clini‐
FCN的防护组小鼠皮肤组织结构保持完整,纤维排列有 cal investigations on cosmetic and nutricosmetic effects
序,真皮层胶原纤维数量与对照组接近。这表明FCN实 [J]. Int J Biol Macromol,2018,120(Pt B):1682-1695.
现了对紫外线损伤的多层次防护。 [11] 赵紫楠,金鹏飞,张亚同,等.药品安全性评价指南[J].临
综上所述,本研究构建的FCN创新性地结合了纳米 床药物治疗杂志,2024,22(增刊1):5-8.
技术与水凝胶载体,该制剂符合《中国药典》相关要求, [12] 国家药典委员会 . 中华人民共和国药典:四部[M]. 2020
年版.北京:中国医药科技出版社,2020:800,1107.
安全性和皮肤相容性良好,实现了紫外线屏蔽、自由基
[13] DENG Y,EDIRIWICKREMA A,YANG F,et al. A sun‐
清除双重协同防护,为高原人群光损伤防护提供了安全
block based on bioadhesive nanoparticles[J]. Nature Mate‐
有效的解决方案。
rials,2015,14(12):1278-1285.
参考文献
[14] 食品药品监管总局.总局关于发布防晒化妆品防晒效果
[ 1 ] QIAO Y J,CHENG R Y,LI X H,et al. Plateau environ‐ 标识管理要求的公告:2016 年第 107 号[EB/OL].(2016-
ment,gut microbiota,and depression:a possible con‐ 06-01)[2025-03-24].https://www.nmpa.gov.cn/hzhp/hzhp‐
cealed connection[J]. Curr Issues Mol Biol,2025,47 fgwj/hzhpgzwj/20160601173101166.html.
(7):487. [15] XU J,ZHANG C,REN L. Analysis of ultraviolet radi-
[ 2 ] JEONG D,QOMALADEWI N P,LEE J,et al. The role ation characteristics and related factors in huangshan
of autophagy in skin fibroblasts,keratinocytes,melano‐ scenic area[J]. J Risk Anal Crisis Resp,2018,8(3):177.
cytes,and epidermal stem cells[J]. J Invest Dermatol, [16] 李莲,张禁.高原特勤人员皮肤病防治研究进展[J].武警
2020,140(9):1691-1697. 医学,2022,33(9):821-823.
[ 3 ] 张静如,张翮,孙治国,等. 单兵用防晒防护用品的需求分 [17] FENG Z,QIN Y F,HUO F,et al. NMN recruits GSH to
析及配方设计[J].第二军医大学学报,2021,42(1):75-80. enhance GPX4-mediated ferroptosis defense in UV irra‐
[ 4 ] CHOI W,CHO J H,PARK S H,et al. Ginseng root- diation induced skin injury[J]. Biochim Biophys Acta Mol
derived exosome-like nanoparticles protect skin from UV Basis Dis,2022,1868(1):166287.
irradiation and oxidative stress by suppressing activator [18] MOHANIA D,CHANDEL S,KUMAR P,et al. Ultravio‐
protein-1 signaling and limiting the generation of reactive let radiations:skin defense-damage mechanism[J]. Adv
oxygen species[J]. J Ginseng Res,2024,48(2):211-219. Exp Med Biol,2017,996:71-87.
[ 5 ] XIE Y,YE J P,OUYANG Y Q,et al. Microneedle- [19] YANG C,RYBCHYN M S,DE SILVA W G M,et al. UV-
assisted topical delivery of idebenone-loaded bioadhesive induced DNA damage in skin is reduced by CaSR inhibi‐
nanoparticles protect against UV-induced skin damage[J]. tion[J]. Photochem Photobiol,2022,98(5):1157-1166.
Biomedicines,2023,11(6):1649. [20] IVANOVA I,KURZ B,LANG K,et al. Investigation of
[ 6 ] LI N N,JI X H,MUKHERJEE S,et al. A bioinspired skin the HelioVital filter foil revealed protective effects against
UV filter with broadband UV protection,photostability, UVA1 irradiation-induced DNA damage and against
and resistance to oxidative damage[J]. ACS Appl Mater In‐ UVA1-induced expression of matrix metalloproteinases
terfaces,2023,15(8):10383-10397. (MMP) MMP1,MMP2,MMP3 and MMP15[J]. Photo‐
[ 7 ] CAPUTO F,DE NICOLA M,SIENKIEWICZ A,et al. chem Photobiol Sci,2022,21(3):361-372.
Cerium oxide nanoparticles,combining antioxidant and (收稿日期:2025-05-30 修回日期:2025-08-11)
UV shielding properties,prevent UV-induced cell damage (编辑:舒安琴)
· 2112 · China Pharmacy 2025 Vol. 36 No. 17 中国药房 2025年第36卷第17期

