|
[1]
|
陈永国, 崔静, 杨慧. 5-氨基酮戊酸光动力疗法联合常规方法治疗玫瑰痤疮疗效观察[J]. 中国美容医学, 2019, 28(2): 66-69.
|
|
[2]
|
Holmes, A.D., Spoendlin, J., Chien, A.L., et al. (2018) Evidence-Based Update on Rosacea Comor-bidities and Their Common Physiologic Pathways. Journal of the American Academy of Dermatology, 78, 156-166. [Google Scholar] [CrossRef] [PubMed]
|
|
[3]
|
Pindado-Ortega, C., Saceda-Corralo, D., Buendia-Castano, D., et al. (2018) Frontal Fibrosing Alopecia and Cutaneous Comorbidities: A Potential Relationship with Rosacea. Journal of the American Academy of Dermatology, 78, 596-597. [Google Scholar] [CrossRef] [PubMed]
|
|
[4]
|
Tan, J., Schofer, H., Araviiskaia, E., et al. (2016) Prevalence of Rosacea in the General Population of Germany and Russia—The RISE Study. Journal of the European Academy of Dermatology and Venereology, 30, 428-434. [Google Scholar] [CrossRef] [PubMed]
|
|
[5]
|
Gether, L., Overgaard, L.K., Egeberg, A., et al. (2018) Incidence and Prev-alence of Rosacea: A Systematic Review and Meta-Analysis. British Journal of Dermatology, 179, 282-289. [Google Scholar] [CrossRef] [PubMed]
|
|
[6]
|
Rainer, B.M., Fischer, A.H., Luz, F., et al. (2015) Rosacea Is Associated with Chronic Systemic Diseases in a Skin Severity-Dependent Manner: Results of a Case-Control Study. Journal of the American Academy of Dermatology, 73, 604-608. [Google Scholar] [CrossRef] [PubMed]
|
|
[7]
|
李健, 袁超. 玫瑰痤疮的病因及流行病学[J]. 皮肤病与性病, 2017, 39(2): 90-91.
|
|
[8]
|
王莲, 张自辉, 蒋献. 玫瑰痤疮发病机制的研究进展[J]. 实用皮肤病学杂志, 2019, 12(3): 171-174.
|
|
[9]
|
Tan, J. and Berg, M. (2013) Rosacea: Current State of Epidemiology. Journal of the American Academy of Dermatology, 69, S27-S35. [Google Scholar] [CrossRef] [PubMed]
|
|
[10]
|
Steinhoff, M., Buddenkotte, J., Aubert, J., et al. (2011) Clinical, Cellular, and Molecular Aspects in the Pathophysiology of Rosacea. Journal of Investigative Dermatology Symposium Proceedings, 15, 2-11. [Google Scholar] [CrossRef] [PubMed]
|
|
[11]
|
Steinhoff, M., Schauber, J. and Leyden, J.J. (2013) New Insights into Rosacea Pathophysiology: A Review of Recent Findings. Journal of the American Academy of Dermatology, 69, S15-S26. [Google Scholar] [CrossRef] [PubMed]
|
|
[12]
|
Forton, F.M. (2012) Papulopustular Rosacea, Skin Im-munity and Demodex: Pityriasis Folliculorum as a Missing Link. Journal of the European Academy of Dermatology and Venereology, 26, 19-28. [Google Scholar] [CrossRef] [PubMed]
|
|
[13]
|
Steinhoff, M., Schmelz, M. and Schauber, J. (2016) Facial Erythema of Rosacea—Aetiology, Different Pathophysiologies and Treatment Options. Acta Dermato-Venereologica, 96, 579-586. [Google Scholar] [CrossRef] [PubMed]
|
|
[14]
|
许丽君, 张瑞, 董春明. 抗菌肽LL-37研究进展[J]. 军事医学, 2022, 46(7): 551-557.
|
|
[15]
|
Yang, B., Good, D., Mosaiab, T., et al. (2020) Significance of LL-37 on Immuno-modulation and Disease Outcome. BioMed Research International, 2020, Article ID: 8349712. [Google Scholar] [CrossRef] [PubMed]
|
|
[16]
|
Reinholz, M., Ruzicka, T. and Schauber, J. (2012) Cathelicidin LL-37: An Antimicrobial Peptide with a Role in Inflammatory Skin Disease. Annals of Dermatology, 24, 126-135. [Google Scholar] [CrossRef] [PubMed]
|
|
[17]
|
Gokcinar, N.B., Karabulut, A.A., Onaran, Z., et al. (2019) Elevated Tear Human Neutrophil Peptides 1-3, Human Beta Defensin-2 Levels and Conjunctival Cathelicidin LL-37 Gene Expres-sion in Ocular Rosacea. Ocular Immunology and Inflammation, 27, 1174-1183. [Google Scholar] [CrossRef] [PubMed]
|
|
[18]
|
Lee, J., Jung, Y., Jeong, S.W., et al. (2021) Inhibition of Hippo Signaling Improves Skin Lesions in a Rosacea-Like Mouse Model. International Journal of Molecular Sciences, 22, Article No. 931. [Google Scholar] [CrossRef] [PubMed]
|
|
[19]
|
Chen, Y., Moore, C.D., Zhang, J.Y., et al. (2017) TRPV4 Moves toward Center-Fold in Rosacea Pathogenesis. Journal of Investigative Dermatology, 137, 801-804. [Google Scholar] [CrossRef] [PubMed]
|
|
[20]
|
Kim, M., Kim, K.E., Jung, H.Y., et al. (2015) Recombinant Erythroid Differentiation Regulator 1 Inhibits Both Inflammation and Angiogenesis in a Mouse Model of Rosacea. Experimental Dermatology, 24, 680-685. [Google Scholar] [CrossRef] [PubMed]
|
|
[21]
|
Wang, Z., Wu, C., Mascarenhas, N., et al. (2017) 372 Anabotulinum Toxin Reduces LL-37 Induced Rosacea Inflammation by Blocking Mast Cell Degranulation. Journal of Investigative Derma-tology, 137, S256. [Google Scholar] [CrossRef]
|
|
[22]
|
Gerber, P.A., Buhren, B.A., Steinhoff, M., et al. (2011) Rosacea: The Cytokine and Chemokine Network. Journal of Investigative Dermatology Symposium Proceedings, 15, 40-47. [Google Scholar] [CrossRef] [PubMed]
|
|
[23]
|
李卉, 罗桃, 章杰梅. 三种方法治疗酒糟鼻临床疗效分析[J]. 医药前沿, 2016, 6(11): 83-84.
|
|
[24]
|
褚娜, 温小美. 皮肤病血毒片联合多西环素治疗痤疮的临床研究[J]. 现代药物与临床, 2018, 33(4): 938-941.
|
|
[25]
|
Schaller, M., Almeida, L.M., Bewley, A., et al. (2017) Rosacea Treatment Update: Recommendations from the Global ROSacea COnsensus (ROSCO) Panel. British Journal of Dermatology, 176, 465-471. [Google Scholar] [CrossRef] [PubMed]
|
|
[26]
|
Fan, L., Yin, R., Lan, T., et al. (2018) Photodynamic Therapy for Rosacea in Chinese Patients. Photodiagnosis and Photodynamic Therapy, 24, 82-87. [Google Scholar] [CrossRef] [PubMed]
|
|
[27]
|
Friedmann, D.P., Goldman, M.P., Fabi, S.G., et al. (2016) Multi-ple Sequential Light and Laser Sources to Activate Aminolevulinic Acid for Rosacea. Journal of Cosmetic Dermatology, 15, 407-412. [Google Scholar] [CrossRef] [PubMed]
|
|
[28]
|
Kim, M., Jung, H.Y. and Park, H.J. (2015) Topical PDT in the Treatment of Benign Skin Diseases: Principles and New Applications. International Journal of Molecular Sciences, 16, 23259-23278. [Google Scholar] [CrossRef] [PubMed]
|