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applications of photodynamic therapy dermatology

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wan and Lin Dovepress investing in. The field of PDT will continue to expand as new photosensitizers emerge in the market. Finally, combination therapy, particularly with imiquimod, will be the new standard of care for PDT in patients with skin cancer. Disclosure The authors report no conflicts of interest in this work. References 1. Calzavara-Pinton P, Arisi M, Sereni E, Ortel B. A critical reappraisal of off-label indications for topical photodynamic therapy with aminolevulinic acid and methylaminolevulinate. Rev Recent Clin Trials. 2010;5(2):112–116. 2. Darlenski R, Fluhr JW. Photodynamic therapy in dermatology: past, present, and future. J Biomed Opt. 2013;18(6):061208. 3. Dolmans DE, Fukumura D, Jain RK. Photodynamic therapy for cancer. Nat Rev Cancer. 2003;3(5):380–387. 4. Chaves YN, Torezan LA, Niwa AB, Sanches Junior JA, Festa Neto C. Pain in photodynamic therapy: mechanism of action and management strategies. An Bras Dermatol. 2012;87(4):521–526. 5. Morton CA, Szeimies RM, Sidoroff A, Braathen LR. European guide- lines for topical photodynamic therapy part 1: treatment delivery and current indications – actinic keratoses, Bowen’s disease, basal cell carcinoma. J Eur Acad Dermatol Venereol. 2013;27(5):536–544. 6. Babilas P, Schreml S, Landthaler M, Szeimies RM. Photodynamic therapy in dermatology: state-of-the-art. Photodermatol Photoimmunol Photomed. 2010;26(3):118–132. 7. Webber J, Luo Y, Crilly R, Fromm D, Kessel D. An apoptotic response to photodynamic therapy with endogenous protoporphyrin in vivo. J Photochem Photobiol B. 1996;35(3):209–211. 8. Ackroyd R, Kelty C, Brown N, Reed M. The history of photodetection and photodynamic therapy. Photochem Photobiol. 2001;74(5): 656–669. 9. Taub AF. Photodynamic therapy in dermatology: history and horizons. J Drugs Dermatol. 2004;3(Suppl 1):S8–S25. 10. Dougherty TJ, Grindey GB, Fiel R, Weishaupt KR, Boyle DG. Photoradiation therapy. II. Cure of animal tumors with hematoporphyrin and light. J Natl Cancer Inst. 1975;55(1):115–121. 11. Josefsen LB, Boyle RW. Photodynamic therapy and the develop- ment of metal-based photosensitisers. Met Based Drugs. 2008;2008: 276109. 12. Noodt BB, Berg K, Stokke T, Peng Q, Nesland JM. Apoptosis and necrosis induced with light and 5-aminolaevulinic acid-derived protoporphyrin IX. Br J Cancer. 1996;74(1):22–29. 13. Gad F, Viau G, Boushira M, Bertrand R, Bissonnette R. Photodynamic therapy with 5-aminolevulinic acid induces apoptosis and caspase activation in malignant T cells. J Cutan Med Surg. 2001;5(1):8–13. 14. Kuzelová K, Grebenová D, Pluskalová M, Marinov I, Hrkal Z. Early apoptotic features of K562 cell death induced by 5-aminolaevu- linic acid-based photodynamic therapy. J Photochem Photobiol B. 2004;73(1–2):67–78. 15. Mroz P, Yaroslavsky A, Kharkwal GB, Hamblin MR. Cell death path- ways in photodynamic therapy of cancer. Cancers (Basel). 2011;3(2): 2516–2539. 16. Angell-Petersen E, Sørensen R, Warloe T, et al. Porphyrin formation in actinic keratosis and basal cell carcinoma after topical application of methyl 5-aminolevulinate. J Invest Dermatol. 2006;126(2): 265–271. 17. Peng Q, Soler AM, Warloe T, Nesland JM, Giercksky KE. Selective distribution of porphyrins in skin thick basal cell carcinoma after topical application of methyl 5-aminolevulinate. J Photochem Photobiol B. 2001;62(3):140–145. 18. Fritsch C, Homey B, Stahl W, Lehmann P, Ruzicka T, Sies H. Preferential relative porphyrin enrichment in solar keratoses upon topical applica- tion of delta-aminolevulinic acid methylester. Photochem Photobiol. 1998;68(2):218–221. 19. Marjukka Suhonen T, Bouwstra JA, Urtti A. Chemical enhancement of percutaneous absorption in relation to stratum corneum structural alterations. J Control Release. 1999;59(2):149–161. 20. Matei C, Tampa M, Poteca T, et al. Photodynamic therapy in the treatment of basal cell carcinoma. J Med Life. 2013;6(1):50–54. 21. Gerritsen MJ, Smits T, Kleinpenning MM, van de Kerkhof PC, van Erp PE. Pretreatment to enhance protoporphyrin IX accumulation in photodynamic therapy. Dermatology. 2009;218(3):193–202. 22. Valentine RM, Ibbotson SH, Wood K, Brown CT, Moseley H. Modelling fluorescence in clinical photodynamic therapy. Photochem Photobiol Sci. 2013;12(1):203–213. 23. Di Venosa G, Hermida L, Batlle A, et al. Characterisation of liposomes containing aminolevulinic acid and derived esters. J Photochem Photobiol B. 2008;92(1):1–9. 24. Dirschka T, Radny P, Dominicus R, et al. Photodynamic therapy with BF-200 ALA for the treatment of actinic keratosis: results of a multicentre, randomized, observer-blind Phase III study in comparison with a registered methyl-5-aminolaevulinate cream and placebo. Br J Dermatol. 2012;166(1):137–146. 25. Passos SK, de Souza PE, Soares PK, et al. Quantitative approach to skin field cancerization using a nanoencapsulated photodynamic therapy agent: a pilot study. Clin Cosmet Investig Dermatol. 2013;6: 51–59. 26. Wang YG, Kim H, Mun S, Kim D, Choi Y. Indocyanine green-loaded perfluorocarbon nanoemulsions for bimodal (19)F-magnetic resonance/ nearinfrared fluorescence imaging and subsequent phototherapy. Quant Imaging Med Surg. 2013;3(3):132–140. 27. Kuijpers DI, Thissen MR, Thissen CA, Neumann MH. Similar effectiveness of methyl aminolevulinate and 5-aminolevulinate in topi- cal photodynamic therapy for nodular basal cell carcinoma. J Drugs Dermatol. 2006;5(7):642–645. 28. Moloney FJ, Collins P. Randomized, double-blind, prospective study to compare topical 5-aminolaevulinic acid methylester with topical 5-aminolaevulinic acid photodynamic therapy for extensive scalp actinic keratosis. Br J Dermatol. 2007;157(1):87–91. 29. Botto N, Rogers G. Nontraditional management of basal cell carcinoma. J Drugs Dermatol. 2013;12(5):525–532. 30. Pudroma X, Moan J, Ma LW, Iani V, Juzeniene A. A comparison of 5-amin- olaevulinic acid- and its heptyl ester: dark cytotoxicity and protoporphyrin IX synthesis in human adenocarcinoma WiDr cells and in athymic nude mice healthy skin. Exp Dermatol. 2009;18(11): 985–987. 31. Barras A, Boussekey L, Courtade E, Boukherroub R. Hypericin-loaded lipid nanocapsules for photodynamic cancer therapy in vitro. Nanoscale. 2013;5(21):10562–10572. 32. Jang MS, Doh KS, Kang JS, Jeon YS, Suh KS, Kim ST. A comparative split-face study of photodynamic therapy with indocyanine green and indole-3-acetic acid for the treatment of acne vulgaris. Br J Dermatol. 2011;165(5):1095–1100. 33. Kim BJ, Lee HG, Woo SM, Youn JI, Suh DH. Pilot study on photodynamic therapy for acne using indocyanine green and diode laser. J Dermatol. 2009;36(1):17–21. 34. Ziolkowski P, Osiecka BJ, Oremek G, et al. Enhancement of photody- namic therapy by use of aminolevulinic acid/glycolic acid drug mixture. J Exp Ther Oncol. 2004;4(2):121–129. 35. Pierre MB, Ricci E Jr, Tedesco AC, Bentley MV. Oleic acid as optimizer of the skin delivery of 5-aminolevulinic acid in photodynamic therapy. Pharm Res. 2006;23(2):360–366. 36. Boddé HE, Roemelé PE, Star WM. Quantification of topically deliv- ered 5-aminolevulinic acid by lontophoresis across ex vivo human stratum corneum. Photochem Photobiol. 2002;75(4):418–423. 37. Hashmi JT, Huang YY, Sharma SK, et al. Effect of pulsing in low-level light therapy. Lasers Surg Med. 2010;42(6):450–466. 38. Wiegell SR, Haedersdal M, Philipsen PA, Eriksen P, Enk CD, Wulf HC. Continuous activation of PpIX by daylight is as effective as and less painful than conventional photodynamic therapy for actinic kera- toses; a randomized, controlled, single-blinded study. Br J Dermatol. 2008;158(4):740–746. Clinical, Cosmetic and Investigational Dermatology 2014:7 158 submit your manuscript | www.dovepress.com Dovepress

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