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References

  1. Reynolds RV., Yeung H, Cheng CE, Cook-Bolden F, Desai SR, Druby KM, Freeman EE, Keri JE, Stein Gold LF, Tan JKL, et al. Guidelines of care for the management of acne vulgaris. J Am Acad Dermatol. 2024;90(5):1006.e1–1006.e30.
  2. Oge LK, Broussard A, Marshall MD. Acne Vulgaris: Diagnosis and treatment. Am Fam Physician. 2019;475–84.
  3. Chen H, Zhang TC, Yin XL, Man JY, Yang XR, Lu M. Magnitude and temporal trend of acne vulgaris burden in 204 countries and territories from 1990 to 2019: an analysis from the Global Burden of Disease Study 2019*. Brit J Dermatol. 2022;186(4):673–83.
  4. Biegaj M. Trądzik pospolity i jego leczenie. Kosmet Estet. 2017;6(2):155–8.
  5. Heng AHS, Chew FT. Systematic review of the epidemiology of acne vulgaris. Sci Rep. 2020;10(1).
  6. Fox L, Csongradi C, Aucamp M, Du Plessis J, Gerber M. Treatment modalities for acne. Molecules. 2016;21(8):1063.
  7. Zaenglein AL, Pathy AL, Schlosser BJ, Alikhan A, Baldwin HE, Berson DS, Bowe WP, Graber EM, Harper JC, Kang S, et al. Guidelines of care for the management of acne vulgaris. J Am Acad Dermatol. 2016;74(5):945–973.e33.
  8. Zouboulis CC, Picardo M, Ju Q, Kurokawa I, Törőcsik D, Bíró T, Schneider MR. Beyond acne: Current aspects of sebaceous gland biology and function. Rev Endocr Metab Disord. 2016;17(3):319–34.
  9. Clayton RW, Göbel K, Niessen CM, Paus R, van Steensel MAM, Lim X. Homeostasis of the sebaceous gland and mechanisms of acne pathogenesis. Brit J Dermatol. 2019;181(4):677–90.
  10. Dréno B, Dagnelie MA, Khammari A, Corvec S. The skin microbiome: A new actor in inflammatory acne. Am J Clin Dermatol. 2020;21(Suppl 1):18–24.
  11. Chilicka K, Rogowska AM, Szyguła R. Effects of topical hydrogen purification on skin parameters and acne vulgaris in adult women. Healthcare (Basel). 2021;9(2).
  12. Kircik LH. Advances in the Understanding of the Pathogenesis of Inflammatory Acne. J Drug Dermatol. 2016;15(1):7–10.
  13. Del Rosso JQ, Kircik L. The primary role of sebum in the pathophysiology of acne vulgaris and its therapeutic relevance in acne management. J. Dermatol. Treat. 2024;35(1).
  14. Stamu-O'Brien C, Jafferany M, Carniciu S, Abdelmaksoud A. Psychodermatology of acne: Psychological aspects and effects of acne vulgaris. J Cosmet Dermatol. 2021;20(4):1080–3.
  15. Christensen RE, Jafferany M. Psychiatric and psychologic aspects of chronic skin diseases. Clin Dermatol. 2023;41(1):75–81.
  16. Bhat YJ, Latief I, Hassan I. Update on etiopathogenesis and treatment of Acne. Indian J Dermatol Venereol Leprol. 2017;83(3):298–306.
  17. Moradi Tuchayi S, Makrantonaki E, Ganceviciene R, Dessinioti C, Feldman SR, Zouboulis CC. Acne vulgaris. Nat Rev Dis Primers. 2015;1:15029.
  18. Bungau AF, Radu AF, Bungau SG, Vesa CM, Tit DM, Endres LM. Oxidative stress and metabolic syndrome in acne vulgaris: Pathogenetic connections and potential role of dietary supplements and phytochemicals. Biomed and Pharmacother. 2023;164:115003.
  19. Bagatin E, Freitas THP De, Rivitti Machado MC, Ribeiro BM, Nunes S, Rocha MAD Da. Adult female acne: A guide to clinical practice. An Bras Dermatol. 2019;94(1):62–75.
  20. Poręba R, Dębski R, Kotarski J, Paszkowski T, Pertyński T, Stachowiak G. Rekomendacje Zespołu Ekspertów Polskiego Towarzystwa Ginekologicznego. Kompleksowa terapia hormonalna u kobiet z trądzikiem - 2011. Ginekol Pol. 2012;83:229–32.
  21. White T, Jain JK, Stanczyk FZ. Effect of oral versus transdermal steroidal contraceptives on androgenic markers. Am J Obstet Gynecol. 2005;192(6):2055–9.
  22. Simoncini T, Genazzani AR. A review of the cardiovascular and breast actions of drospirenone in preclinical studies. Climacteric. 2010;13(1):22–33.
  23. Singh N, Singh A, Pandey K, Nimisha. Current insights for the management of acne in the modern era. Recent Pat Antiinfect Drug Discov. 2020;15(1):3–29.
  24. Cooper AJ, Harris VR. Modern management of acne. Med. J. Aust. 2017;206(1):41–5.
  25. Lin M, Ma Y, Liu Z, Ruan H, Yuan B. Modern techniques in addressing facial acne scars: A thorough analysis. Skin Res Technol. 2024;30(2):e13573.
  26. Jagdeo J, Austin E, Mamalis A, Wong C, Ho D, Siegel DM. Light-emitting diodes in dermatology: A systematic review of randomized controlled trials. Lasers Surg Med. 2018;50(6):613–28.
  27. Noé C, Pelletier-Aouizerate M, Cartier H. LED en dermatologie. Ann Dermatol Venereol. 2017;144(4):301–14.
  28. Heiskanen V, Hamblin MR. Photobiomodulation: lasers vs. light emitting diodes? Photochem Photobiol Sci. 2019;18(1):259.
  29. Diogo MLG, Campos TM, Fonseca ESR, Pavani C, Horliana ACRT, Fernandes KPS, Bussadori SK, Fantin FGMM, Leite DPV, Yamamoto ÂTA, et al. Effect of Blue Light on Acne Vulgaris: A Systematic Review. Sensors (Basel). 2021;21(20).
  30. Dompe C, Moncrieff L, Matys J, Grzech-Leśniak K, Kocherova I, Bryja A, Bruska M, Dominiak M, Mozdziak P, Skiba THI, et al. Photobiomodulation-Underlying Mechanism and Clinical Applications. J Clin Med. 2020;9(6):1–17.
  31. Batory M, Dana A, Erkiert-Polguj A, Augustyniak AM, Rotsztejn H. Effects of LED radiation on the skin – what is new in recent research? Part I: In skin diseases. Dermatol Rev. 2015;102(6):558–63.
  32. Topaloglu N, Balkaya U, Buse Z, Çevik Y. Portable multicolor LED-based system for the photobiomodulation therapy on wound healing process in vitro. Res Sq. 2021.
  33. Phan DT, Ta QB, Huynh TC, Vo TH, Nguyen CH, Park S, Choi J, Oh J. A smart LED therapy device with an automatic facial acne vulgaris diagnosis based on deep learning and internet of things application. Comput Biol Med. 2021;136:104610.
  34. Li MK, Liu C, Hsu JTS. The use of lasers and light devices in acne management: An update. Am J Clin Dermatol. 2021;22(6):785–800.
  35. Rau A, Keri J, Murase JE. Management of acne in pregnancy. Am J Clin Dermatol. 2024;25(3):465–71.
  36. Skedros JG, Adondakis MG, Brown EM, Oliver MR. Propionibacterium acnes and Staphylococcus epidermidis olecranon bursitis/osteomyelitis: A case involving surgical and antibiotic treatment. BMJ Case Rep. 2018;2018:bcr2017223782.
  37. Ryan-Kewley AE, Williams DR, Hepburn N, Dixon RA. Non-antibiotic isotretinoin treatment differentially controls Propionibacterium acnes on skin of acne patients. Front Microbiol. 2017;8:1381.
  38. Nakayama E, Kushibiki T, Mayumi Y, Fushuku S, Nakamura T, Kiyosawa T, Ishihara M, Azuma R. Optimal blue light irradiation conditions for the treatment of acne vulgaris in a mouse model. J Photochem Photobiol B. 2023;239:112651.
  39. Xu H, Li H. Acne, the skin microbiome, and antibiotic treatment. Am J Clin Dermatol. 2019;20(3):335.
  40. Hazarika N. Acne vulgaris: new evidence in pathogenesis and future modalities of treatment. J Dermatol Treat. 2021;32(3):277–85.
  41. de Annunzio SR, de Freitas LM, Blanco AL, da Costa MM, Carmona-Vargas CC, de Oliveira KT, Fontana CR. Susceptibility of Enterococcus faecalis and Propionibacterium acnes to antimicrobial photodynamic therapy. J Photochem Photobiol B. 2018;178:545–50.
  42. Tremblay JF, Sire DJ, Lowe NJ, Moy RL. Light-emitting diode 415 nm in the treatment of inflammatory acne: an open-label, multicentric, pilot investigation. J Cosmet Laser Ther. 2006;8(1):31–3.
  43. Wheeland RG, Dhawan S. Evaluation of self-treatment of mild-to-moderate facial acne with a blue light treatment system. J Drugs Dermatol. 2011;10(6):596–602.
  44. Goldberg D, Russell B. Combination blue (415 nm) and red (633 nm) LED phototherapy in the treatment of mild to severe acne vulgaris. J Cosmet Laser Ther. 2006;8(2):71–5.
  45. Maclean M, MacGregor SJ, Anderson JG, Woolsey G. Inactivation of bacterial pathogens following exposure to light from a 405-nanometer light-emitting diode array. Appl Environ Microbiol. 2009;75(7):1932–7.
  46. Sadick N. A study to determine the effect of combination blue (415 nm) and near-infrared (830 nm) light-emitting diode (LED) therapy for moderate acne vulgaris. J Cosmet Laser Ther. 2009;11(2):125–8.
  47. Liu LH, Fan X, An YX, Zhang J, Wang CM, Yang RY. Randomized trial of three phototherapy methods for the treatment of acne vulgaris in Chinese patients. Photodermatol Photoimmunol Photomed. 2014;30(5):246–53.
  48. Li WH, Fassih A, Binner C, Parsa R, Southall MD. Low-level red LED light inhibits hyperkeratinization and inflammation induced by unsaturated fatty acid in an in vitro model mimicking acne. Lasers Surg Med. 2018;50(2):158–65.
  49. Kleinpenning MM, Smits T, Frunt MHA, van Erp PEJ, van de Kerkhof PCM, Gerritsen RMJP. Clinical and histological effects of blue light on normal skin. Photodermatol Photoimmunol Photomed. 2010;26(1):16–21.
  50. Liebmann J, Born M, Kolb-Bachofen V. Blue-light irradiation regulates proliferation and differentiation in human skin cells. J Invest Dermatol. 2010;130(1):259–69.
  51. Orenstein A, Karni Z, Lepselter J. Modular laser and pulsed-light system for treatment of cutaneous abnormalities. Alma Lasers. Available at: https://pdf.medicalexpo.com/pdf/alma-lasers/modular-laser-pulsed-light-system-treatment-cutaneous-abnormalities/79240-129792-_6.html (Accessed August 28, 2025).
  52. Politi Y, Levi A, Enk CD, Lapidoth M. Integrated cooling-vacuum-assisted 1540-nm erbium:glass laser is effective in treating mild-to-moderate acne vulgaris. Lasers Med Sci. 2015;30(9):2389–93.
  53. Artzi O, Koren A, Shehadeh W, Friedman O. Quasi long-pulsed 1064nm Nd:YAG (micro pulsed) technology for the treatment of active acne: A case series. J Cosmet Dermatol. 2021;20(7):2102–7.
  54. Tong LX, Brauer JA. Lasers, light, and the treatment of acne: A comprehensive review of the literature. J Drug Dermatol. 2017;16(11):1095–102.
  55. Chalermsuwiwattanakan N, Rojhirunsakool S, Kamanamool N, Kanokrungsee S, Udompataikul M. The comparative study of efficacy between 1064-nm long-pulsed Nd:YAG laser and 595-nm pulsed dye laser for the treatment of acne vulgaris. J Cosmet Dermatol. 2021;20(7):2108–15.
  56. Munavalli GS, Weiss RA. Evidence for laser- and light-based treatment of acne vulgaris. Semin Cutan Med Surg. 2008;27(3):207–11.
  57. Bogle MA, Dover JS, Arndt KA, Mordon S. Evaluation of the 1,540-nm erbium: Glass laser in the treatment of inflammatory facial acne. Dermatol Surg. 2007;33(7):810–7.
  58. Rai R, Natarajan K. Laser and light based treatments of acne. Indian J Dermatol Venereol Leprol. 2013;79(3):300–9.
  59. Brzezińska NE, Roter G, Szczerkowska-Dobosz A. Possibilities and limitations of using various light sources in the treatment of acne vulgaris. Dermatol Rev. 2024;110(6):682–8.
  60. Hædersdal M, Togsverd-bo K, Wulf HC. Evidence-based review of lasers, light sources and photodynamic therapy in the treatment of acne vulgaris. J Eur Acad Dermatol Venereol. 2008;22(3):267–78.
  61. Shamban AT, Enokibori M, Narurkar V, Wilson D. Photopneumatic technology for the treatment of acne vulgaris. J Drugs Dermatol. 2008;7(2):139–45.
  62. Wanitphakdeedecha R, Tanzi EL, Alster TS. Photopneumatic therapy for the treatment of acne. J Drugs Dermatol. 2009;8(3):239–41.
  63. Salah el din MM, Samy NA, Salem AE. Comparison of pulsed dye laser versus combined pulsed dye laser and Nd:YAG laser in the treatment of inflammatory acne vulgaris. J Cosmet Laser Ther. 2017;19(3):149–59.
  64. Ohsawa I, Ishikawa M, Takahashi K, Watanabe M, Nishimaki K, Yamagata K, Katsura KI, Katayama Y, Asoh S, Ohta S. Hydrogen acts as a therapeutic antioxidant by selectively reducing cytotoxic oxygen radicals. Nat Med. 2007 13:6. 2007;13(6):688–94.
  65. Qian L, Wu Z, Cen J, Pasca S, Tomuleasa C. Medical Application of Hydrogen in Hematological Diseases. Oxid Med Cell Longev. 2019;3917393.
  66. Qian L, Shen J. Hydrogen therapy may be an effective and specific novel treatment for Acute Graft-versus-host disease (GVHD). J Cell Mol Med. 2013;17(8):1059–63.
  67. Kapuścińska A, Nowak I. Zastosowanie kwasów organicznych w terapii trądziku i przebarwień skóry. Postepy Hig Med Dosw. 2015;69:374–83.
  68. Tang SC, Yang JH. Dual effects of alpha-hydroxy acids on the skin. Molecules. 2018;23(4).
  69. Valle-González ER, Jackman JA, Yoon BK, Mokrzecka N, Cho NJ. pH-Dependent antibacterial activity of glycolic acid: Implications for anti-acne formulations. Sci Rep. 2020;10(1).
  70. Liu H, Yu H, Xia J, Liu L, Liu GJ, Sang H, Peinemann F. Topical azelaic acid, salicylic acid, nicotinamide, sulphur, zinc and fruit acid (alpha-hydroxy acid) for acne. Cochrane Database Syst Rev. 2020;2020(5):CD011368.
  71. Măgerușan Șoimița E, Hancu G, Rusu A. A comprehensive bibliographic Review concerning the efficacy of organic acids for chemical peels treating acne vulgaris. Molecules. 2023;28(20).
  72. Tanzi EL, Alster TS. Comparison of a 1450-nm diode laser and a 1320-nm Nd:YAG laser in the treatment of atrophic facial scars: a prospective clinical and histologic study. Dermatol Surg. 2004;30(2 Pt 1):152–7.
  73. Chilicka K, Rusztowicz M, Szyguła R, Nowicka D. Methods for the improvement of acne scars used in dermatology and cosmetology: A review. J Clin Med. 2022;11(10).
Language: English
Page range: 159 - 173
Submitted on: Jun 16, 2025
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Accepted on: Oct 23, 2025
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Published on: Dec 25, 2025
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2025 Weronika Gajdka, Marta Nawrocka, Rafał Rakoczy, Adrian Augustyniak, published by Hirszfeld Institute of Immunology and Experimental Therapy
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.