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Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles

The pathophysiology of acne vulgaris depends on active sebaceous glands, implying that selective destruction of sebaceous glands could be an effective treatment. We hypothesized that light-absorbing microparticles could be delivered into sebaceous glands, enabling local injury by optical pulses. A s...

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Autores principales: Paithankar, Dilip Y, Sakamoto, Fernanda H, Farinelli, William A, Kositratna, Garuna, Blomgren, Richard D, Meyer, Todd J, Faupel, Linda J, Kauvar, Arielle N B, Lloyd, Jenifer R, Cheung, Wang L, Owczarek, Witold D, Suwalska, Anna M, Kochanska, Katarzyna B, Nawrocka, Agnieszka K, Paluchowska, Elwira B, Podolec, Katarzyna M, Pirowska, Magdalena M, Wojas-Pelc, Anna B, Anderson, R Rox
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4580730/
https://www.ncbi.nlm.nih.gov/pubmed/25748556
http://dx.doi.org/10.1038/jid.2015.89
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author Paithankar, Dilip Y
Sakamoto, Fernanda H
Farinelli, William A
Kositratna, Garuna
Blomgren, Richard D
Meyer, Todd J
Faupel, Linda J
Kauvar, Arielle N B
Lloyd, Jenifer R
Cheung, Wang L
Owczarek, Witold D
Suwalska, Anna M
Kochanska, Katarzyna B
Nawrocka, Agnieszka K
Paluchowska, Elwira B
Podolec, Katarzyna M
Pirowska, Magdalena M
Wojas-Pelc, Anna B
Anderson, R Rox
author_facet Paithankar, Dilip Y
Sakamoto, Fernanda H
Farinelli, William A
Kositratna, Garuna
Blomgren, Richard D
Meyer, Todd J
Faupel, Linda J
Kauvar, Arielle N B
Lloyd, Jenifer R
Cheung, Wang L
Owczarek, Witold D
Suwalska, Anna M
Kochanska, Katarzyna B
Nawrocka, Agnieszka K
Paluchowska, Elwira B
Podolec, Katarzyna M
Pirowska, Magdalena M
Wojas-Pelc, Anna B
Anderson, R Rox
author_sort Paithankar, Dilip Y
collection PubMed
description The pathophysiology of acne vulgaris depends on active sebaceous glands, implying that selective destruction of sebaceous glands could be an effective treatment. We hypothesized that light-absorbing microparticles could be delivered into sebaceous glands, enabling local injury by optical pulses. A suspension of topically applied gold-coated silica microparticles exhibiting plasmon resonance with strong absorption at 800 nm was delivered into human pre-auricular and swine sebaceous glands in vivo, using mechanical vibration. After exposure to 10–50 J cm(−2), 30 milliseconds, 800 nm diode laser pulses, microscopy revealed preferential thermal injury to sebaceous follicles and glands, consistent with predictions from a computational model. Inflammation was mild; gold particles were not retained in swine skin 1 month after treatment, and uptake in other organs was negligible. Two independent prospective randomized controlled clinical trials were performed for treatment of moderate-to-severe facial acne, using unblinded and blinded assessments of disease severity. Each trial showed clinically and statistically significant improvement of inflammatory acne following three treatments given 1–2 weeks apart. In Trial 2, inflammatory lesions were significantly reduced at 12 weeks (P=0.015) and 16 weeks (P=0.04) compared with sham treatments. Optical microparticles enable selective photothermolysis of sebaceous glands. This appears to be a well-tolerated, effective treatment for acne vulgaris.
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spelling pubmed-45807302015-10-02 Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles Paithankar, Dilip Y Sakamoto, Fernanda H Farinelli, William A Kositratna, Garuna Blomgren, Richard D Meyer, Todd J Faupel, Linda J Kauvar, Arielle N B Lloyd, Jenifer R Cheung, Wang L Owczarek, Witold D Suwalska, Anna M Kochanska, Katarzyna B Nawrocka, Agnieszka K Paluchowska, Elwira B Podolec, Katarzyna M Pirowska, Magdalena M Wojas-Pelc, Anna B Anderson, R Rox J Invest Dermatol Original Article The pathophysiology of acne vulgaris depends on active sebaceous glands, implying that selective destruction of sebaceous glands could be an effective treatment. We hypothesized that light-absorbing microparticles could be delivered into sebaceous glands, enabling local injury by optical pulses. A suspension of topically applied gold-coated silica microparticles exhibiting plasmon resonance with strong absorption at 800 nm was delivered into human pre-auricular and swine sebaceous glands in vivo, using mechanical vibration. After exposure to 10–50 J cm(−2), 30 milliseconds, 800 nm diode laser pulses, microscopy revealed preferential thermal injury to sebaceous follicles and glands, consistent with predictions from a computational model. Inflammation was mild; gold particles were not retained in swine skin 1 month after treatment, and uptake in other organs was negligible. Two independent prospective randomized controlled clinical trials were performed for treatment of moderate-to-severe facial acne, using unblinded and blinded assessments of disease severity. Each trial showed clinically and statistically significant improvement of inflammatory acne following three treatments given 1–2 weeks apart. In Trial 2, inflammatory lesions were significantly reduced at 12 weeks (P=0.015) and 16 weeks (P=0.04) compared with sham treatments. Optical microparticles enable selective photothermolysis of sebaceous glands. This appears to be a well-tolerated, effective treatment for acne vulgaris. Nature Publishing Group 2015-07 2015-04-09 /pmc/articles/PMC4580730/ /pubmed/25748556 http://dx.doi.org/10.1038/jid.2015.89 Text en Copyright © 2015 The Society for Investigative Dermatology, Inc http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/4.0/
spellingShingle Original Article
Paithankar, Dilip Y
Sakamoto, Fernanda H
Farinelli, William A
Kositratna, Garuna
Blomgren, Richard D
Meyer, Todd J
Faupel, Linda J
Kauvar, Arielle N B
Lloyd, Jenifer R
Cheung, Wang L
Owczarek, Witold D
Suwalska, Anna M
Kochanska, Katarzyna B
Nawrocka, Agnieszka K
Paluchowska, Elwira B
Podolec, Katarzyna M
Pirowska, Magdalena M
Wojas-Pelc, Anna B
Anderson, R Rox
Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles
title Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles
title_full Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles
title_fullStr Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles
title_full_unstemmed Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles
title_short Acne Treatment Based on Selective Photothermolysis of Sebaceous Follicles with Topically Delivered Light-Absorbing Gold Microparticles
title_sort acne treatment based on selective photothermolysis of sebaceous follicles with topically delivered light-absorbing gold microparticles
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4580730/
https://www.ncbi.nlm.nih.gov/pubmed/25748556
http://dx.doi.org/10.1038/jid.2015.89
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