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Published in: Microsystem Technologies 7/2019

03-12-2018 | Technical Paper

Improved cosmeceutical phototherapy using microneedle

Authors: Myeongwoo Kang, Chihyoung Shim, Sangcheol Na, Byungjun Lee, Noo Li Jeon, Hoyoung Yun

Published in: Microsystem Technologies | Issue 7/2019

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Abstract

Skin rejuvenation is the most popular topic in cosmetic industry. Recently, skin phototherapy is spotlighted among a lot of skin therapies by its advantageous effects and ease of use. Phototherapy has been widely used for cosmeceutical purposes such as anti-aging or anti-bacterial effects. By the optical properties of light, however, the visible lights cannot reach deep inside the skin layer by reflection and scattering at the outermost boundary of the skin, the stratum corneum and epidermis. This paper describes new method to improve the skin phototherapy using microneedles. We used microneedle as the light transporter like optic fiber to transport light inside the skin by total internal reflection. The total internal reflection inside microneedles was geometrically analyzed and was measured microscopically. The light transmittance with or without a microneedle array was measured using an optical microscope system. Three different ranges of lights (red, green, blue) were exposed on the backside of the microneedle and the light pass through the microneedles. As the results, using microneedles, light transmissivity was dramatically improved even the shorter wavelength of the light (Blue light). Collaboration of phototherapy and microneedle will be a powerful cosmetic and medical tool for skin therapy.

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Literature
go back to reference Ammad S, Gonzales M, Edwards C, Finlay AY, Mills C (2008) An assessment of the efficacy of blue light phototherapy in the treatment of acne vulgaris. J cosmet Dermatol 7:180–188CrossRef Ammad S, Gonzales M, Edwards C, Finlay AY, Mills C (2008) An assessment of the efficacy of blue light phototherapy in the treatment of acne vulgaris. J cosmet Dermatol 7:180–188CrossRef
go back to reference Avci P, Gupta A, Sadasivam M, Vecchio D, Pam Z, Pam N, Hamblin MR (2013) Low-level laser (light) therapy (LLLT) in skin: stimulating, healing, restoring. Semin Cutan Med Surg 32(1):41–52 Avci P, Gupta A, Sadasivam M, Vecchio D, Pam Z, Pam N, Hamblin MR (2013) Low-level laser (light) therapy (LLLT) in skin: stimulating, healing, restoring. Semin Cutan Med Surg 32(1):41–52
go back to reference Bitter PH (2000) Noninvasive rejuvenation of photodamaged skin using serial, full-face intense pulsed light treatments. Dermatol Surg 26:835–843CrossRef Bitter PH (2000) Noninvasive rejuvenation of photodamaged skin using serial, full-face intense pulsed light treatments. Dermatol Surg 26:835–843CrossRef
go back to reference Chabert R, Fouque L, Pinacolo S, Garcia-Gimenez N, Bonnans M, Cucumel K, Domloge N (2015) Evaluation of light-emitting diodes (LED) effect on skin biology (in vitro study). Skin Res Technol 21:426–436CrossRef Chabert R, Fouque L, Pinacolo S, Garcia-Gimenez N, Bonnans M, Cucumel K, Domloge N (2015) Evaluation of light-emitting diodes (LED) effect on skin biology (in vitro study). Skin Res Technol 21:426–436CrossRef
go back to reference Ding H, Lu JQ, Wooden WA, Kragel PJ, Hu X-H (2006) Refractive indices of human skin tissues at eight wavelengths and estimated dispersion relations between 300 and 1600 nm. Phys Med Biol 51:1479CrossRef Ding H, Lu JQ, Wooden WA, Kragel PJ, Hu X-H (2006) Refractive indices of human skin tissues at eight wavelengths and estimated dispersion relations between 300 and 1600 nm. Phys Med Biol 51:1479CrossRef
go back to reference Elman M, Slatkine M, Harth Y (2003) The effective treatment of acne vulgaris by a high-intensity, narrow band 405–420 nm light source. J Cosmet Laser Therapy 5:111–117CrossRef Elman M, Slatkine M, Harth Y (2003) The effective treatment of acne vulgaris by a high-intensity, narrow band 405–420 nm light source. J Cosmet Laser Therapy 5:111–117CrossRef
go back to reference Gold MH, Goldberg DJ, Nestor MS (2017) Current treatments of acne: medications, lights, lasers, and a novel 650-μs 1064-nm Nd: YAG laser. J Cosmet Dermatol 16:303–318CrossRef Gold MH, Goldberg DJ, Nestor MS (2017) Current treatments of acne: medications, lights, lasers, and a novel 650-μs 1064-nm Nd: YAG laser. J Cosmet Dermatol 16:303–318CrossRef
go back to reference Liebl H, Kloth LC (2012) Skin cell proliferation stimulated by microneedles. J Am Coll Clin Wound Spec 4:2–6CrossRef Liebl H, Kloth LC (2012) Skin cell proliferation stimulated by microneedles. J Am Coll Clin Wound Spec 4:2–6CrossRef
go back to reference Lister T, Wright PA, Chappell PH (2012) Optical properties of human skin. J Biomed Opt 17:090901 Lister T, Wright PA, Chappell PH (2012) Optical properties of human skin. J Biomed Opt 17:090901
go back to reference Mahmoud BH, Hexsel CL, Hamzavi IH, Lim HW (2008) Effects of visible light on the skin. Photochem Photobiol 84:450–462CrossRef Mahmoud BH, Hexsel CL, Hamzavi IH, Lim HW (2008) Effects of visible light on the skin. Photochem Photobiol 84:450–462CrossRef
go back to reference McCrudden MT, McAlister E, Courtenay AJ, González-Vázquez P, Raj Singh TR, Donnelly RF (2015) Microneedle applications in improving skin appearance. Exp Dermatol 24:561–566CrossRef McCrudden MT, McAlister E, Courtenay AJ, González-Vázquez P, Raj Singh TR, Donnelly RF (2015) Microneedle applications in improving skin appearance. Exp Dermatol 24:561–566CrossRef
go back to reference Mohammed YH et al (2014) Microneedle enhanced delivery of cosmeceutically relevant peptides in human skin. PloS one 9:e101956CrossRef Mohammed YH et al (2014) Microneedle enhanced delivery of cosmeceutically relevant peptides in human skin. PloS one 9:e101956CrossRef
go back to reference Mustafa F, Jaafar M (2013) Comparison of wavelength-dependent penetration depths of lasers in different types of skin in photodynamic therapy. Indian J Phys 87:203–209CrossRef Mustafa F, Jaafar M (2013) Comparison of wavelength-dependent penetration depths of lasers in different types of skin in photodynamic therapy. Indian J Phys 87:203–209CrossRef
go back to reference Rohringer S et al (2017) The impact of wavelengths of LED light-therapy on endothelial cells. Sci Rep 7:10700CrossRef Rohringer S et al (2017) The impact of wavelengths of LED light-therapy on endothelial cells. Sci Rep 7:10700CrossRef
go back to reference Russell B, Kellett N, Reilly L (2005) A study to determine the efficacy of combination LED light therapy (633 nm and 830 nm) in facial skin rejuvenation. J Cosmet Laser Therapy 7:196–200CrossRef Russell B, Kellett N, Reilly L (2005) A study to determine the efficacy of combination LED light therapy (633 nm and 830 nm) in facial skin rejuvenation. J Cosmet Laser Therapy 7:196–200CrossRef
go back to reference Sheikholeslami M, Ganji DD (2016a) Heat transfer enhancement in an air to water heat exchanger with discontinuous helical turbulators; experimental and numerical studies. Energy 116:341–352CrossRef Sheikholeslami M, Ganji DD (2016a) Heat transfer enhancement in an air to water heat exchanger with discontinuous helical turbulators; experimental and numerical studies. Energy 116:341–352CrossRef
go back to reference Sheikholeslami M, Ganji DD (2016b) Heat transfer improvement in a double pipe heat exchanger by means of perforated turbulators. Energy Convers Manage 127:112–123CrossRef Sheikholeslami M, Ganji DD (2016b) Heat transfer improvement in a double pipe heat exchanger by means of perforated turbulators. Energy Convers Manage 127:112–123CrossRef
go back to reference Singh A, Yadav S (2016) Microneedling: advances and widening horizons. Indian Dermatol Online Jl 7:244CrossRef Singh A, Yadav S (2016) Microneedling: advances and widening horizons. Indian Dermatol Online Jl 7:244CrossRef
Metadata
Title
Improved cosmeceutical phototherapy using microneedle
Authors
Myeongwoo Kang
Chihyoung Shim
Sangcheol Na
Byungjun Lee
Noo Li Jeon
Hoyoung Yun
Publication date
03-12-2018
Publisher
Springer Berlin Heidelberg
Published in
Microsystem Technologies / Issue 7/2019
Print ISSN: 0946-7076
Electronic ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-018-4248-9

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