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Erschienen in: Lasers in Medical Science 1/2022

02.02.2021 | Original Article

Erbium:YAG laser augments the penetration of cryotherapy

verfasst von: Aysenur Botsali, Burcu Beksac, İrfan Gahramanov, Ercan Caliskan

Erschienen in: Lasers in Medical Science | Ausgabe 1/2022

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Abstract

Cryotherapy is commonly used during dermatologic practice. Several modifications such as an “add-on” to topicals or intralesional applications have been already defined to enhance efficacy. The aim of this study is to test our hypothesis that ablative laser application before cryotherapy would increase the depth of freezing.Throughout this experiment, target points received either cryotherapy alone or a combination of erbium:yttrium-aluminum garnet (erbium:YAG) laser and cryotherapy. Freezing durations of 10 (C10), 20 (C20), and 30 seconds (C30) were investigated. Erbium:YAG laser groups received equal high energy shots with different pulse durations (100 μs versus 1500 μs) before freezing. The treatment points were arranged on the peripheral side of porcine skin specimens, and dermoscopic images revealing the iceball visible from the lateral side were immediately captured. Repeated experimental results were compared by Wilcoxon’s test. The comparison of the vertical length of the iceball between the three different freezing durations of 10 seconds, 20 seconds, and 30 seconds was statistically significant (p<0.05). The vertical length of the iceball was higher in both laser groups receiving 30-second freezing (mean ± SD: 4.32±0.53, 3.9±0.38 for micro-short pulse (MSP) and extra-long pulse (XLP), respectively) when compared with 30-second freezing alone (mean ± SD:3.51±0.44) (p=0.016). The two laser settings did not reveal a difference for the penetration of 30-second freezing (p=0.122). In this study, through visual monitorization of the iceball, erbium:YAG laser is found to augment the penetration of cryotherapy. The defined combination regimen has the potential to ameliorate treatment outcomes of cryotherapy.
Literatur
2.
Zurück zum Zitat Gill IS, Remer EM, Hasan WA, Strzempkowski B, Spaliviero M, Steinberg AP et al (2005) Renal cryoablation: outcome at 3 years. J Urol 173(6):1903–1907CrossRef Gill IS, Remer EM, Hasan WA, Strzempkowski B, Spaliviero M, Steinberg AP et al (2005) Renal cryoablation: outcome at 3 years. J Urol 173(6):1903–1907CrossRef
3.
Zurück zum Zitat Seifert JK, Junginger T (2004) Cryotherapy for liver tumors: current status, perspectives, clinical results, and review of literature. Technol Cancer Res Treat 3(2):151–163CrossRef Seifert JK, Junginger T (2004) Cryotherapy for liver tumors: current status, perspectives, clinical results, and review of literature. Technol Cancer Res Treat 3(2):151–163CrossRef
4.
Zurück zum Zitat Kumari C, Kumar A, Sarangi SK, Thirugnanam A (2019) Effect of adjuvant on cutaneous cryotherapy. Heat Mass Transf 55(2):247–260CrossRef Kumari C, Kumar A, Sarangi SK, Thirugnanam A (2019) Effect of adjuvant on cutaneous cryotherapy. Heat Mass Transf 55(2):247–260CrossRef
5.
Zurück zum Zitat Gupta S, Yadav S, Patra S, Gupta S (2017) Fractionated cryotherapy. J Am Acad Dermatol 77(3):e69–e71CrossRef Gupta S, Yadav S, Patra S, Gupta S (2017) Fractionated cryotherapy. J Am Acad Dermatol 77(3):e69–e71CrossRef
6.
Zurück zum Zitat Zeitouni NC, Shieh S, Oseroff AR (2001) Laser and photodynamic therapy in the management of cutaneous malignancies. Clin Dermatol 19(3):328–338CrossRef Zeitouni NC, Shieh S, Oseroff AR (2001) Laser and photodynamic therapy in the management of cutaneous malignancies. Clin Dermatol 19(3):328–338CrossRef
7.
Zurück zum Zitat Mercuri SR, Brianti P, Dattola A, Bennardo L, Silvestri M, Schipani G et al (2018) CO2 laser and photodynamic therapy: study of efficacy in periocular BCC. Dermatol Ther 31(4):e12616CrossRef Mercuri SR, Brianti P, Dattola A, Bennardo L, Silvestri M, Schipani G et al (2018) CO2 laser and photodynamic therapy: study of efficacy in periocular BCC. Dermatol Ther 31(4):e12616CrossRef
8.
Zurück zum Zitat Zaleski-Larsen LA, Fabi SG (2016) Laser-Assisted Drug Delivery. Dermatol Surg 42(8):919–931CrossRef Zaleski-Larsen LA, Fabi SG (2016) Laser-Assisted Drug Delivery. Dermatol Surg 42(8):919–931CrossRef
9.
Zurück zum Zitat Janik JP, Markus JL, Al-Dujaili Z, Markus RF (eds) (2007) Laser resurfacing. Seminars in plastic surgery. Thieme Medical Publishers Janik JP, Markus JL, Al-Dujaili Z, Markus RF (eds) (2007) Laser resurfacing. Seminars in plastic surgery. Thieme Medical Publishers
10.
Zurück zum Zitat Kao B, Kelly KM, Aguilar G, Hosaka Y, Barr RJ, Nelson JS (2004) Evaluation of cryogen spray cooling exposure on in vitro model human skin. Lasers Surg Med 34(2):146–154CrossRef Kao B, Kelly KM, Aguilar G, Hosaka Y, Barr RJ, Nelson JS (2004) Evaluation of cryogen spray cooling exposure on in vitro model human skin. Lasers Surg Med 34(2):146–154CrossRef
11.
Zurück zum Zitat Majaron B, Kelly KM, Park HB, Verkruysse W, Nelson JS (2001) Er: YAG laser skin resurfacing using repetitive long-pulse exposure and cryogen spray cooling: I. Histological study. Lasers Surg Med 28(2):121–130CrossRef Majaron B, Kelly KM, Park HB, Verkruysse W, Nelson JS (2001) Er: YAG laser skin resurfacing using repetitive long-pulse exposure and cryogen spray cooling: I. Histological study. Lasers Surg Med 28(2):121–130CrossRef
12.
Zurück zum Zitat Zhang R, Ramirez-San-Juan JC, Choi B, Jia W, Aguilar G, Kelly KM et al (2006) Thermal responses of ex vivo human skin during multiple cryogen spurts and 1,450 nm laser pulses. Lasers Surg Med 38(2):137–141CrossRef Zhang R, Ramirez-San-Juan JC, Choi B, Jia W, Aguilar G, Kelly KM et al (2006) Thermal responses of ex vivo human skin during multiple cryogen spurts and 1,450 nm laser pulses. Lasers Surg Med 38(2):137–141CrossRef
13.
Zurück zum Zitat Lee YI, Kim J, Yang CE, Hong JW, Lee WJ, Lee JH (2019) Combined therapeutic strategies for keloid treatment. Dermatol Surg 45(6):802–810CrossRef Lee YI, Kim J, Yang CE, Hong JW, Lee WJ, Lee JH (2019) Combined therapeutic strategies for keloid treatment. Dermatol Surg 45(6):802–810CrossRef
14.
Zurück zum Zitat Jiao A, Liu F, Lerner AD, Rao X, Guo Y, Meng C et al (2019) Effective treatment of post-intubation subglottic stenosis in children with holmium laser therapy and cryotherapy via flexible bronchoscopy. Pediatr Investig 3(1):9–16CrossRef Jiao A, Liu F, Lerner AD, Rao X, Guo Y, Meng C et al (2019) Effective treatment of post-intubation subglottic stenosis in children with holmium laser therapy and cryotherapy via flexible bronchoscopy. Pediatr Investig 3(1):9–16CrossRef
15.
Zurück zum Zitat Lee H, Jeong Y-U, Chan KF (2009) The advent of laser therapies in dermatology and urology: underlying mechanisms, recent trends and future directions. J Opt Soc Korea 13(3):321–329CrossRef Lee H, Jeong Y-U, Chan KF (2009) The advent of laser therapies in dermatology and urology: underlying mechanisms, recent trends and future directions. J Opt Soc Korea 13(3):321–329CrossRef
16.
Zurück zum Zitat (1994) Guidelines of care for cryosurgery. American Academy of Dermatology Committee on Guidelines of Care. J Am Acad Dermatol 31(4):648–653 (1994) Guidelines of care for cryosurgery. American Academy of Dermatology Committee on Guidelines of Care. J Am Acad Dermatol 31(4):648–653
17.
Zurück zum Zitat Andrews MD (2004) Cryosurgery for common skin conditions. Am Fam Physician 69(10):2365–2372PubMed Andrews MD (2004) Cryosurgery for common skin conditions. Am Fam Physician 69(10):2365–2372PubMed
Metadaten
Titel
Erbium:YAG laser augments the penetration of cryotherapy
verfasst von
Aysenur Botsali
Burcu Beksac
İrfan Gahramanov
Ercan Caliskan
Publikationsdatum
02.02.2021
Verlag
Springer London
Erschienen in
Lasers in Medical Science / Ausgabe 1/2022
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-021-03259-4

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