Skip to main content
Erschienen in: Lasers in Medical Science 7/2022

01.05.2022 | Original Article

Efficacy and safety of 755-nm picosecond alexandrite laser with topical tranexamic acid versus laser monotherapy for melasma and facial rejuvenation: a multicenter, randomized, double-blinded, split-face study in Chinese patients

verfasst von: Yiming Li, Cheng Yao, Heye Zhang, Li Li, Yiyi Song

Erschienen in: Lasers in Medical Science | Ausgabe 7/2022

Einloggen, um Zugang zu erhalten

Abstract

To compare the efficacy and safety of 755-nm picosecond alexandrite laser and topical tranexamic acid (TTA) combination therapy with laser monotherapy, for the treatment of melasma and facial rejuvenation. This multicenter, randomized, double-blinded, split-face study enrolled 37 patients who presented with melasma and photoaging. Facial halves were randomized to receive either laser and TTA combination therapy or laser monotherapy. Three treatments were delivered at 4–5 weeks intervals. Patients were followed up for 1, 3, and 6 months post-final treatment and evaluated by blinded investigators for hemi-Melasma Area and Severity Index (hemi-MASI), facial dyschromia, skin texture, laxity, and rhytids. Daily diaries rating healing progress for 7 days posttreatment and satisfaction grading were performed by all patients. Adverse events were recorded. Thirty-six patients completed the follow-up. Compared with the baseline, hemi-MASI, dyschromia, and skin texture on both halves improved significantly through the follow-up (p = 0.000). A significant difference in hemi-MASI and dyschromia between combination therapy halves and monotherapy halves was noticed at 1- and 3-month follow-ups (p < 0.05). The laser monotherapy halves displayed significantly less redness and sensitivity during the 7-day posttreatment recovery period (p < 0.05). Patients’ satisfaction ratings for the combination therapy halves were higher than the monotherapy halves at 1-month follow-up (p < 0.05). No severe adverse events were observed. The picosecond alexandrite laser and TTA combination therapy demonstrated synergistic efficacy for hemi-MASI and dyschromia improvements over laser monotherapy. The optimization of the picosecond laser and TTA combination regimen needs further investigation.
Literatur
1.
Zurück zum Zitat Pigmentary Disorder Group, Combination of Traditional and Western Medicine Dermatology (2021) Consensus on diagnosis and treatment of melasma in China (2021 version). Chin J Dermatol 54 (2): 110-116 Pigmentary Disorder Group, Combination of Traditional and Western Medicine Dermatology (2021) Consensus on diagnosis and treatment of melasma in China (2021 version). Chin J Dermatol 54 (2): 110-116
2.
Zurück zum Zitat Passeron T, Picardo M (2018) Melasma, a photoaging disorder. Pigment Cell Melanoma Res 31(4):461–465CrossRef Passeron T, Picardo M (2018) Melasma, a photoaging disorder. Pigment Cell Melanoma Res 31(4):461–465CrossRef
3.
Zurück zum Zitat Lin ET, Chiang HM, Lin BS, Huang YH, Chang CC (2021) Photoaging reversibility in Asian patients with melasma treated using picosecond lasers with a diffractive lens array: a 1-year prospective observational cohort study. Dermatol Surg 47(1):e10–e14CrossRef Lin ET, Chiang HM, Lin BS, Huang YH, Chang CC (2021) Photoaging reversibility in Asian patients with melasma treated using picosecond lasers with a diffractive lens array: a 1-year prospective observational cohort study. Dermatol Surg 47(1):e10–e14CrossRef
4.
Zurück zum Zitat Lee MC, Lin YF, Hu S, Huang YL, Chang SL, Cheng CY, Chang CS (2018) A split-face study: comparison of picosecond alexandrite laser and Q-switched Nd:YAG laser in the treatment of melasma in Asians. Lasers Med Sci 33(8):1733–1738CrossRef Lee MC, Lin YF, Hu S, Huang YL, Chang SL, Cheng CY, Chang CS (2018) A split-face study: comparison of picosecond alexandrite laser and Q-switched Nd:YAG laser in the treatment of melasma in Asians. Lasers Med Sci 33(8):1733–1738CrossRef
5.
Zurück zum Zitat Wang YJ, Lin ET, Chen YT, Chiu PC, Lin BS, Chiang HM, Huang YH, Wang KY, Lin HY, Chang TM, Chang CC (2020) Prospective randomized controlled trial comparing treatment efficacy and tolerance of picosecond alexandrite laser with a diffractive lens array and triple combination cream in female Asian patients with melasma. J Eur Acad Dermatol Venereol 34(3):624–632CrossRef Wang YJ, Lin ET, Chen YT, Chiu PC, Lin BS, Chiang HM, Huang YH, Wang KY, Lin HY, Chang TM, Chang CC (2020) Prospective randomized controlled trial comparing treatment efficacy and tolerance of picosecond alexandrite laser with a diffractive lens array and triple combination cream in female Asian patients with melasma. J Eur Acad Dermatol Venereol 34(3):624–632CrossRef
6.
Zurück zum Zitat Yu W, Zhu J, Yu W, Shang Y, Lyu D, Lin X, Xu H, Zhang Z (2021) Three-year results of facial photoaging in Asian patients after alexandrite 755 nm picosecond laser with diffractive lens array: a split-face, single-blinded, randomized controlled comparison. Lasers Surg Med 53(8):1065–1072CrossRef Yu W, Zhu J, Yu W, Shang Y, Lyu D, Lin X, Xu H, Zhang Z (2021) Three-year results of facial photoaging in Asian patients after alexandrite 755 nm picosecond laser with diffractive lens array: a split-face, single-blinded, randomized controlled comparison. Lasers Surg Med 53(8):1065–1072CrossRef
7.
Zurück zum Zitat Wat H, Yee-Nam Shek S, Yeung CK, Chan HH (2019) Efficacy and safety of picosecond 755-nm alexandrite laser with diffractive lens array for non-ablative rejuvenation in Chinese skin. Lasers Surg Med 51(1):8–13CrossRef Wat H, Yee-Nam Shek S, Yeung CK, Chan HH (2019) Efficacy and safety of picosecond 755-nm alexandrite laser with diffractive lens array for non-ablative rejuvenation in Chinese skin. Lasers Surg Med 51(1):8–13CrossRef
8.
Zurück zum Zitat Khetarpal S, Desai S, Kruter L, Prather H, Petrell K, Depina J, Arndt K, Dover JS (2016) Picosecond laser with specialized optic for facial rejuvenation using a compressed treatment interval. Lasers Surg Med 48(8):723–726CrossRef Khetarpal S, Desai S, Kruter L, Prather H, Petrell K, Depina J, Arndt K, Dover JS (2016) Picosecond laser with specialized optic for facial rejuvenation using a compressed treatment interval. Lasers Surg Med 48(8):723–726CrossRef
9.
Zurück zum Zitat Weiss RA, McDaniel DH, Weiss MA, Mahoney AM, Beasley KL, Halvorson CR (2017) Safety and efficacy of a novel diffractive lens array using a picosecond 755 nm alexandrite laser for treatment of wrinkles. Lasers Surg Med 49(1):40–44CrossRef Weiss RA, McDaniel DH, Weiss MA, Mahoney AM, Beasley KL, Halvorson CR (2017) Safety and efficacy of a novel diffractive lens array using a picosecond 755 nm alexandrite laser for treatment of wrinkles. Lasers Surg Med 49(1):40–44CrossRef
10.
Zurück zum Zitat Del Rosario E, Florez-Pollack S, Zapata L, Hernandez K, Tovar-Garza A, Rodrigues M, Hynan LS, Pandya AG (2017) Randomized, placebo-controlled, double-blind study of oral tranexamic acid in the treatment of moderate-to-severe melasma. J Am Acad Dermatol 78(2):363–369CrossRef Del Rosario E, Florez-Pollack S, Zapata L, Hernandez K, Tovar-Garza A, Rodrigues M, Hynan LS, Pandya AG (2017) Randomized, placebo-controlled, double-blind study of oral tranexamic acid in the treatment of moderate-to-severe melasma. J Am Acad Dermatol 78(2):363–369CrossRef
11.
Zurück zum Zitat Atefi N, Dalvand B, Ghassemi M, Mehran G, Heydarian A (2017) Therapeutic effects of topical tranexamic acid in comparison with hydroquinone in treatment of women with melasma. Dermatol Ther (Heidelb) 7(3):417–424CrossRef Atefi N, Dalvand B, Ghassemi M, Mehran G, Heydarian A (2017) Therapeutic effects of topical tranexamic acid in comparison with hydroquinone in treatment of women with melasma. Dermatol Ther (Heidelb) 7(3):417–424CrossRef
12.
Zurück zum Zitat Kim SJ, Park JY, Shibata T, Fujiwara R, Kang HY (2016) Efficacy and possible mechanisms of topical tranexamic acid in melasma. Clin Exp Dermatol 41(5):480–485CrossRef Kim SJ, Park JY, Shibata T, Fujiwara R, Kang HY (2016) Efficacy and possible mechanisms of topical tranexamic acid in melasma. Clin Exp Dermatol 41(5):480–485CrossRef
13.
Zurück zum Zitat Cho YH, Park JE, Lim DS, Lee JS (2017) Tranexamic acid inhibits melanogenesis by activating the autophagy system in cultured melanoma cells. J Dermatol Sci 88(1):96–102CrossRef Cho YH, Park JE, Lim DS, Lee JS (2017) Tranexamic acid inhibits melanogenesis by activating the autophagy system in cultured melanoma cells. J Dermatol Sci 88(1):96–102CrossRef
14.
Zurück zum Zitat Zhao H, Li M, Zhang X, Li L, Yan Y, Wang B (2020) Comparing the efficacy of Myjet‐assisted tranexamic acid and vitamin C in treating melasma a split‐face controlled trial. J Cosmet Dermatol 19(1):47–54CrossRef Zhao H, Li M, Zhang X, Li L, Yan Y, Wang B (2020) Comparing the efficacy of Myjet‐assisted tranexamic acid and vitamin C in treating melasma a split‐face controlled trial. J Cosmet Dermatol 19(1):47–54CrossRef
15.
Zurück zum Zitat Alexiades-Armenakas M (2006) A quantitative and comprehensive grading scale for rhytides, laxity, and photoaging. J Drugs Dermatol 5:808–809PubMed Alexiades-Armenakas M (2006) A quantitative and comprehensive grading scale for rhytides, laxity, and photoaging. J Drugs Dermatol 5:808–809PubMed
16.
Zurück zum Zitat Tierney EP, Hanke CW (2012) The effect of cold-air anesthesia during fractionated carbon-dioxide laser treatment: prospective study and review of the literature. J Am Acad Dermatol 67:436–445CrossRef Tierney EP, Hanke CW (2012) The effect of cold-air anesthesia during fractionated carbon-dioxide laser treatment: prospective study and review of the literature. J Am Acad Dermatol 67:436–445CrossRef
17.
Zurück zum Zitat Bhatta AK, Keyal U, Huang X, Zhao JJ (2016) Fractional carbon-dioxide (CO2) laser-assisted topical therapy for the treatment of onychomycosis. J Am Acad Dermatol 74:916–923CrossRef Bhatta AK, Keyal U, Huang X, Zhao JJ (2016) Fractional carbon-dioxide (CO2) laser-assisted topical therapy for the treatment of onychomycosis. J Am Acad Dermatol 74:916–923CrossRef
18.
Zurück zum Zitat Benzaquen M, Fongue J, Pauly V, Collet-Villette AM (2021) Laser-assisted hyaluronic acid delivery by fractional carbon dioxide laser in facial skin remodeling: a prospective randomized split-face study in France. Lasers Surg Med 53(9):1166–1172CrossRef Benzaquen M, Fongue J, Pauly V, Collet-Villette AM (2021) Laser-assisted hyaluronic acid delivery by fractional carbon dioxide laser in facial skin remodeling: a prospective randomized split-face study in France. Lasers Surg Med 53(9):1166–1172CrossRef
19.
Zurück zum Zitat Waibel JS, Mi QS, Ozog D, Qu L, Zhou L, Rudnick A, Al-Niaimi F, Woodward J, Campos V, Mordon S (2016) Laser-assisted delivery of vitamin C, vitamin E, and ferulic acid formula serum decreases fractional laser postoperative recovery by increased beta fibroblast growth factor expression. Lasers Surg Med 48:238–244CrossRef Waibel JS, Mi QS, Ozog D, Qu L, Zhou L, Rudnick A, Al-Niaimi F, Woodward J, Campos V, Mordon S (2016) Laser-assisted delivery of vitamin C, vitamin E, and ferulic acid formula serum decreases fractional laser postoperative recovery by increased beta fibroblast growth factor expression. Lasers Surg Med 48:238–244CrossRef
20.
Zurück zum Zitat Junsuwan N, Manuskiatti W, Phothong W, Wanitphakdeedecha R (2021) Fractional CO2 laser-assisted botulinum toxin type A delivery for the treatment of primary palmar hyperhidrosis. Lasers Med Sci 36(1):233–236CrossRef Junsuwan N, Manuskiatti W, Phothong W, Wanitphakdeedecha R (2021) Fractional CO2 laser-assisted botulinum toxin type A delivery for the treatment of primary palmar hyperhidrosis. Lasers Med Sci 36(1):233–236CrossRef
21.
Zurück zum Zitat Ibrahim O, Ionta S, Depina J, Petrell K, Arndt KA, Dover JS (2019) Safety of laser-assisted delivery of topical poly-L-lactic acid in the treatment of upper lip rhytides: a prospective, rater-blinded study. Dermatol Surg 45(7):968–974CrossRef Ibrahim O, Ionta S, Depina J, Petrell K, Arndt KA, Dover JS (2019) Safety of laser-assisted delivery of topical poly-L-lactic acid in the treatment of upper lip rhytides: a prospective, rater-blinded study. Dermatol Surg 45(7):968–974CrossRef
22.
Zurück zum Zitat Ustuner P, Balevi A, Ozdemir M (2017) A split-face, investigator-blinded comparative study on the efficacy and safety of Q-switched Nd:YAG laser plus microneedling with vitamin C versus Q-switched Nd:YAG laser for the treatment of recalcitrant melasma. J Cosmet Laser Ther 19(7):383–390CrossRef Ustuner P, Balevi A, Ozdemir M (2017) A split-face, investigator-blinded comparative study on the efficacy and safety of Q-switched Nd:YAG laser plus microneedling with vitamin C versus Q-switched Nd:YAG laser for the treatment of recalcitrant melasma. J Cosmet Laser Ther 19(7):383–390CrossRef
23.
Zurück zum Zitat Ibrahim O, Wenande E, Hogan S, Arndt KA, Haedersdal M, Dover JS (2018) Challenges to laser-assisted drug delivery: applying theory to clinical practice. Lasers Surg Med 50(1):20–27CrossRef Ibrahim O, Wenande E, Hogan S, Arndt KA, Haedersdal M, Dover JS (2018) Challenges to laser-assisted drug delivery: applying theory to clinical practice. Lasers Surg Med 50(1):20–27CrossRef
24.
Zurück zum Zitat Wang JV, Christman MP, Feng H, Ferzli G, Jeon H, Geronemus RG (2021) Laser-assisted delivery of tranexamic acid for melasma: pilot study using a novel 1927 nm fractional thulium fiber laser. J Cosmet Dermatol 20(1):105–109CrossRef Wang JV, Christman MP, Feng H, Ferzli G, Jeon H, Geronemus RG (2021) Laser-assisted delivery of tranexamic acid for melasma: pilot study using a novel 1927 nm fractional thulium fiber laser. J Cosmet Dermatol 20(1):105–109CrossRef
25.
Zurück zum Zitat Wanitphakdeedecha R, Sy-Alvarado F, Patthamalai P, Techapichetvanich T, Eimpunth S, Manuskiatti W (2020) The efficacy in treatment of facial melasma with thulium 1927-nm fractional laser-assisted topical tranexamic acid delivery: a split-face, double-blind, randomized controlled pilot study. Lasers Med Sci 35(9):2015–2021CrossRef Wanitphakdeedecha R, Sy-Alvarado F, Patthamalai P, Techapichetvanich T, Eimpunth S, Manuskiatti W (2020) The efficacy in treatment of facial melasma with thulium 1927-nm fractional laser-assisted topical tranexamic acid delivery: a split-face, double-blind, randomized controlled pilot study. Lasers Med Sci 35(9):2015–2021CrossRef
26.
Zurück zum Zitat Tawfic SO, Abdel Halim DM, Albarbary A, Abdelhady M (2019) Assessment of combined fractional CO and tranexamic acid in melasma treatment. Lasers Surg Med 51(1):27–33CrossRef Tawfic SO, Abdel Halim DM, Albarbary A, Abdelhady M (2019) Assessment of combined fractional CO and tranexamic acid in melasma treatment. Lasers Surg Med 51(1):27–33CrossRef
27.
Zurück zum Zitat Tanghetti EA (2016) The histology of skin treated with a picosecond alexandrite laser and a fractional lens array. Lasers Surg Med 48(7):646–652CrossRef Tanghetti EA (2016) The histology of skin treated with a picosecond alexandrite laser and a fractional lens array. Lasers Surg Med 48(7):646–652CrossRef
Metadaten
Titel
Efficacy and safety of 755-nm picosecond alexandrite laser with topical tranexamic acid versus laser monotherapy for melasma and facial rejuvenation: a multicenter, randomized, double-blinded, split-face study in Chinese patients
verfasst von
Yiming Li
Cheng Yao
Heye Zhang
Li Li
Yiyi Song
Publikationsdatum
01.05.2022
Verlag
Springer London
Erschienen in
Lasers in Medical Science / Ausgabe 7/2022
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-022-03566-4

Weitere Artikel der Ausgabe 7/2022

Lasers in Medical Science 7/2022 Zur Ausgabe