金緻修護 肌膚盡現光采。PDRN 胜肽煥采面膜。臨床實證支持 醫美成分配方。全新 Ultherapy Mask - PDRN 胜肽煥采面膜 奢華登場。專為配合醫美療程而設,無縫延續療程效果,同時昇華您的日常護膚體驗。科研與奢養交融的配方組合,溫和安全,為肌膚帶來持續修護與煥活力量。 查閱官方認證診所
PDRN 胜肽煥采面膜 產品包裝
一膜雙效 —— 您的黃金標準護理
療程後修護:持之以恆的亮麗效果,關鍵在於精準的療程後修護。時刻保持亮澤、深層保濕與溫和鎮靜,給予肌膚最強大的後盾,全力支持肌膚維持緊緻、舒緩與健康屏障。 高效居家護理:真正由內而外透亮的肌膚從來沒有捷徑。全新面膜完美融入您的生活節奏,讓常規的面膜護理,成為每天持之以恆、極緻自寵的奢華享受。
昇華面膜護理 成為奢華體驗 面面俱到・全方位修護:完美無縫覆蓋,極緻貼合額頭、下顎線及頸部的每吋肌膚,無縫包覆以提供全面覆蓋。 仿若第二層肌膚:奢華水凝啫喱材質完美貼合面部輪廓,能精準釋放活性成分,促進精華導入,帶來卓越的吸收力與鎖水力。 點綴奢華金箔微粒:專屬包覆網絡中注入細緻金箔粒子,賦予肌膚兼具水潤緊緻的感官愉悅與奢養儀式。
5大醫美級修護成分 重點修復、保濕、舒緩 重煥肌膚健康光澤 MC-PDRN 提供全面覆蓋:突破性三文魚DNA萃取成分,有助加速肌膚的自然修復與再生過程,從而提升肌膚彈性。 5重多重分子量玻尿酸:由表層滲透至深層,全面保濕,鎖水力高達自身重量1,000倍。 20種複合胜肽:高效複合配方,有助促進膠原蛋白生成,平衡黑色素活性,提升肌膚亮澤度。 腺苷:強效緊緻成分,有效改善細紋與膚質,令肌膚回復緊緻、平滑及亮澤光采。 煙酰胺:強化肌膚屏障的重要成分,加強肌膚防護力,同時維持水油平衡。
臨床實證效果:眼角提升、唇部提升、眉心紋減淡、面頰提升、改善肌膚彈性、表層保濕度提升、深層保濕度提升、經皮水分流失減少、即時降溫效果。 尋找您的專屬節奏 4天開啟持久光澤。
1片面膜,奢華犒賞:敷上面膜享受30分鐘的沉浸式黃金期保養,引領肌膚重拾平衡。 2種功效,完美同步:靈活運用於 Ultherapy PRIME® 療程後修護或日常居家高效奢養。 3片剪裁,零死角包覆:無縫貼合面部與頸部輪廓。 4天連續,定格光采:為達至最佳修護效果,建議每月使用2次,每次連續使用4天。
極緻深層保濕・舒緩・緊緻。您準備好展現煥然一新的肌膚了嗎?全新 Ultherapy PDRN 胜肽煥采面膜,現已進駐各大指定官方認證診所。立即向您的醫美醫生查詢,量身訂製您的黃金標準拉提與修護療程。 查閱官方認證診所

References

  1. Shin SM, Baek EJ, Kim KH, Kim KJ, Park EJ. Polydeoxyribonucleotide exerts opposing effects on ERK activity in human skin keratinocytes and fibroblasts. Mol Med Rep. 2023 Aug;28(2):148.
  2. Squadrito, F., et al. (2017). Pharmacological Activity and Clinical Use of PDRN. Front Pharmacol., 8:224.
  3. Oh, N., (2025). Versatile and Marvelous Potentials of Polydeoxyribonucleotide for Tissue Engineering and Regeneration. Biomater Res., 29: 0183.
  4. Khan, A., (2022). Review Article: Polydeoxyribonucleotide: A promising skin anti-aging agent. Chinese Journal of Plastic and Reconstructive Surgery 4: 187–193.
  5. Akaberi, S.M., et al. (2025). Review Article: Polydeoxyribonucleotide in Skincare and Cosmetics: Mechanisms, Therapeutic Applications, and Advancements Beyond Wound Healing and Anti-aging. J Skin Stem Cell, 12(1): e159728.
  6. Ramakrishnan, V.V., Hossain, A., Dave, D. et al. Salmon processing discards: a potential source of bioactive peptides – a review. Food Prod Process and Nutr 6, 22 (2024). https://doi.org/10.1186/s43014-023-00197-2
  7. Draelos ZD, Diaz I, Namkoong J, Wu J, Boyd T. Efficacy Evaluation of a Topical Hyaluronic Acid Serum in Facial Photoaging. Dermatol Ther (Heidelb). 2021 Aug;11(4):1385–1394. doi: 10.1007/s13555-021-00586-0. Epub 2021 Jun 26. PMID: 34176098; PMCID: PMC8322246.
  8. Sundaram H, Mackiewicz N, Burton E, Pene-Mazzarino L, Lati E, Meunier S. Pilot Comparative Study of the Topical Action of a Novel, Crosslinked Resilient Dynamic, Three-Dimensional Human Explant Model. J Drugs Dermatol. 2016 Apr;15(4):434–41. PMID: 27050698.
  9. Pavicic, T., et al. (2011). Efficacy of Cream-Based Novel Formulations of Hyaluronic Acid of Different Molecular Weights in Anti-Wrinkle Treatment. J Drugs Dermatol, 10(9), 990–1000.
  10. Papakonstantinou, E., et al. (2012). Hyaluronic acid: A key molecule in skin aging. Dermato–Endocrinology, 4(3), 253–258.
  11. Meunier M, Scandolera A, Chapuis E, et al. The anti-wrinkles properties of sodium acetylated hyaluronate. J Cosmet Dermatol. 2022;21(7):2749-2762. doi:10.1111/jocd.14539
  12. Robinson DM, Vega J, Palm MD, Bell M, Widgerow AD, Giannini A. Multicenter evaluation of a topical hyaluronic acid serum. J Cosmet Dermatol. 2022 Sep;21(9):3848-3858.
  13. Gold, M.H. (2022). Efficacy and tolerability of a hyaluronic acid-based serum and a peptide-rich cream for the face and neck in subjects with photodamaged skin. J Cosmet Dermatol. 2022 Jun 1;21(S):3458–3463.
  14. Schagen, S.K. (2017). Topical Peptide Treatments with Effective Anti-Aging Results. Dermatology Reports, 9(1), 7239.
  15. Yu B, Wang N, Cai S, Yan H, Sun S, Wang S, Li Y and Liang Z (2025) Research progress on peptides that inhibit melanin synthesis. Front. Pharmacol. 16:1610623.
  16. Blanes-Mira, C., et al. (2002). A synthetic hexapeptide (Argireline) with antiwrinkle activity. International Journal of Cosmetic Science, 24(5), 303–310.
  17. Pickart, L., & Margolina, A. (2018). Regenerative and protective actions of the GHK-Cu peptide in the light of the new gene data. International Journal of Molecular Sciences, 19(7), 1987.
  18. Dierckx S, Patrizi M, Merino M, González S, Mullor JL and Nergiz-Unal R (2024) Collagen peptides affect collagen synthesis and the expression of collagen, elastin, and versican genes in cultured human dermal fibroblasts. Front. Med. 11:1397517.
  19. Igase, M., Koizumi, S., Himeno, A., Igase, K., Okada, Y., & Ochi, M. (2023). Anti atherosclerotic and anti glycation effects of collagen peptides. Glycative Stress Research, 10(4), 159.
  20. Marucci, G., Buccioni, M., Varlaro, V., Volpini, R., & Amenta, F. (2022). The possible role of the nucleoside adenosine in countering skin aging: A review. BioFactors (Oxford, England), 48(5), 1027–1035.
  21. Marques, C., Hadjab, F., Porcello, A., Lourenço, K., Scaletta, C., Abdel-Sayed, P., Hirt-Burri, N., Applegate, L. A., & Laurent, A. (2024). Mechanistic Insights into the Multiple Functions of Niacinamide: Therapeutic Implications and Cosmeceutical Applications in Functional Skincare Products. Antioxidants (Basel, Switzerland), 13(4), 425.
  22. Clinical Test Report, Kovas Co., LTD. MAxC Merz Aesthetics Care Range Ultherapy Mask. Data on file, Korea Dermatology Research Institute. The Korean Association of Human Skin Research Center; 2025