Τόμος 33 (2020) – Τεύχος 2 –Άρθρο 1 – Review of Clinical Pharmacology and Pharmacokinetics – Διεθνής Έκδοση – Volume 33 (2020) – Issue 2 – Article 1 – Review of Clinical Pharmacology and Pharmacokinetics – International Edition

Title

The Latest in Non-Invasive Local Fat Treatment Method with Diode Laser (1060nm)

Author

Biskanaki Foteini1 BSc, MSc, Kefala Vasiliki2 PhD, Kalofiri Paraskevi3 BSc, MSc

1 Aesthetician Cosmetologist ΜSc, Academic Scholar, Department of Biomedical Sciences. (Direction of Aesthetics and Cosmetology) School of Health Professions. University of West  Attica. Campus 1.Athens .Greece

2 Professor, Aesthetician Cosmetologist, Pharmacist Professor, Department of Biomedical Sciences.  (Direction of Aesthetics and Cosmetology) School of Health Professions. University of West Attica .Campus 1.Athens .Greece

3 Aesthetician Cosmetologist, ΜSc

Citation

F. Biskanaki, V. Kefala, P. Kalofiri. The Latest in Non-Invasive Local Fat Treatment Method with Diode Laser (1060nm). Review Clin. Pharmacol. Pharmacokinet. 2020, 34, 2, pp. 35-38

Publication Date
16-05-2019
Full Text Language

English

Keywords

lipolysis, diode laser (1060nm), non-invasive treatment, apoptosis, local fat

Other Terms

Research

Summary

The reduction of local fat using invasive methods such as liposuction is performed with excellent results. Chances of complications (1), (2) have led scientists to look into the treatment of local fat accumulation (in tummy, thighs, buttocks, etc.) in non-invasive methods (3),(4). Many non-invasive techniques with temporary effects have been implemented such as radio frequency, low power laser, mesotherapy, HIFU (5) and selective cryolypolisis.(6), (7) However, the application of laser as a non-invasive procedure contributes to the effective treatment of local fat. The continued development of Laser technology provides a solution for non-invasive lipolysis in difficult areas with local fat persistence. It is specifically designed to safely and effectively eliminate unwanted local fat. A permanent fat loss of 24% is achieved in each session.(8)

References
  1. Jewell M.L., Solish N.J., DesiletsC.S., Noninvasive Body Sculpting Technologies with an Emphasis on High-Intensity Focused Ultrasound, Plast Surg, 35(5),901-912 (2011)
  2. Tonucci L.B., Mourao D.M., Ribeiro A.Q. et al, Noninvasive Body Contouring: Biological and Aesthetic Effects of Low-Frequency, Low-Intensity Ultrasound Device. Aesth Plast Surg,38,959-967,(2014)
  3. Jenne J.W., Preusser T., Gunther M., High-intensity focused ultrasound: principles, therapy guidance, stimulations and applications, Z. Med. Phys., 22,311-322,(2012)
  4. Alster T.S., Tanzi E.L., Noninvasive lifting of arm, thigh, and knee skin with transcutaneous intense focused ultrasound, Dermatologic Surgery, 38(5) : 754-759, (2012)
  5. Ascher B. Safety and efcacy of UltraShape Contour I treatments to improve the appearance of body contours: multiple treatments in shorter intervals. Aesthet Surg J.;30:217, (2010)
  6. Avram MM, Harry RS. Cryolipolysis for subcutaneous fat layer reduction. Lasers Surg Med;41:703, (2009)
  7. Stevens WG, Pietrzak LK, Spring MA. Broad overview of a clinical and commercial experience with CoolSculpting. Aesthet Surg J. ;33:835–46, (2013)
  8. Bass LS, Doherty ST., Safety and Efficacy of a Non-Invasive 1060 nm Diode Laser for Fat Reduction of the Abdomen. J Drugs Dermatol. Jan 1;17(1):106-112, (2018)
  9. Wiley Periodicals, Lasers in Surgery and Medicine Published, Lasers Surg Med. Oct 10, (2018)
  10. Lach E., Reduction of subcutaneous fat and improvement in cellulite appearance by dual-wavelength, low-level laser energy combined with vacuum and massage. J Cosmet Laser Ther.;10:202, (2008)
  11. Sweeney DL, Wang EB, Austin E, Jagdeo J Combined Hyperthermic 1060nm Diode Laser Lipolysis With Topical Skin Tightening Treatment: Case Series, J Drugs Dermatol. Jul 1;17(7):780-785. (2018)
  12. Goldman A, Gotkin RH. Laser-assisted liposuction. Clin Plast Surg;36:241–53, (2009)
  13. Decorato J, Chen B, Sierra R. Subcutaneous adipose tissue response to anon-invasive hyperthermic treatment using a 1,060 nm laser. Lasers Surg Med 49:48, (2017)
  14. Franco W, Kothare A, Ronan SJ, Grekin RC, et al. Hyperthermic injury to adipocyte cells by selective heating of subcutaneous fat with a novel radiofrequency device: feasibility studies. Lasers Surg Med;42 (2010)
  15. He X, Bischof JC. Quanti cation of temperature and injury response in thermal therapy and cryosurgery. Crit Rev Biomed Eng;31:355 (2003)
  16. Katz B., Doherty S., Safety and Efficacy of a Noninvasive 1,060-nm Diode Laser for Fat Reduction of the Flanks, Dermatol Surg; 1–9 (2017)
  17. Kefala, V. Topical an aesthetics in esthetic cosmetology and dermatology. Rev. of Clinical Pharmacology & Pharmacokinetics International Edition 23 (3),pp. 143-145 ( 2009)
  18. Leclère F.M., Alcolea J.M., Vogt P.M., Moreno-Moraga J., Casoli V., Mordon S., Trelles M.A., Laser-assisted lipolysis for arm contouring in Teimourian grades III and IV: A prospective study involving 22 patients, Plast Surg (Oakv). Spring;24(1):35-40., (2016)
  19. Kefala, V., Andreou, E., Biskanaki, F., Rallis, E. Important applications of ultrasound in aesthetics. Keratolysis and phonoforesis. Epitheorese Klinikes Farmakologias kai Farmakokinetikes 36(2), pp. 123-128 (2018)
  20. Schilling L, Saedi N, Weiss R., 1060 nm Diode Hyperthermic Laser Lipolysis:The Latest in Non-Invasive Body Contouring., J Drugs Dermatol. Jan 1;16(1):48-52. (2017)
  21. Kinney BM, Lozanova P, Ιntensity focused electromagnetic therapy evaluated by magnetic resonance imaging: Safety and efficacy study of a dual tissue effect based non-invasive abdominal body shaping., Lasers Surg Med., (2018)
  22. Kefala, V., Kostara, I., Karageorgiou, H., Varonos, D.D. In vitro model for the evaluation of preservatives phototoxic activity. Review of Clinical Pharmacology and Pharmacokinetics, International Edition .14 (2) , pp. 93-96 (2000 )
  23. Kefala, V., Kostara, I., Karageorgiou, H., Varonos, D.D In vitro model for evaluation of medicines phototoxic activity. Review of Clinical Pharmacology and Pharmacokinetics, International Edition .14 (1) , pp. 43-47 (2000 )
  24. Kefala, V., Kostara, I., Karageorgiou, H., Varonos, D. D In vitro model for the evaluation of sunscreen agents phototoxic activity . Review of Clinical Pharmacology and Pharmacokinetics, International Edition 12 (1-2) , pp. 59-62 (1998)
  25. Kefala, V., Kostara, I., Karageorgiou, H., Varonos, D. D. In vitro model for the evaluation of essential oils phototoxic activity. Review of Clinical Pharmacology and Pharmacokinetics, International Edition .12 (1-2) , pp. 53-57 (1998)
  26. Biskanaki F., Kefala V., New Strategies In Cosmetic Tattoo (Permanent make up) and Laser Tattoo Removal. Review of Clinical Pharmacology and Pharmacokinetics, International Edition. 32 (1) , pp.17-21 (2018)
  27. Nassab R. The Evidence Behind Noninvasive Body Contouring Devices, Asthetic Surgery Journal, 35(3) , 279-293,(2015)
  28. Biskanaki F., Kefala V., Skouras G., Radio frequency innovation. New method of fat dissolving (Contactless skin therapy).,Review of Clinical Pharmacology and Pharmacokinetics,International Edition. 36 (1) , pp.91-96 (2018)
  29. Biskanaki F., Kefala V., Modern Ultrasonic Applications in Dermoaesthetics: (HIFU) High Intensity Focused Ultrasound. Epitheorese Klinikes Farmakologias kai Farmakokinetikes (2019) Accepted for publication
  30. Decorato J.W., Chen B., Sierra R.,Subcutaneous adipose tissue response to a non-invasive hyperthermic treatment using a 1,060 nm laser., Lasers Surg Med. Jul;49(5):480-489. (2017)
  31. Sklar L.R., Tal A.K.E., Kerwin L.Y., Use of Transcutaneous Ultrasound for Lipolysis and skin Tightening: A Review, Aesth Plast Surg, 38,429-441, (2014)
  32. Pritzker R.N., Robinson D.M., Updates in noninvasive and minimally invasive skin tightening, Semin Cutan Med Surg, 33,182-187,(2014)
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