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Fractional CO laser treatment for vaginal laxity: A preclinical study. | LitMetric

AI Article Synopsis

  • A study evaluated the effectiveness of a fractional CO laser in improving vaginal laxity using a porcine model, as previous research had only focused on human subjects.
  • The procedure is minimally invasive and works by sending laser energy to the vaginal area, promoting the remodeling of connective tissue and the formation of collagen and elastic fibers.
  • Results showed that different energy levels from the laser caused slight tissue changes without any adverse effects, indicating a promising method for enhancing vaginal tightness without harming surrounding tissue.

Article Abstract

Background And Objective: Various studies have investigated treatment for vaginal laxity with microablative fractional carbon dioxide CO laser in humans; however, this treatment has not yet been studied in an animal model. Herein, we evaluate the therapeutic effects of fractional CO laser for tissue remodeling of vaginal mucosa using a porcine model, with the aim of improving vaginal laxity.

Study Design/materials And Methods: The fractional CO laser enables minimally invasive and non-incisional procedures. By precisely controlling the laser energy pulses, energy is sent to the vaginal canal and the introitus area to induce thermal denaturation and contraction of collagen. We examined the effects of fractional CO laser on a porcine model via clinical observation and ultrasound measurement. Also, thermal lesions were histologically examined via hematoxylin-eosin staining, Masson's trichrome staining, and Elastica van Gieson staining and immunohistochemistry.

Results: The three treatment groups, which were determined according to the amount of laser-energy applied (60, 90, and 120 mJ), showed slight thermal denaturation in the vaginal mucosa, but no abnormal reactions, such as excessive hemorrhaging, vesicles, or erythema, were observed. Histologically, we also confirmed that the denatured lamina propria induced by fractional CO laser was dose-dependently increased after laser treatment. The treatment groups also showed an increase in collagen and elastic fibers due to neocollagenesis and angiogenesis, and the vaginal walls became firmer and tighter because of increased capillary and vessel formation. Also, use of the fractional CO laser increased HSP (heat shock protein) 70 and collagen type I synthesis.

Conclusion: Our results show that microablative fractional CO laser can produce remodeling of the vaginal connective tissue without causing damage to surrounding tissue, and the process of mucosa remodeling while under wound dressings enables collagen to increase and the vaginal wall to become thick and tightened. Lasers Surg. Med. 50:940-947, 2018. © 2018 Wiley Periodicals, Inc.

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Source
http://dx.doi.org/10.1002/lsm.22940DOI Listing

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