Effect of blue light emitting diode therapy on recurrent vulvovaginal candidiasis: A randomized assessor‐blinded controlled trial

Shalaby RM, El‐Kosery SM, Soliman MM, Osman DA

Physiotherapy Research International, 2024
DOI 10.1002/pri.2129

Abstract

Objective

Vulvovaginal Candidiasis (VVC) is a prevalent genital infection in women of reproductive age and requires effective non‐drug therapies. Therefore, this study aimed to investigate the effect of blue light emitting diode (LED) therapy as an alternative treatment for recurrent VVC due to its proven antimicrobial properties. The safety and non‐invasiveness of LED therapy make it a promising option for sensitive tissue applications.

Materials and Methods

This randomized controlled trial recruited 60 women with culture‐confirmed VVC. Participants were randomly allocated to two groups. Group A (control group) received standard antifungal treatment with Gynoconazol 0.8% vaginal cream for three consecutive nights (n = 30). Group B (study group) received the same antifungal treatment plus two 60‐min sessions of blue LED therapy directed at the vagina and vulva, with the sessions separated by two days (n = 30). Candida count (via CHROMagar™ Candida) and vaginal pH (via AD110‐AD111 m) were assessed at baseline and one week after initiating treatment.

Results

Post‐treatment, group (B) demonstrated a significantly greater reduction in Candida count compared to group (A) (mean difference (MD) 8.267; 95% Confidence Interval (CI) 6.723–9.811; p = 0.0001). However, there was no statistically significant difference in vaginal pH between the groups (MD −0.03; 95% CI −0.244–0.178; p = 0.749).

Conclusion

Blue LED therapy effectively reduces Candida count in women with recurrent VVC without adversely affecting the vaginal pH, highlighting its safety and efficacy as a treatment modality.

Related research

Radwa M. Shalaby, Soheir M. El‐Kosery, Mahmoud Mohamed Soliman, Doaa Ahmed Osman
R Shalaby, S El‐Kosery, M Soliman, D Osman
DOI 10.1002/pri.2129 10.1002/pri.2129 Shalaby et al. 2024, Shalaby 2024