PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 10, 2026Lasers in Medical Science0 citationsOpen Access

Optimisation of low-level light therapy (lllt) parameters and evaluation of its immunomodulatory effect on fibroblasts

AŚAnna Ścisłowska-CzarneckaALAmelia LizakAMAleksandra Matuła

Key Points

  • To evaluate the effects of various low-level light therapy parameters on fibroblast activity in vitro.
  • Fibroblasts were exposed to different LLLT parameters: 808 nm, 100 and 200 mW, 2 and 10 J/cm², pulsed beam.
  • Cellular activity was assessed through the number of adherent cells, migration, adenylate kinase, nitric oxide levels, cytokine secretion, metalloproteinase activity, and oxidative-antioxidant potential.
  • 200 mW and 2 J/cm² exposure increased adherent and metabolically active cell numbers and enhanced migration.
  • Decreased adenylate kinase release and nitric oxide secretion were observed under optimal conditions.
  • LLLT reduced interleukin 6 and interleukin 8 secretion and positively affected metalloproteinase activity, supporting wound healing.

Abstract

Abstract Low-level laser therapy (LLLT) is being increasingly applied in regenerative medicine due to its ability to modulate cellular metabolism and support repair processes. However, the effect of various exposure parameters on fibroblast activity still does not remain fully understood. The study aim was to evaluate the effect of selected LLLT parameters (808 nm, 100 and 200 mW, 2 and 10 J/cm², pulsed beam) on the biological activity of fibroblasts in vitro. Fibroblasts were exposed to the established exposure parameters, and then the number of adherent and metabolically active cells, their migration, adenylate kinase (AK) as well as nitric oxide (NO) levels, cytokine secretion, metalloproteinase (MMP-2, MMP-9) activity, and oxidative-antioxidant potential were assessed. The most favourable effects were achieved with 200 mW; 2 J/cm² and 100 m; 10 J/cm² exposure parameters. In these conditions, increased number of adherent and metabolically active cells, and elevated migration were observed. Moreover, in this condition decreased AK release and NO secretion were found. Furthermore, LLLT reduced in fibroblasts interleukin 6 (IL-6) and interleukin 8 (IL-8) secretion as well as affected the activity of metalloproteinases, what corresponded with subsequent wound healing process. Additionally, a beneficial effect on maintaining the oxidative-antioxidant balance in fibroblasts was noted. In summary, the effects of LLLT on fibroblasts depend on the applied irradiation parameters, and appropriately selected LLLT treatment (200 mW; 2 J/cm² and 100 mW; 10 J/cm²,) stabilise fibroblast metabolism, limits their proinflammatory response and promotes extracellular matrix remodelling (ECM). These results confirm the potential of LLLT as an effective method supporting regenerative processes in the treatment of tissue damage.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Ścisłowska-Czarnecka et al. (2026) studied this question.

synapsesocial.com/papers/6a002087c8f74e3340f9b63chttps://doi.org/10.1007/s10103-026-04873-w
Ask AI
Helpful
Bookmark
Share
View Full Paper