New horizons in regenerative medicine: photostimulation of adipose tissue DOI
Denis Souto Valente

Regenerative medicine reports ., Journal Year: 2025, Volume and Issue: 2(2), P. 72 - 75

Published: April 8, 2025

Regenerative medicine has witnessed significant advancements, with adipose tissue emerging as a versatile resource for engineering and repair. Photostimulation techniques, such photobiomodulation laser-assisted liposuction, have demonstrated the potential to enhance viability functionality of adipose-derived stem cells. By harnessing power light, these methods aim optimize fat grafting outcomes address challenges graft resorption unpredictable survival. This review explores mechanisms underlying photostimulation tissue, including its impact on cellular metabolism, proliferation, differentiation. Photobiomodulation, in particular, been shown promote angiogenesis, reduce inflammation, improve integration. Laser-assisted other hand, offers minimally invasive approach harvesting, while simultaneously stimulating collagen production improving wound healing. Clinical studies efficacy photostimulated various applications, facial rejuvenation, breast augmentation, soft reconstruction. However, further research is needed laser parameters, standardize protocols, assess long-term outcomes. In conclusion, represents promising avenue regenerative medicine, offering novel therapeutic tissue. Continued investigation into action clinical applications this technology will pave way widespread adoption translation practice.

Language: Английский

New horizons in regenerative medicine: photostimulation of adipose tissue DOI
Denis Souto Valente

Regenerative medicine reports ., Journal Year: 2025, Volume and Issue: 2(2), P. 72 - 75

Published: April 8, 2025

Regenerative medicine has witnessed significant advancements, with adipose tissue emerging as a versatile resource for engineering and repair. Photostimulation techniques, such photobiomodulation laser-assisted liposuction, have demonstrated the potential to enhance viability functionality of adipose-derived stem cells. By harnessing power light, these methods aim optimize fat grafting outcomes address challenges graft resorption unpredictable survival. This review explores mechanisms underlying photostimulation tissue, including its impact on cellular metabolism, proliferation, differentiation. Photobiomodulation, in particular, been shown promote angiogenesis, reduce inflammation, improve integration. Laser-assisted other hand, offers minimally invasive approach harvesting, while simultaneously stimulating collagen production improving wound healing. Clinical studies efficacy photostimulated various applications, facial rejuvenation, breast augmentation, soft reconstruction. However, further research is needed laser parameters, standardize protocols, assess long-term outcomes. In conclusion, represents promising avenue regenerative medicine, offering novel therapeutic tissue. Continued investigation into action clinical applications this technology will pave way widespread adoption translation practice.

Language: Английский

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