Investigating the Effect of Photobiomodulation Therapy With Different Wavelengths of Diode Lasers on the Proliferation and Adhesion of Human Gingival Fibroblast Cells to a Collagen Membrane: An In Vitro Study.

IF 1.4 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Journal of lasers in medical sciences Pub Date : 2024-11-03 eCollection Date: 2024-01-01 DOI:10.34172/jlms.2024.53
Mohammad Reza Karimi, Shahrzad Abdollahi, Ardavan Etemadi, Neda Hakimiha
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Abstract

Introduction: Photobiomodulation (PBM) is considered a promising adjunctive approach in regenerative medicine. This study aimed to investigate the proliferation and adhesion of human gingival fibroblast (HGF) cells to a collagen membrane following PBM. Methods: Cultured HGF cells on a collagen membrane received PBM at wavelengths of 808 nm, 915 nm (2 and 4 J/cm2), and 660 nm (2.1 and 4.2 J/cm2) in interventional groups, while non-irradiated cells served as the control. On days 1 and 3 post-irradiation, cell proliferation was measured by MTT assay, and adhesion to the membrane was assessed under the scanning electron microscope (SEM). Results: Cell proliferation significantly increased in interventional groups compared to the control, with the most significant increase at 915 nm (4 J/cm2) in both time points. On the first day, the 808 nm and 660 nm lasers demonstrated similar results, significantly lower than the 915 nm laser (2 J/cm2). On day 3, the 660 nm, 808 nm, and 915 nm (2 J/cm2) groups showed comparable results. Qualitative analysis by the SEM identified spindle-shaped cells with multiple extended projections in 915 nm groups, especially at an energy density of 4 J/cm2. Groups of 660 nm and 808 nm (4 J/cm2) showed spindle-shaped cell morphology. No distinct cellular morphology indicative of enhanced adhesion was observed at 808 nm (2 J/cm2). Conclusion: The most effective PBM setup for promoting HGF proliferation and adhesion to a collagen membrane was identified at 915 nm (4 J/cm2).

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不同波长二极管激光光生物调节治疗对人牙龈成纤维细胞与胶原膜增殖和粘附的影响:体外研究。
光生物调节(PBM)被认为是一种很有前途的辅助再生医学方法。本研究旨在探讨PBM后人牙龈成纤维细胞(HGF)在胶原膜上的增殖和粘附情况。方法:在胶原膜上培养的HGF细胞,介入组分别在808 nm、915 nm(2、4 J/cm2)、660 nm(2.1、4.2 J/cm2)波长处接受PBM,对照组未照射。照射后第1天和第3天,采用MTT法检测细胞增殖情况,扫描电镜(SEM)观察细胞与膜的粘附情况。结果:与对照组相比,干预组细胞增殖明显增加,在915 nm (4 J/cm2)时,两个时间点细胞增殖最显著。在第一天,808 nm和660 nm激光器表现出类似的结果,显著低于915 nm激光器(2 J/cm2)。在第3天,660 nm、808 nm和915 nm (2 J/cm2)组的结果相当。SEM定性分析发现纺锤形细胞在915 nm处具有多个延伸突起,特别是在4 J/cm2的能量密度下。660 nm和808 nm (4 J/cm2)组呈梭形细胞形态。在808 nm (2 J/cm2)下,未观察到明显的细胞形态表明粘附增强。结论:915 nm (4 J/cm2)为促进HGF增殖和黏着胶原膜的最有效PBM设置。
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来源期刊
Journal of lasers in medical sciences
Journal of lasers in medical sciences RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
3.00
自引率
13.30%
发文量
24
期刊介绍: The "Journal of Lasers in Medical Sciences " is a scientific quarterly publication of the Laser Application in Medical Sciences Research Center, Shahid Beheshti University of Medical Sciences. This journal received a scientific and research rank from the national medical publication committee. This Journal accepts original papers, review articles, case reports, brief reports, case series, photo assays, letters to the editor, and commentaries in the field of laser, or light in any fields of medicine such as the following medical specialties: -Dermatology -General and Vascular Surgery -Oncology -Cardiology -Dentistry -Urology -Rehabilitation -Ophthalmology -Otorhinolaryngology -Gynecology & Obstetrics -Internal Medicine -Orthopedics -Neurosurgery -Radiology -Pain Medicine (Algology) -Basic Sciences (Stem cell, Cellular and Molecular application and physic)
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