Amid Reza, Kadkhodazadeh Mahdi, Gilvari Sarshari Maedeh, Parhizkar Ardavan, Mojahedi Massoud
Research Institute of Dental Sciences, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Department of Periodontics, School of Dentistry, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
J Lasers Med Sci. 2022 Jan 10;13:e1. doi: 10.34172/jlms.2022.01. eCollection 2022.
Stem cell activities have different effects on tissue response and its outcomes. Low-level laser therapy (LLLT) can be considered a trigger to modify stem cell activities. The objective of the present experimental investigation was to study the effects of two protocols of LLLT on the proliferation and differentiation of human dental pulp stem cells (hDPSCs) cultured on sandblasted titanium discs. Cells obtained from human dental pulp were seeded/cultured on titanium discs and were set in 2 main groups: () Radiated cells using the gallium-aluminium-arsenide (GaAlAs) diode laser at a continuous wavelength of 808 nm at 3 J/cm for 12 sec or 5 J/cm for 20 seconds, and () Non-irradiated cells serving as control groups. The impact of LLLTs on hDPSC-proliferation and viability was investigated using the MTT assay after 24, 72 and 96 hours. The alkaline phosphatase activity was studied with p-nitrophenylphosphate after 14 and 28 days. The ability of hDPSCs to express osteocalcin was investigated using real-time polymerase chain reaction after 28 days, while their attachment was observed under a scanning electron microscope (SEM) after 14 and 28 days. Our study showed that LLLTs caused maximum cell proliferation in 96 hours (<0.001) with 3 J/cm resulting in a higher proliferation rate. The highest activity of alkaline phosphatase and osteocalcin expression was observed in the laser radiation groups after 28 days. The outcomes of the current study showed that cultured hDPSCs on sandblasted titanium discs had a tendency towards increased cellular activity in response to LLLTs. Thus, LLLTs could regulate the activities of hDPSCs on bone repair surrounding the sandblasted titanium discs.
干细胞活性对组织反应及其结果有不同影响。低强度激光疗法(LLLT)可被视为改变干细胞活性的一种触发因素。本实验研究的目的是探讨两种低强度激光疗法方案对培养在喷砂钛盘上的人牙髓干细胞(hDPSCs)增殖和分化的影响。从人牙髓中获取的细胞接种/培养在钛盘上,并分为两个主要组:()使用砷化镓铝(GaAlAs)二极管激光,在连续波长808nm下,以3J/cm²照射12秒或5J/cm²照射20秒的辐射细胞,以及()作为对照组的未照射细胞。在24、72和96小时后,使用MTT法研究低强度激光疗法对hDPSC增殖和活力的影响。在14天和28天后,用对硝基苯磷酸研究碱性磷酸酶活性。在28天后,使用实时聚合酶链反应研究hDPSCs表达骨钙素的能力,而在14天和28天后,在扫描电子显微镜(SEM)下观察它们的附着情况。我们的研究表明,低强度激光疗法在96小时内引起最大细胞增殖(<0.001),3J/cm²导致更高的增殖率。在28天后,在激光辐射组中观察到碱性磷酸酶的最高活性和骨钙素表达。当前研究结果表明,培养在喷砂钛盘上的hDPSCs对低强度激光疗法有细胞活性增加的趋势。因此,低强度激光疗法可调节hDPSCs对喷砂钛盘周围骨修复的活性。