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氟化钠对人血小板线粒体能量生成的抑制作用

Inhibitory effects of NaF on mitochondrial energy generation in human platelets .

作者信息

Tsujino Tetsuhiro, Kasahara Tomoni, Kawabata Hideo, Watanabe Taisuke, Nishiyama Koji, Kitamura Yutaka, Watanabe Takao, Okudera Hajime, Mochizuki Tomoharu, Ushiki Takashi, Kawase Tomoyuki

机构信息

R&D Division, Tokyo Plastic Dental Society, Tokyo, Japan.

Department of Orthopaedic Surgery, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.

出版信息

Front Toxicol. 2024 Sep 5;6:1421184. doi: 10.3389/ftox.2024.1421184. eCollection 2024.

Abstract

BACKGROUND

fluoride is a beneficial ion that has been used in various fields, from industrial products to therapeutics. However, due to its narrow therapeutic index, fluoride sometimes acts as a toxic agent at relatively higher concentrations in the human body. Based on the interest in genetic stability, its cytotoxic effects have been investigated mainly in nucleated, adherent cells, such as fibroblasts. However, the sensitivity of blood cells, especially anucleate platelets, to fluoride is poorly understood. To fill this gap in the literature, we investigated the effects of relatively low levels of fluoride on platelet energy metabolism, function, and viability.

METHODS

Platelet-rich plasma (PRP) was prepared from 15 non-smoking healthy male adults (age: 28-63) and treated with NaF (0.5 or 1.0 mM) in microtubes for up to 3 days. Platelet function was evaluated based on aggregation and adhesion activities. Platelet energy metabolism was evaluated based on intracellular ATP levels, extracellular lactate levels, and respiration activities. The mitochondrial membrane potential (Em) and localization of reactive oxygen species (ROS) were visualized using cytochemical methods. Platelet viability was evaluated by cell counting and tetrazolium reduction.

RESULT

NaF (1 mM) significantly reduced platelet viability and inhibited functions. Behind these phenomena, NaF substantially decreased mitochondrial Em and increased ROS production along with significant decreases in oxygen consumption and ATP levels. Simultaneously, NaF increased the lactate levels. Although not statistically significant, similar effects were observed at 0.5 mM NaF.

CONCLUSION

At relatively low levels, NaF has the potential to attenuate platelet function probably primarily through the inhibition of mitochondrial energy generation. Cytotoxicity may be directly related to ROS production. These findings suggest that when used topically, for example, for caries prevention in the oral cavity, NaF could interfere with wound healing and tissue regeneration by endogenous and exogenously added platelets in the form of PRP.

摘要

背景

氟化物是一种有益离子,已应用于从工业产品到治疗学等各个领域。然而,由于其治疗指数较窄,氟化物在人体中浓度相对较高时有时会作为一种有毒物质起作用。基于对遗传稳定性的关注,其细胞毒性作用主要在有核贴壁细胞(如成纤维细胞)中进行了研究。然而,血细胞,尤其是无核血小板对氟化物的敏感性却知之甚少。为了填补文献中的这一空白,我们研究了相对低水平的氟化物对血小板能量代谢、功能和活力的影响。

方法

从15名不吸烟的健康成年男性(年龄:28 - 63岁)制备富血小板血浆(PRP),并在微量管中用NaF(0.5或1.0 mM)处理长达3天。基于聚集和黏附活性评估血小板功能。基于细胞内ATP水平、细胞外乳酸水平和呼吸活性评估血小板能量代谢。使用细胞化学方法观察线粒体膜电位(Em)和活性氧(ROS)的定位。通过细胞计数和四氮唑还原评估血小板活力。

结果

NaF(1 mM)显著降低血小板活力并抑制其功能。在这些现象背后,NaF显著降低线粒体Em并增加ROS产生,同时氧消耗和ATP水平显著降低。同时,NaF增加了乳酸水平。虽然在0.5 mM NaF时观察到类似效应,但无统计学意义。

结论

在相对低水平时,NaF可能主要通过抑制线粒体能量产生而有减弱血小板功能的潜力。细胞毒性可能与ROS产生直接相关。这些发现表明,当局部使用时,例如用于口腔预防龋齿,NaF可能会干扰内源性和外源性添加的PRP形式的血小板的伤口愈合和组织再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a209/11410780/534f81f4e02f/ftox-06-1421184-g001.jpg

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