Gallorini Marialucia, Mencarelli Noemi, Di Pietro Natalia, di Giacomo Viviana, Zara Susi, Ricci Alessia, Rapino Monica, Piattelli Adriano, Cipollina Alessandro, Cataldi Amelia
Department of Pharmacy, "G. d'Annunzio" University of Chieti-Pescara, Via dei Vestini 31, 66100 Chieti, Italy.
Department of Medical, Oral and Biotechnological Sciences, "G. d'Annunzio" University of Chieti-Pescara, Via dei Vestini 31, 66100 Chieti, Italy.
Int J Mol Sci. 2024 Dec 24;26(1):48. doi: 10.3390/ijms26010048.
Dental inflammatory diseases remain a challenging clinical issue, whose causes and development are still not fully understood. During dental caries, bacteria penetrate the tooth pulp, causing pulpitis. To prevent pulp necrosis, it is crucial to promote tissue repair by recruiting immune cells, such as macrophages, able to secrete signal molecules for the pulp microenvironment and thus to recruit dental pulp stem cells (DPSCs) in the damaged site. To date, root canal therapy is the standard for dental caries, but alternative regenerative treatments are gaining attention. Complex Multifrequency Magnetoelectric Fields (CMFs) represent an interesting tool due to their potential anti-inflammatory activity. Against this background, the present work aims at investigating whether the CMF treatment might restore redox balance in a co-culture model of DPSCs and inflamed macrophages mimicking an inflammatory condition, like pulpitis. Results show that superoxide anion levels and markers related to the polarization of macrophages are modulated by the CMF treatment. In parallel, the use of CMFs discloses an impact on the odontogenic commitment of DPSCs, their immunophenotype being considerably modified. In conclusion, CMFs, by modulating the odontogenic commitment and the anti-inflammatory response of DPSCs, might represent a suitable therapeutic tool against pulpitis and, in general, towards dental inflammatory diseases.
牙科炎症性疾病仍然是一个具有挑战性的临床问题,其病因和发展仍未完全明了。在龋齿发生过程中,细菌侵入牙髓,引发牙髓炎。为防止牙髓坏死,通过募集免疫细胞(如巨噬细胞)来促进组织修复至关重要,这些巨噬细胞能够分泌信号分子作用于牙髓微环境,从而在受损部位募集牙髓干细胞(DPSCs)。迄今为止,根管治疗是龋齿的标准治疗方法,但替代性的再生治疗正受到关注。复杂多频磁电场(CMFs)因其潜在的抗炎活性而成为一种有趣的工具。在此背景下,本研究旨在探讨CMF治疗是否能在模拟牙髓炎等炎症状态的DPSCs与炎症巨噬细胞共培养模型中恢复氧化还原平衡。结果表明,CMF治疗可调节超氧阴离子水平以及与巨噬细胞极化相关的标志物。同时,CMFs的使用揭示了其对DPSCs成牙分化的影响,其免疫表型发生了显著改变。总之,CMFs通过调节DPSCs的成牙分化和抗炎反应,可能成为治疗牙髓炎乃至一般牙科炎症性疾病的合适治疗工具。