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Preconditioning of Human Dental Pulp Stem Cells with Leukocyte- and Platelet-Rich Fibrin-Derived Factors Does Not Enhance Their Neuroregenerative Effect

机译:用白细胞和富含白细胞和血小板的纤维蛋白衍生因子的人牙髓干细胞的预处理不能增强其神经造成的作用

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Pathologies of the central nervous system are characterized by loss of brain tissue and neuronal function which cannot be adequately restored by endogenous repair processes. This stresses the need for novel treatment options such as cell-based therapies that are able to restore damaged tissue or stimulate repair. This study investigated the neuroregenerative potential of the conditioned medium of human dental pulp stem cells (CM-hDPSCs) on neural stem cell (NSC) proliferation and migration as well as on neurite outgrowth of primary cortical neurons (pCNs). Additionally, the effect of leukocyte- and platelet-rich fibrin (L-PRF) priming on the neuroregenerative potential of the hDPSC secretome on NSCs and pCNs was evaluated. L-PRF contains factors that enhance stem cell-induced regeneration, but its effect on hDPSC-mediated neuroregeneration is unknown. This study demonstrated that CM-hDPSCs enhanced neuritogenesis. Moreover, CM-hDPSCs had a chemoattractant effect on NSCs. Although priming hDPSCs with L-PRF increased brain-derived neurotrophic factor secretion, no additional effects on the paracrine-mediated repair mechanisms were observed. These data support the neuroregenerative potential of hDPSCs, and although priming had no additional effect, the potential of L-PRF-primed hDPSCs on distinct regenerative mechanisms remains to be clarified.
机译:中枢神经系统的病理学的特征是脑组织丧失和神经元功能,其不能通过内源修复过程充分恢复。这强调了新型治疗选择,例如能够恢复受损组织或刺激修复的细胞的疗法。该研究研究了人牙髓干细胞(CM-HDPSC)的调节介质对神经干细胞(NSC)增殖和迁移以及原发性皮质神经元(PCNS)的神经沸石过多的神经营养介质。另外,评估了白细胞和富含血小板和富含血小板纤维蛋白(L-PRF)灌注对NSC和PCNS对NSC和PCN的神经营养性潜力的影响。 L-PRF含有增强干细胞诱导的再生的因素,但其对HDPSC介导的神经元件的影响是未知的。该研究表明CM-HDPSCS增强神经发生。此外,CM-HDPSC对NSCs进行了化学效果。虽然具有L-PRF的引发HDPSC增加脑衍生的神经营养因子分泌,但没有对邻静脉介导的修复机制的额外影响。这些数据支持HDPSC的神经营养性潜力,虽然引发没有额外的效果,但L-PRF引发的HDPSC在不同的再生机制上的电位仍有待阐明。

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