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Caution urged in interpreting a negative study of cannabis use and schizophrenia

机译:在解释对大麻使用和精神分裂症的负面研究时应谨慎行事

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In regenerative medicine approaches involving cell therapy, selection of the appropriate cell type is important in that the cells must directly (differentiation) or indirectly (trophic effects) participate in the regenerative response. Regardless of the mode of action of the cells, angiogenesis underlies the success of these approaches. Stem cells derived from tooth tissues, specifically the periodontal ligament of teeth (periodontal ligament stem cells [PDLSCs]), have recently been identified as a good source of multipotent cells for cell therapies. PDLSCs have demonstrated properties similar to mesenchymal stem cells (MSCs), yet, unlike MSCs, their vascular potential has not been previously demonstrated. Thus, the aim of this study was to determine if PDLSCs could modulate angiogenesis. In comparison to MSCs and stem cells derived from tooth pulp tissues (SHEDs), we first determined if PDLSCs released soluble proangiogenic factors with the capacity to induce vessel formation by endothelial cells (ECs). Next, the ability of PDLSCs to modulate angiogenesis was examined through their cotransplantation with ECs in subcutaneous sites of immunocompromised mice. Finally, the stability of the PDLSC-mediated vasculature was determined through evaluation of the maturity and functionality of the vessels formed following PDLSC transplantation. It was determined that PDLSCs produced appreciable levels of vascular endothelial growth factor and basic fibroblast growth factor-2, and additionally, were able to initiate in vitro angiogenesis of ECs comparable to MSC- and SHED-mediated angiogenesis. In vivo cotransplantation of ECs with PDLSCs significantly (>50% increase) enhanced the number of blood vessels formed relative to transplantation of ECs alone. Finally, vessels formed following PDLSC cotransplantation were more mature and less permeable than those formed after transplantation of EC alone. These data demonstrate for the first time that PDLSCs have vascular potential, which could make them a very attractive cell population for utilization in regenerative cell therapies.
机译:在涉及细胞疗法的再生医学方法中,适当细胞类型的选择很重要,因为细胞必须直接(分化)或间接(营养作用)参与再生反应。无论细胞的作用方式如何,血管生成都是这些方法成功的基础。最近,已确定源自牙齿组织的干细胞,特别是牙齿的牙周膜(牙周膜干细胞[PDLSC])是用于细胞疗法的多能细胞的良好来源。 PDLSCs已显示出与间充质干细胞(MSCs)相似的特性,但是,与MSCs不同,PDLSCs的血管潜力先前尚未得到证明。因此,本研究的目的是确定PDLSC是否可以调节血管生成。与来自牙髓组织(SHED)的MSC和干细胞相比,我们首先确定PDLSC是否释放了可溶性血管生成因子,并具有诱导内皮细胞(EC)形成血管的能力。接下来,通过在免疫功能低下的小鼠皮下部位与ECs共移植,检查PDLSCs调节血管生成的能力。最后,通过评估PDLSC移植后形成的血管的成熟度和功能来确定PDLSC介导的脉管系统的稳定性。可以确定PDLSCs产生了可观水平的血管内皮生长因子和碱性成纤维细胞生长因子2,此外,还能够启动与MSC和SHED介导的血管生成相当的EC体外血管生成。与单独的EC移植相比,EC与PDLSC的体内共移植显着(增加了50%以上)增加了形成的血管数量。最后,与单独移植EC后形成的血管相比,PDLSC共移植后形成的血管更成熟,通透性更低。这些数据首次证明了PDLSC具有血管潜力,这可能使其成为具有吸引力的细胞群,可用于再生细胞疗法。

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