Carlos Chagas Filho Institute of Biophysics, Federal University of Rio de Janeiro, Rio de Janeiro 21941902, Brazil.
Institute of Biomedical Sciences, Federal University of Rio de Janeiro, Rio de Janeiro 21941902, Brazil.
Int J Mol Sci. 2020 Dec 15;21(24):9563. doi: 10.3390/ijms21249563.
Several therapies are being developed to increase blood circulation in ischemic tissues. Despite bone marrow-derived mesenchymal stromal cells (bmMSC) are still the most studied, an interesting and less invasive MSC source is the menstrual blood, which has shown great angiogenic capabilities. Therefore, the aim of this study was to evaluate the angiogenic properties of menstrual blood-derived mesenchymal stromal cells (mbMSC) in vitro and in vivo and compared to bmMSC. MSC's intrinsic angiogenic capacity was assessed by sprouting and migration assays. mbMSC presented higher invasion and longer sprouts in 3D culture. Additionally, both MSC-spheroids showed cells expressing CD31. mbMSC and bmMSC were able to migrate after scratch wound in vitro, nonetheless, only mbMSC demonstrated ability to engraft in the chick embryo, migrating to perivascular, perineural, and chondrogenic regions. In order to study the paracrine effects, mbMSC and bmMSC conditioned mediums were capable of stimulating HUVEC's tube-like formation and migration. Both cells expressed VEGF-A and FGF2. Meanwhile, PDGF-B was expressed exclusively in mbMSC. Our results indicated that mbMSC and bmMSC presented a promising angiogenic potential. However, mbMSC seems to have additional advantages since it can be obtained by non-invasive procedure and expresses PDGF-B, an important molecule for vascular formation and remodeling.
目前正在开发几种疗法来增加缺血组织的血液循环。尽管骨髓间充质基质细胞(bmMSC)仍然是研究最多的,但一种有趣且侵入性较小的 MSC 来源是月经血,它具有很强的血管生成能力。因此,本研究旨在评估体外和体内月经血来源的间充质基质细胞(mbMSC)的血管生成特性,并与 bmMSC 进行比较。通过发芽和迁移实验评估 MSC 的内在血管生成能力。mbMSC 在 3D 培养中具有更高的侵袭性和更长的芽。此外,两种 MSC 球体都表达了 CD31。mbMSC 和 bmMSC 能够在体外划痕损伤后迁移,但只有 mbMSC 显示出在鸡胚中植入的能力,迁移到血管周围、神经周围和软骨形成区域。为了研究旁分泌作用,mbMSC 和 bmMSC 条件培养基能够刺激 HUVEC 的管状形成和迁移。两种细胞都表达 VEGF-A 和 FGF2。同时,PDGF-B 仅在 mbMSC 中表达。我们的结果表明,mbMSC 和 bmMSC 具有有前途的血管生成潜力。然而,mbMSC 似乎具有额外的优势,因为它可以通过非侵入性程序获得,并且表达 PDGF-B,这是血管形成和重塑的重要分子。