Omura Shoichiro, Ogawa Rina, Kawachi Tomomi, Ogawa Aya, Arai Yuuki, Takayama Natsumi, Masui Aki, Kondo Kumiko, Sugimoto Hiroki, Shinohara Hiroshi M, Takahashi Tokiharu, Maeda Hideyuki, Ohyama Kyoji
Department of Histology and Neuroanatomy, Tokyo Medical University, Tokyo, Japan.
Department of Legal Medicine, Osaka University, Suita, Japan.
Front Cell Neurosci. 2024 Oct 17;18:1464402. doi: 10.3389/fncel.2024.1464402. eCollection 2024.
Astrocytes are key components of the neurovascular unit. While we have recently identified Olig2+ astrocyte progenitors (ASPs) in the developing mouse dentate gyrus (DG), their molecular signature remains incompletely characterized. Here we demonstrate that Olig2+ ASPs predominantly express brain lipid-binding protein (BLBP), while only a small population of them expresses -GFP. These Olig2+/BLBP+ ASPs co-express the transcription factors Sox3, Sox9 and the proteoglycan NG2 but not Sox10, a marker for oligodendrocyte progenitors (OLPs). Olig2+ ASPs appear from embryonic day 18 (E18) onwards and decline at postnatal day 14 (P14). Consistent with the proliferation of both Olig2+ and NG2+ glial cells after brain injury, intrauterine intermittent hypoxia (IH) led to an increase in Olig2+/NG2+/BLBP+ ASPs in the postnatal DG. IH also promoted both angiogenesis and vascular coupling of Olig2+/NG2+ ASPs. Our data suggest that IH-induced expression of HIF1a increases Olig2+/NG2+/BLBP+ ASPs in a cell non-autonomous manner. Our data also revealed increased vascular coupling of GFAP+ astrocytes following IH, while the number of GFAP+ astrocytes remains unchanged. Given that BLBP, Olig2 and NG2 are expressed in reactive astrocytes, our findings suggest that Olig2+/NG2+/BLBP+ ASPs represent a subtype of reactive astrocyte progenitors. Furthermore, the enhanced vascular coupling of Olig2+/NG2+/BLBP+ ASPs appears to be an adaptive response to hypoxic brain injury. This study provides new insights into the molecular characteristics of Olig2+/NG2+/BLBP+ ASPs and their potential role in the brain's response to hypoxic injury, contributing to our understanding of neurovascular unit dynamics in both development and pathological conditions.
星形胶质细胞是神经血管单元的关键组成部分。虽然我们最近在发育中的小鼠齿状回(DG)中鉴定出了Olig2+星形胶质细胞祖细胞(ASP),但其分子特征仍未完全明确。在此,我们证明Olig2+ ASP主要表达脑脂质结合蛋白(BLBP),而其中只有一小部分表达-GFP。这些Olig2+/BLBP+ ASP共同表达转录因子Sox3、Sox9和蛋白聚糖NG2,但不表达少突胶质细胞祖细胞(OLP)的标志物Sox10。Olig2+ ASP从胚胎第18天(E18)开始出现,并在出生后第14天(P14)减少。与脑损伤后Olig2+和NG2+神经胶质细胞的增殖一致,宫内间歇性缺氧(IH)导致出生后DG中Olig2+/NG2+/BLBP+ ASP数量增加。IH还促进了Olig2+/NG2+ ASP的血管生成和血管耦合。我们的数据表明,IH诱导的HIF1a表达以细胞非自主方式增加了Olig2+/NG2+/BLBP+ ASP的数量。我们的数据还显示,IH后GFAP+星形胶质细胞的血管耦合增加,而GFAP+星形胶质细胞的数量保持不变。鉴于BLBP、Olig2和NG2在反应性星形胶质细胞中表达,我们的研究结果表明,Olig2+/NG2+/BLBP+ ASP代表反应性星形胶质细胞祖细胞的一种亚型。此外,Olig2+/NG2+/BLBP+ ASP血管耦合的增强似乎是对缺氧性脑损伤的一种适应性反应。这项研究为Olig2+/NG2+/BLBP+ ASP的分子特征及其在大脑对缺氧损伤反应中的潜在作用提供了新的见解,有助于我们理解发育和病理条件下神经血管单元的动态变化。