Fluorescence-activated nuclear sorting (FANS) of nuclei from in vitro-generated syncytiotrophoblast

IF 2.5 2区 医学 Q2 DEVELOPMENTAL BIOLOGY Placenta Pub Date : 2025-06-13 Epub Date: 2024-06-13 DOI:10.1016/j.placenta.2024.06.007
Teka Khan , Jeffrey J. Whyte , Laura C. Schulz , R. Michael Roberts
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Abstract

Large, multinucleated cells, like syncytiotrophoblasts (STB), are not readily analyzed by standard methods used for single cells, such as single-cell RNA-sequencing and fluorescence-activated cellular sorting (FACS). Here we have demonstrated that fluorescence-activated nuclear sorting (FANS) is suitable to analyze nuclei from STB. Human pluripotent stem cells (PSCs) can be differentiated into a mixed trophoblast populations comprising approximately 20 % STB by treatment with BMP4 (Bone Morphogenetic Protein-4), plus A83-01 and PD173074, inhibitors of activin and FGF2 signaling, respectively (the BAP model) in about a week. Here we demonstrate that FANS can be used to separate two types of STB nuclei from the nine different clusters of trophoblast nuclei previously identified in the BAP model by single nucleus RNA sequencing (snRNAseq). Rather than using cell surface markers, as in FACS, transcription factors in various combinations were employed to target specific nuclear types. Nuclei were isolated at d 8 of BAP differentiation of H1 human embryonic stem cells and fixed in 4 % paraformaldehyde. After permeabilization in 0.1 % triton X-100, nuclei were incubated for 3 and 1 h at 4 °C with primary and secondary antibodies respectively and nuclear samples were then subjected to FANS. By using markers identified by snRNA and immunohistochemistry, nuclei were first sorted into a Topoisomerase-1, or TOP1, bright population and then into the two STB subpopulations by using antibodies to JUNB (Jun B Proto-Oncogene) and TFCP2L1 (Transcription Factor CP2 Like 1). The protocol established here is simple, straightforward, and efficient and can be used on a relatively large scale to sort individual subtypes of nuclei from mixed populations of trophoblasts for further analysis.
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体外生成的合胞滋养细胞核的荧光激活核分选(FANS)
大型多核细胞,如合胞滋养细胞(STB),不容易用单细胞的标准方法分析,如单细胞rna测序和荧光激活细胞分选(FACS)。在这里,我们证明了荧光激活核分选(FANS)适用于分析STB的细胞核。通过BMP4 (Bone Morphogenetic Protein-4)、A83-01和PD173074(激活素和FGF2信号的抑制剂)(BAP模型)处理,人类多能干细胞(PSCs)可以在大约一周的时间内分化成含有约20% STB的混合滋养细胞群体。在这里,我们证明了FANS可以用于从先前通过单核RNA测序(snRNAseq)在BAP模型中鉴定的9个不同的滋养细胞细胞核簇中分离出两种类型的STB细胞核。不同于FACS中使用的细胞表面标记物,不同组合的转录因子被用来靶向特定的核类型。在H1人胚胎干细胞BAP分化的第8天分离细胞核,用4%多聚甲醛固定。在0.1% triton X-100中渗透后,细胞核分别与一抗和二抗在4°C下孵育3和1小时,然后将核样品进行FANS处理。利用snRNA和免疫组化鉴定的标记,首先将细胞核分为Topoisomerase-1 (TOP1)明亮群体,然后利用JUNB (Jun B Proto-Oncogene)和TFCP2L1 (Transcription Factor CP2 Like 1)抗体将细胞核分为两个STB亚群体。这里建立的方案简单、直接、高效,可以在相对较大的规模上用于从混合滋养层细胞群体中分类单个细胞核亚型,以作进一步分析。
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来源期刊
Placenta
Placenta 医学-发育生物学
CiteScore
6.30
自引率
10.50%
发文量
391
审稿时长
78 days
期刊介绍: Placenta publishes high-quality original articles and invited topical reviews on all aspects of human and animal placentation, and the interactions between the mother, the placenta and fetal development. Topics covered include evolution, development, genetics and epigenetics, stem cells, metabolism, transport, immunology, pathology, pharmacology, cell and molecular biology, and developmental programming. The Editors welcome studies on implantation and the endometrium, comparative placentation, the uterine and umbilical circulations, the relationship between fetal and placental development, clinical aspects of altered placental development or function, the placental membranes, the influence of paternal factors on placental development or function, and the assessment of biomarkers of placental disorders.
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