Cytology Techniques Can Provide Insight into Human Placental Structure Including Syncytiotrophoblast Nuclear Spatial Organisation.

IF 2.2 Q3 DEVELOPMENTAL BIOLOGY Journal of Developmental Biology Pub Date : 2023-12-15 DOI:10.3390/jdb11040046
Cassie Fives, André Toulouse, Louise Kenny, Therese Brosnan, Julie McCarthy, Brendan Fitzgerald
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Abstract

The aim of this study was to provide the first systematic description of human placental cytology appearances and to investigate syncytiotrophoblast nuclear organisation patterns using cytology techniques. Term placentas from normal pregnancies were sampled using fine-needle aspiration (FNA) and direct scrapes. Standard histological examination was also performed to exclude pathological changes in the placentas being studied. Both Papanicolaou-stained cytospin preparations and air-dried Giemsa slides from FNA provided high-quality material for cytological assessment with good cellularity. Among the key features of the cytology preparations were villous "microbiopsies" that allowed for the three-dimensional appreciation of villous branching patterns. Cytological appearances, including nuclear characteristics of villous cytotrophoblast and syncytiotrophoblast, were also well demonstrated. In microbiopsies and detached villous trophoblast sheets, complex patterns of syncytiotrophoblast nuclear organisation, not previously described cytologically, were observed, including irregular spacing of nuclei, syncytioplasm windows and linear nuclear arrangements. This study showed that placental cytology (a) provides technically excellent material for cytological evaluation, (b) confirms the presence of complex nuclear organisational patterns in the syncytiotrophoblast by eliminating the possibility of tangential sectioning artefact, (c) provides superior nuclear detail over standard histological sections and (d) may be an untapped research resource for the investigation of normal and pathological processes because of its ability to look at the placenta in a novel way and through its potential for both ex vivo and in vivo placental sampling.

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细胞学技术可深入了解人类胎盘结构,包括合胞母细胞核空间组织。
本研究旨在首次系统地描述人类胎盘细胞学外观,并利用细胞学技术研究合胞滋养细胞核组织模式。研究人员使用细针抽吸(FNA)和直接刮取法对正常妊娠的足月胎盘进行取样。同时还进行了标准的组织学检查,以排除胎盘的病理变化。从 FNA 中提取的巴氏染色细胞片制备物和风干的吉氏切片都为细胞学评估提供了高质量的细胞。细胞学制备物的主要特征之一是绒毛 "微生物切片",可用于三维观察绒毛分支模式。细胞学外观,包括绒毛细胞滋养层和合胞滋养层的核特征,也得到了很好的展示。在微生物切片和分离的绒毛滋养层薄片中,观察到了合胞滋养层细胞核组织的复杂模式,包括核间距不规则、合胞浆窗和线性核排列等,这些在以前的细胞学中都没有描述过。这项研究表明,胎盘细胞学(a)为细胞学评估提供了技术上极佳的材料;(b)通过消除切向切片假象的可能性,证实了合胞滋养细胞中存在复杂的核组织模式;(c)提供了优于标准组织学切片的核细节;(d)由于能以新颖的方式观察胎盘,并通过其体内外胎盘取样的潜力,可能成为研究正常和病理过程的一种尚未开发的研究资源。
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来源期刊
Journal of Developmental Biology
Journal of Developmental Biology Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
4.10
自引率
18.50%
发文量
44
审稿时长
11 weeks
期刊介绍: The Journal of Developmental Biology (ISSN 2221-3759) is an international, peer-reviewed, quick-refereeing, open access journal, which publishes reviews, research papers and communications on the development of multicellular organisms at the molecule, cell, tissue, organ and whole organism levels. Our aim is to encourage researchers to effortlessly publish their new findings or concepts rapidly in an open access medium, overseen by their peers. There is no restriction on the length of the papers; the full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. Journal of Developmental Biology focuses on: -Development mechanisms and genetics -Cell differentiation -Embryonal development -Tissue/organism growth -Metamorphosis and regeneration of the organisms. It involves many biological fields, such as Molecular biology, Genetics, Physiology, Cell biology, Anatomy, Embryology, Cancer research, Neurobiology, Immunology, Ecology, Evolutionary biology.
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