paper-with-me

홈 › Papers

OCT4 expression in human embryonic stem cells: spatio-temporal dynamics and fate transitions

2020-04-20 · Laura E Wadkin, Sirio Orozco-Fuentes, Irina Neganova, Majlinda Lako, R A Barrio, A W Baggaley, Nicholas G Parker, Anvar Shukurov

The improved in-vitro regulation of human embryonic stem cell (hESC) pluripotency and differentiation trajectories is required for their promising clinical applications. The temporal and spatial quantification of the molecular interactions controlling pluripotency is also necessary for the development of successful mathematical and computational models. Here we use time-lapse experimental data of OCT4-mCherry fluorescence intensity to quantify the temporal and spatial dynamics of the pluripotency transcription factor OCT4 in a growing hESC colony in the presence and absence of BMP4. We characterise the internal self-regulation of OCT4 using the Hurst exponent and autocorrelation analysis, quantify the intra-cellular fluctuations and consider the diffusive nature of OCT4 evolution for individual cells and pairs of their descendants. We find that OCT4 abundance in the daughter cells fluctuates sub-diffusively, showing anti-persistent self-regulation. We obtain the stationary probability distributions governing hESC transitions amongst the different cell states and establish the times at which pro-fate cells (which later give rise to pluripotent or differentiated cells) cluster in the colony. By quantifying the similarities between the OCT4 expression amongst neighbouring cells, we show that hESCs express similar OCT4 to cells within their local neighbourhood within the first two days of the experiment and before BMP4 treatment. Our framework allows us to quantify the relevant properties of proliferating hESC colonies and the procedure is widely applicable to other transcription factors and cell populations.

📄 PDF Abstract BibTeX arXiv:2004.09133

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Correlated random walks of human embryonic stem cell in-vitro

2018-02-27

We perform a detailed analysis of the migratory motion of human embryonic stem cells in two-dimensions, both when isolated and in close proximity to another cell, recorded with time-lapse microscopic imaging. We show tha…

Inter-cellular Interactions and Patterns: Vertebrate Development and Embryonic Stem Cells

2018-01-27

Development from egg to embryo to adult is a fascinating instance of biological self-organization for which genetics has supplied us with a parts list. It remains to find the principles organizing the assembly of those p…

PRiMeFlow: Capturing Complex Expression Heterogeneity in Perturbation Response Modelling

2026-04-15 · Zichao Yan, Yan Wu, Mica Xu Ji, Chaitra Agrahar 외 arxiv

Predicting the effects of perturbations in-silico on cell state can identify drivers of cell behavior at scale and accelerate drug discovery. However, modeling challenges remain due to the inherent heterogeneity of singl…

Drug Discovery

The 4D Human Embryonic Brain Atlas: spatiotemporal atlas generation for rapid anatomical changes using first-trimester ultrasound from the Rotterdam Periconceptional Cohort

2025-03-10 · Wietske A. P. Bastiaansen, Melek Rousian, Anton H. J. Koning, Wiro J. Niessen 외

Early brain development is crucial for lifelong neurodevelopmental health. However, current clinical practice offers limited knowledge of normal embryonic brain anatomy on ultrasound, despite the brain undergoing rapid c…

Anatomy

An interpretable deep-learning architecture of capsule networks for identifying cell-type gene expression programs from single-cell RNA-sequencing data

2018-05-22 · Nature 2018 5 · Suijuan Zhong, Shu Zhang, Xiaoying Fan, Qian Wu 외

The mammalian prefrontal cortex comprises a set of highly specialized brain areas containing billions of cells and serves as the centre of the highest-order cognitive functions, such as memory, cognitive ability, deci…