
Issac Emmanuel Goh ๐บ๐ฆ
@issacegoh
Computational Biologist at Newcastle University and visiting scientist at the Sanger institute.
3D bio-printing enthusiast
ID: 241166438
https://haniffalab.com/team/issac-goh.html 21-01-2011 16:31:49
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New preprint alert! ๐ข๐ฅณ Using multiomic profiling of #SingleCell data we integrated and analysed ~180k cells from first trimester human yolk sac (YS) Our investigations recovered cells from the contents, membrane & vitelline duct [see vid below] Here's what we learnt [1/9]๐๐พ

Probing the haem compartment further, we detail haematopoietic stem progenitor cell (HSPC) emergence from hemogenic endothelium, also observed in public yolk sac iPSC scRNA-seq (Clara Alsinet Armengol et al rdcu.be/cTfOt) similar to aorto-gonado-mesenephros (AGM) [3/9]
![Haniffa Lab (@haniffalab) on Twitter photo Probing the haem compartment further, we detail haematopoietic stem progenitor cell (HSPC) emergence from hemogenic endothelium, also observed in public yolk sac iPSC scRNA-seq (<a href="/ClaraAlsinet/">Clara Alsinet Armengol</a> et al rdcu.be/cTfOt) similar to aorto-gonado-mesenephros (AGM)
[3/9] Probing the haem compartment further, we detail haematopoietic stem progenitor cell (HSPC) emergence from hemogenic endothelium, also observed in public yolk sac iPSC scRNA-seq (<a href="/ClaraAlsinet/">Clara Alsinet Armengol</a> et al rdcu.be/cTfOt) similar to aorto-gonado-mesenephros (AGM)
[3/9]](https://pbs.twimg.com/media/FZpadPjXEAETGnI.jpg)

Our data are consistent with definitive HSPC predominance over primitive by 8 PCW (Vincenzo Calvanese et al rdcu.be/cTgFF) We find differential linage potentials before and after AGM contributions to haematopoiesis in YS [4/9]
![Haniffa Lab (@haniffalab) on Twitter photo Our data are consistent with definitive HSPC predominance over primitive by 8 PCW (<a href="/VincenzoCalvan3/">Vincenzo Calvanese</a> et al rdcu.be/cTgFF)
We find differential linage potentials before and after AGM contributions to haematopoiesis in YS
[4/9] Our data are consistent with definitive HSPC predominance over primitive by 8 PCW (<a href="/VincenzoCalvan3/">Vincenzo Calvanese</a> et al rdcu.be/cTgFF)
We find differential linage potentials before and after AGM contributions to haematopoiesis in YS
[4/9]](https://pbs.twimg.com/media/FZpayLyX0AINDV_.jpg)

Led by RachelBotting Issac Emmanuel Goh ๐บ๐ฆ ๐๐พ An amazing effort from this duo! Give them a follow Co-authored by Antony Rose Dr Simone Webb Yorick Gitton, Human in 3D @emilyxsx Mariana Quiroga Londoรฑo Michael Mather Dave Horsfall Nana-Jane Kwasi Clara Alsinet Armengol Bayanne Olabi ๐ด Chloรซ Admane [8/9]

New in @Science! ๐ Our #Developmental Human Cell Atlas study (bit.ly/yolk_sac) uses #SingleCell profiling to map the human yolk sac, pivotal for embryonic survival & first prenatal blood and immune cells. Data-portal: bit.ly/YSportal ๐ [1/12] ๐ฅ by Megumi Inoue

We detail haematopoietic stem progenitor (HSPC) emergence from hemogenic endothelium, also observed in iPSC scRNA-seq data (Clara Alsinet Armengol et al) similar to aorta-gonad-mesonephros (AGM) [3/12]
![Haniffa Lab (@haniffalab) on Twitter photo We detail haematopoietic stem progenitor (HSPC) emergence from hemogenic endothelium, also observed in iPSC scRNA-seq data (<a href="/ClaraAlsinet/">Clara Alsinet Armengol</a> et al) similar to aorta-gonad-mesonephros (AGM)
[3/12] We detail haematopoietic stem progenitor (HSPC) emergence from hemogenic endothelium, also observed in iPSC scRNA-seq data (<a href="/ClaraAlsinet/">Clara Alsinet Armengol</a> et al) similar to aorta-gonad-mesonephros (AGM)
[3/12]](https://pbs.twimg.com/media/F30iqUcWQAA8KZl.jpg)

We find distinct waves of HSPC (red๐) lineage potential for different blood/immune cells before/after AGM contributions to haematopoiesis in YS. Our data are consistent with definitive HSPC predominance over primitive by 8 post conception weeks (Vincenzo Calvanese et al) [4/12]
![Haniffa Lab (@haniffalab) on Twitter photo We find distinct waves of HSPC (red๐) lineage potential for different blood/immune cells before/after AGM contributions to haematopoiesis in YS. Our data are consistent with definitive HSPC predominance over primitive by 8 post conception weeks (<a href="/VincenzoCalvan3/">Vincenzo Calvanese</a> et al)
[4/12] We find distinct waves of HSPC (red๐) lineage potential for different blood/immune cells before/after AGM contributions to haematopoiesis in YS. Our data are consistent with definitive HSPC predominance over primitive by 8 post conception weeks (<a href="/VincenzoCalvan3/">Vincenzo Calvanese</a> et al)
[4/12]](https://pbs.twimg.com/media/F30ixXEXoAA2Ft0.jpg)

We observe a pre-AGM accelerated pathway to macrophage differentiation in the YS prior to monocyte emergence (also in iPSC scRNA-seq Clara Alsinet Armengol et al) Macrophages in the YS post-AGM are from proliferating macrophage pool and monocyte differentiation [5/12]
![Haniffa Lab (@haniffalab) on Twitter photo We observe a pre-AGM accelerated pathway to macrophage differentiation in the YS prior to monocyte emergence (also in iPSC scRNA-seq <a href="/ClaraAlsinet/">Clara Alsinet Armengol</a> et al)
Macrophages in the YS post-AGM are from proliferating macrophage pool and monocyte differentiation
[5/12] We observe a pre-AGM accelerated pathway to macrophage differentiation in the YS prior to monocyte emergence (also in iPSC scRNA-seq <a href="/ClaraAlsinet/">Clara Alsinet Armengol</a> et al)
Macrophages in the YS post-AGM are from proliferating macrophage pool and monocyte differentiation
[5/12]](https://pbs.twimg.com/media/F30i4WXWgAAFNPh.jpg)


Our manuscript was just published in Science! Blessed to have co-led with the brilliant RachelBotting, working with friends and collabs at Haniffa Lab, Wellcome Sanger Institute Cambridge University! Read about how we uncover the first emergence of blood/immune cells in human embryonic life!



Fantastic study revealing several new functions of the human yolk sac during development, including monocyte-independent production of macrophages! Congratulations Issac Emmanuel Goh ๐บ๐ฆ RachelBotting Muzlifah Haniffa an co-authors ๐๐๐