Donnelly, Hannah and Ross, Ewan and Xiao, Yinbo and Hermantara, Rio and Taqi, Aqeel and Doherty-Boyd, W. Sebastian and Cassels, Jennifer and Tsimbouri, Penelope M. and Dunne, Karen M. and Hay, Jodie and Cheng, Annie and Meek, R.M. Dominic and Jain, Nikhil and West, Christopher and Wheadon, Helen and Michie, Alison M. and Peault, Bruno and West, Adam G. and Salmeron-Sanchez, Manuel and Dalby, Matthew J. (2024) Bioengineered niches that recreate physiological extracellular matrix organisation to support long-term haematopoietic stem cells. Nature Communications, 15: 5791. ISSN 2041-1723
AI Summary:
Researchers have developed a bioengineered niche that recreates physiological extracellular matrix organisation to support the survival of long-term haematopoietic stem cells (LT-HSCs).AI Topics:
Long-term reconstituting haematopoietic stem cells (LT-HSCs) are used to treat blood disorders via stem cell transplantation. The very low abundance of LT-HSCs and their rapid differentiation during in vitro culture hinders their clinical utility. Previous developments using stromal feeder layers, defined media cocktails, and bioengineering have enabled HSC expansion in culture, but of mostly short-term HSCs and progenitor populations at the expense of naive LT-HSCs. Here, we report the creation of a bioengineered LT-HSC maintenance niche that recreates physiological extracellular matrix organisation, using soft collagen type-I hydrogels to drive nestin expression in perivascular stromal cells (PerSCs). We demonstrate that nestin, which is expressed by HSC-supportive bone marrow stromal cells, is cytoprotective and, via regulation of metabolism, is important for HIF-1α expression in PerSCs. When CD34+ve HSCs were added to the bioengineered niches comprising nestin/HIF-1α expressing PerSCs, LT-HSC numbers were maintained with normal clonal and in vivo reconstitution potential, without media supplementation. We provide proof-of-concept that our bioengineered niches can support the survival of CRISPR edited HSCs. Successful editing of LT-HSCs ex vivo can have potential impact on the treatment of blood disorders.
Title | Bioengineered niches that recreate physiological extracellular matrix organisation to support long-term haematopoietic stem cells |
---|---|
Creators | Donnelly, Hannah and Ross, Ewan and Xiao, Yinbo and Hermantara, Rio and Taqi, Aqeel and Doherty-Boyd, W. Sebastian and Cassels, Jennifer and Tsimbouri, Penelope M. and Dunne, Karen M. and Hay, Jodie and Cheng, Annie and Meek, R.M. Dominic and Jain, Nikhil and West, Christopher and Wheadon, Helen and Michie, Alison M. and Peault, Bruno and West, Adam G. and Salmeron-Sanchez, Manuel and Dalby, Matthew J. |
Identification Number | 10.1038/s41467-024-50054-0 |
Date | 10 July 2024 |
Divisions | College of Medical Veterinary and Life Sciences College of Medical Veterinary and Life Sciences > School of Biodiversity, One Health & Veterinary Medicine College of Medical Veterinary and Life Sciences > School of Cancer Sciences College of Medical Veterinary and Life Sciences > School of Molecular Biosciences College of Science and Engineering > School of Engineering > Biomedical Engineering |
Publisher | Nature Research |
Additional Information | This work was supported by BBSRC grant BB/N018419/1, EPSRC grant EP/P001114/1, MRC grant MR/R005567/1 and the Carnegie Trust grant number RIG009892. |
URI | https://pub.demo35.eprints-hosting.org/id/eprint/196 |
---|
Item Type | Article |
---|---|
Depositing User | Unnamed user with email ejo1f20@soton.ac.uk |
Date Deposited | 11 Jun 2025 16:35 |
Revision | 58 |
Last Modified | 12 Jun 2025 11:31 |
![]() |