The characterization of many cytokines involved in the control of hematopoiesis has led to intense investigation into their potential use in ex vivo culture to expand progenitor numbers. We have established the optimum ex vivo culture conditions that allow substantial amplification of transient engrafting murine stem cells and which, simultaneously, augment the ability to sustain serial bone marrow transplantation (BMT). Short-term incubation of unfractionated BM cells in liquid culture with stem cell factor (SCF) and interleukin-11 (IL- 11) produced a 50-fold amplification of clonogenic multipotential progenitors (CFU-A). Following such ex vivo expansion, substantially fewer cells were required to rescue lethally irradiated mice. When transplanted in cell doses above threshold for engraftment, BM cells expanded ex vivo resulted in significantly more rapid hematopoietic recovery. In a serial transplantation model, unmanipulated BM was only able to consistently sustain secondary BMT recipients, but BM expanded ex vivo has sustained quaternary BMT recipients that remain alive and well more than 140 days after 4th degree BMT. These results show augmentation of both short-term recovery posttransplant and the ability to serially transplant marrow by preincubation in culture with SCF and IL-11.
Skip Nav Destination
ARTICLES|
June 1, 1996
Ex vivo expansion with stem cell factor and interleukin-11 augments both short-term recovery posttransplant and the ability to serially transplant marrow
TL Holyoake,
TL Holyoake
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
MG Freshney,
MG Freshney
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
L McNair,
L McNair
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
AN Parker,
AN Parker
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
PJ McKay,
PJ McKay
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
WP Steward,
WP Steward
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
E Fitzsimons,
E Fitzsimons
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
GJ Graham,
GJ Graham
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
IB Pragnell
IB Pragnell
Cancer Research Campaign Beatson Laboratories, Beaston Institute for Cancer Research, Glasgow, Scotland.
Search for other works by this author on:
Blood (1996) 87 (11): 4589–4595.
Citation
TL Holyoake, MG Freshney, L McNair, AN Parker, PJ McKay, WP Steward, E Fitzsimons, GJ Graham, IB Pragnell; Ex vivo expansion with stem cell factor and interleukin-11 augments both short-term recovery posttransplant and the ability to serially transplant marrow. Blood 1996; 87 (11): 4589–4595. doi: https://doi.org/10.1182/blood.V87.11.4589.bloodjournal87114589
Download citation file:
June 1 1996
Advertisement intended for health care professionals
Cited By
Advertisement intended for health care professionals
This feature is available to Subscribers Only
Sign In or Create an Account Close Modal