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Dive into the research topics where Allen C. Eaves is active.

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Featured researches published by Allen C. Eaves.


Cytotherapy | 2002

CML leukapheresis products can be enriched for CD34 + cells and simultaneously depleted of CD15 + cells using a simple Ab cocktail

Linda Richmond; Michael J. Alcorn; Charles Pearson; G Cameron; T Thomas; Connie J. Eaves; Allen C. Eaves; Tessa L. Holyoake

BACKGROUNDnCML progenitor-cell studies would be greatly facilitated if samples could be repeatedly accessed from a source of well-characterized cells. The present study was designed to develop a simple, inexpensive Ab cocktail that would provide subpopulations of cells enriched for CD34+ cells and simultaneously depleted of CD15+ mature myeloid cells.nnnMETHODSnCells from leukapheresis products from CML patients at diagnosis were incubated with each of two Ab cocktails. The standard cocktail (debulking, DB), containing 11 Abs, is recommended for obtaining a highly enriched population of CD34+ cells. The efficacy of an alternative, simpler cocktail (CML custom, CC), containing only four Abs was tested. The recoveries of CD34+ cells, CD15+ cells, colony-forming unit granulocyte-macrophage, and LTCIC were monitored. The samples were then cryopreserved, thawed, and the recoveries remeasured.nnnRESULTSnThe purity of CD34+ cells was significantly superior using the DB cocktail than with the CC cocktail. Conversely, using the CC cocktail, the yield of CD34+ cells was significantly higher compared to the DB cocktail. These results were maintained even when the amount of Ab was reduced 10-fold. Both Ab cocktails consistently removed > 99% of the CD15+ cells. Consistent with the CD34+ cell-enrichment data, higher colony-forming cell (CFC) frequencies were obtained with the DB cocktail, although superior yields of CFC were obtained with the CC cocktail. After cryopreservation and thawing the yield of CD34+ cells remained high, and a further reduction in the number of CD15+ cells was obtained.nnnDISCUSSIONnA method is described that allows the rapid and efficient debulking of large CML samples. This strategy will provide a source of well-characterized CML stem/progenitor cells that can be repeatedly accessed.


Blood | 1992

Characterization of primitive hematopoietic cells in normal human peripheral blood

C Udomsakdi; Peter M. Lansdorp; Donna E. Hogge; Ds Reid; Allen C. Eaves; Connie J. Eaves


Blood | 1998

MCP-1, not MIP-1α, is the endogenous chemokine that cooperates with TGF-β to inhibit the cycling of primitive normal but not leukemic (CML) progenitors in long-term human marrow cultures

Johanne Cashman; Connie J. Eaves; A.H. Sarris; Allen C. Eaves


Blood | 1989

Isolation in a single step of a highly enriched murine hematopoietic stem cell population with competitive long-term repopulating ability

Sj Szilvassy; Peter M. Lansdorp; R.K. Humphries; Allen C. Eaves; Connie J. Eaves


Blood | 1999

Differentiation stage-specific regulation of primitive human hematopoietic progenitor cycling by exogenous and endogenous inhibitors in an in vivo model.

Johanne Cashman; Ian Clark-Lewis; Allen C. Eaves; Connie J. Eaves


Blood | 1994

The Tetrapeptide AcSDKP Specifically Blocks the Cycling of Primitive Normal But Not Leukemic Progenitors in Long-Term Culture: Evidence for an Indirect Mechanism

Johanne Cashman; Allen C. Eaves; Connie J. Eaves


Blood | 1992

Phenotypic heterogeneity of primitive leukemic hematopoietic cells in patients with chronic myeloid leukemia.

C Udomsakdi; Connie J. Eaves; Peter M. Lansdorp; Allen C. Eaves


Blood | 1983

Individual BFU-E in polycythemia vera produce both erythropoietin dependent and independent progeny

Johanne Cashman; D Henkelman; K Humphries; Connie J. Eaves; Allen C. Eaves


Blood | 1988

Molecular analysis of clonality and bcr rearrangements in Philadelphia chromosome-positive acute lymphoblastic leukemia

Ali G. Turhan; Connie J. Eaves; Dagmar K. Kalousek; Allen C. Eaves; Rk Humphries


Blood | 2006

Chronic Myeloid Leukemia Stem Cells Possess Unique Properties That Predict Intrinsic and Acquired Resistance to Imatinib Mesylate.

Xiaoyan Jiang; Yun Zhao; Clayton A. Smith; Maura Gasparetto; Kyi Min Saw; Ali G. Turhan; Allen C. Eaves; Connie Eaves

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Connie J. Eaves

University of British Columbia

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Johanne Cashman

University of British Columbia

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Eibhlin Conneally

University of British Columbia

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Kyi Min Saw

University of Poitiers

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