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Dive into the research topics where Ian McNiece is active.

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Featured researches published by Ian McNiece.


Cancer Research | 2008

Clonogenic Multiple Myeloma Progenitors, Stem Cell Properties, and Drug Resistance

William Matsui; Qiuju Wang; James P. Barber; Sarah Brennan; B. Douglas Smith; Ivan Borrello; Ian McNiece; Lan Lin; Richard F. Ambinder; Craig D. Peacock; D. Neil Watkins; Carol Ann Huff; Richard J. Jones

Many agents are active in multiple myeloma, but the majority of patients relapse. This clinical pattern suggests most cancer cells are eliminated, but cells with the clonogenic potential to mediate tumor regrowth are relatively chemoresistant. Our previous data suggested that CD138(+) multiple myeloma plasma cells cannot undergo long-term proliferation but rather arise from clonogenic CD138(neg) B cells. We compared the relative sensitivity of these distinct cell types to clinical antimyeloma agents and found that dexamethasone, lenadilomide, bortezomib, and 4-hydroxycyclophosphamide inhibited CD138(+) multiple myeloma plasma cells but had little effect on CD138(neg) precursors in vitro. We further characterized clonogenic multiple myeloma cells and stained cell lines using the Hoechst side population and Aldefluor assays. Each assay identified CD138(neg) cells suggesting that they possess high drug efflux capacity and intracellular drug detoxification activity. We also found that multiple myeloma cells expressing the memory B-cell markers CD20 and CD27 could give rise to clonogenic multiple myeloma growth in vitro and engraft immunodeficient nonobese diabetes/severe combined immunodeficient mice during both primary and secondary transplantation. Furthermore, both the side population and Aldefluor assays were capable of identifying circulating clonotypic memory B-cell populations within the peripheral blood of multiple myeloma patients. Our results suggest that circulating clonotypic B-cell populations represent multiple myeloma stem cells, and the relative drug resistance of these cells is mediated by processes that protect normal stem cells from toxic injury.


The New England Journal of Medicine | 2012

Cord-blood engraftment with ex vivo mesenchymal-cell coculture.

Marcos de Lima; Ian McNiece; Simon N. Robinson; Mark F. Munsell; Mary Eapen; Mary M. Horowitz; Amin M. Alousi; Rima M. Saliba; John McMannis; Indreshpal Kaur; Partow Kebriaei; Simrit Parmar; Uday Popat; Chitra Hosing; Richard E. Champlin; Catherine M. Bollard; Jeffrey J. Molldrem; Roy B. Jones; Yago Nieto; Borje S. Andersson; Nina Shah; Betul Oran; Laurence J.N. Cooper; Laura L. Worth; Muzaffar H. Qazilbash; Martin Korbling; Gabriela Rondon; Stefan O. Ciurea; Doyle Bosque; I. Maewal

BACKGROUND Poor engraftment due to low cell doses restricts the usefulness of umbilical-cord-blood transplantation. We hypothesized that engraftment would be improved by transplanting cord blood that was expanded ex vivo with mesenchymal stromal cells. METHODS We studied engraftment results in 31 adults with hematologic cancers who received transplants of 2 cord-blood units, 1 of which contained cord blood that was expanded ex vivo in cocultures with allogeneic mesenchymal stromal cells. The results in these patients were compared with those in 80 historical controls who received 2 units of unmanipulated cord blood. RESULTS Coculture with mesenchymal stromal cells led to an expansion of total nucleated cells by a median factor of 12.2 and of CD34+ cells by a median factor of 30.1. With transplantation of 1 unit each of expanded and unmanipulated cord blood, patients received a median of 8.34×10(7) total nucleated cells per kilogram of body weight and 1.81×10(6) CD34+ cells per kilogram--doses higher than in our previous transplantations of 2 units of unmanipulated cord blood. In patients in whom engraftment occurred, the median time to neutrophil engraftment was 15 days in the recipients of expanded cord blood, as compared with 24 days in controls who received unmanipulated cord blood only (P<0.001); the median time to platelet engraftment was 42 days and 49 days, respectively (P=0.03). On day 26, the cumulative incidence of neutrophil engraftment was 88% with expansion versus 53% without expansion (P<0.001); on day 60, the cumulative incidence of platelet engraftment was 71% and 31%, respectively (P<0.001). CONCLUSIONS Transplantation of cord-blood cells expanded with mesenchymal stromal cells appeared to be safe and effective. Expanded cord blood in combination with unmanipulated cord blood significantly improved engraftment, as compared with unmanipulated cord blood only. (Funded by the National Cancer Institute and others; ClinicalTrials.gov number, NCT00498316.).


Blood | 2014

Regulatory B cells are enriched within the IgM memory and transitional subsets in healthy donors but are deficient in chronic GVHD

Ahmad Khoder; Anushruti Sarvaria; Abdullah Alsuliman; Claude Chew; Takuya Sekine; Nichola Cooper; Stephan Mielke; Hugues de Lavallade; Muharrem Muftuoglu; Irina Fernandez Curbelo; Enli Liu; Paolo A. Muraro; Amin M. Alousi; Kate Stringaris; Simrit Parmar; Nina Shah; Hila Shaim; Eric Yvon; Jeffrey J. Molldrem; Rayne H. Rouce; Richard E. Champlin; Ian McNiece; Claudia Mauri; Elizabeth J. Shpall; Katy Rezvani

A subset of regulatory B cells (Bregs) in mice negatively regulate T-cell immune responses through the secretion of regulatory cytokines such as IL-10 and direct cell-cell contact and have been linked to experimental models of autoimmunity, inflammation, and cancer. However, the regulatory function of Bregs in human disease is much less clear. Here we demonstrate that B cells with immunoregulatory properties are enriched within both the CD19(+)IgM(+)CD27(+) memory and CD19(+)CD24(hi)CD38(hi) transitional B-cell subsets in healthy human donors. Both subsets suppressed the proliferation and interferon-γ production of CD3/CD28-stimulated autologous CD4(+) T cells in a dose-dependent manner, and both relied on IL-10 secretion as well as cell-cell contact, likely mediated through CD80 and CD86, to support their full suppressive function. Moreover, after allogeneic stem cell transplantation, Bregs from patients with chronic graft-versus-host disease (cGVHD) were less frequent and less likely to produce IL-10 than were Bregs from healthy donors and patients without cGVHD. These findings suggest that Bregs may be involved in the pathogenesis of cGVHD and support future investigation of regulatory B cell-based therapy in the treatment of this disease.


Cell Transplantation | 2007

Ex Vivo Expansion and Transplantation of Hematopoietic Stem/Progenitor Cells Supported by Mesenchymal Stem Cells from Human Umbilical Cord Blood

Guoping Huang; Zhi Jun Pan; Bing Bing Jia; Qiang Zheng; Chun Gang Xie; Jiang Hong Gu; Ian McNiece; Jinfu Wang

Human mesenchymal stem cells (MSCs) are multipotential and are detected in bone marrow (BM), adipose tissue, placenta, and umbilical cord blood (UCB). In this study, we examined the ability of UCB-derived MSCs (UCB-MSCs) to support ex vivo expansion of hematopoietic stem/progenitor cells (HSPCs) from UCB and the engraftment of expanded HSPCs in NOD/SCID mice. The result showed that UCB-MSCs supported the proliferation and differentiation of CD34+ cells in vitro. The number of expanded total nucleated cells (TNCs) in MSC-based culture was twofold higher than cultures without MSC (control cultures). UCB-MSCs increased the expansion capabilities of CD34+ cells, long-term culture-initiating cells (LTC-ICs), granulocyte-macrophage colony-forming cells (GM-CFCs), and high proliferative potential colony-forming cells (HPP-CFCs) compared to control cultures. The expanded HSPCs were transplanted into lethally irradiated NOD/SCID mice to assess the effects of expanded cells on hematopoietic recovery. The number of white blood cells (WBCs) in the peripheral blood of mice transplanted with expanded cells from both the MSC-based and control cultures returned to pretreatment levels at day 25 posttransplant and then decreased. The WBC levels returned to pretreatment levels again at days 45–55 posttransplant. The level of human CD45+ cell engraftment in primary recipients transplanted with expanded cells from the MSC-based cultures was significantly higher than recipients transplanted with cells from the control cultures. Serial transplantation demonstrated that the expanded cells could establish long-term engraftment of hematopoietic cells. UCB-MSCs similar to those derived from adult bone marrow may provide novel targets for cellular and gene therapy.


Stem Cells Translational Medicine | 2014

Concise Review: Umbilical Cord Blood Transplantation: Past, Present, and Future

Javier Munoz; Nina Shah; Katayoun Rezvani; Chitra Hosing; Catherine M. Bollard; Betul Oran; Amanda Olson; Uday Popat; Jeffrey J. Molldrem; Ian McNiece; Elizabeth J. Shpall

Allogeneic hematopoietic stem cell transplantation is an important treatment option for fit patients with poor‐risk hematological malignancies; nevertheless, the lack of available fully matched donors limits the extent of its use. Umbilical cord blood has emerged as an effective alternate source of hematopoietic stem cell support. Transplantation with cord blood allows for faster availability of frozen sample and avoids invasive procedures for donors. In addition, this procedure has demonstrated reduced relapse rates and similar overall survival when compared with unrelated allogeneic hematopoietic stem cell transplantation. The limited dose of CD34‐positive stem cells available with single‐unit cord transplantation has been addressed by the development of double‐unit cord transplantation. In combination with improved conditioning regimens, double‐unit cord transplantation has allowed for the treatment of larger children, as well as adult patients with hematological malignancies. Current excitement in the field revolves around the development of safer techniques to improve homing, engraftment, and immune reconstitution after cord blood transplantation. Here the authors review the past, present, and future of cord transplantation.


Cytotherapy | 2014

Fucosylation with fucosyltransferase VI or fucosyltransferase VII improves cord blood engraftment

Simon N. Robinson; Michael W. Thomas; Paul J. Simmons; Junjun Lu; Hong Yang; Simrit Parmar; Xiaoying Liu; Nina Shah; Beatriz Martín-Antonio; Catherine M. Bollard; Gianpietro Dotti; Barbara Savoldo; Laurence J.N. Cooper; Amer Najjar; Katayoun Rezvani; Indreshpaul Kaur; Ian McNiece; Richard E. Champlin; Leonard Miller; Patrick A. Zweidler-McKay; Elizabeth J. Shpall

BACKGROUND AIMS Advantages associated with the use of cord blood (CB) transplantation include the availability of cryopreserved units, ethnic diversity and lower incidence of graft-versus-host disease compared with bone marrow or mobilized peripheral blood. However, poor engraftment remains a major obstacle. We and others have found that ex vivo fucosylation can enhance engraftment in murine models, and now ex vivo treatment of CB with fucosyltransferase (FT) VI before transplantation is under clinical evaluation (NCT01471067). However, FTVII appears to be more relevant to hematopoietic cells and may alter acceptor substrate diversity. The present study compared the ability of FTVI and FTVII to improve the rapidity, magnitude, multi-lineage and multi-tissue engraftment of human CB hematopoietic stem and progenitor cells (HSPCs) in vivo. METHODS CD34-selected CB HSPCs were treated with recombinant FTVI, FTVII or mock control and then injected into immunodeficient mice and monitored for multi-lineage and multi-tissue engraftment. RESULTS Both FTVI and FTVII fucosylated CB CD34⁺ cells in vitro, and both led to enhanced rates and magnitudes of engraftment compared with untreated CB CD34⁺ cells in vivo. Engraftment after treatment with either FT was robust at multiple time points and in multiple tissues with similar multi-lineage potential. In contrast, only FTVII was able to fucosylate T and B lymphocytes. CONCLUSIONS Although FTVI and FTVII were found to be similarly able to fucosylate and enhance the engraftment of CB CD34⁺ cells, differences in their ability to fucosylate lymphocytes may modulate graft-versus-tumor or graft-versus-host effects and may allow further optimization of CB transplantation.


Cytotherapy | 2014

Third-party umbilical cord blood-derived regulatory T cells prevent xenogenic graft-versus-host disease.

Simrit Parmar; Xiaoying Liu; Shawndeep Tung; Simon N. Robinson; Gabriel Rodriguez; Laurence J.N. Cooper; Hui Yang; Nina Shah; Hong Yang; Marina Konopleva; Jeffery J Molldrem; Guillermo Garcia-Manero; Amer Najjar; Eric Yvon; Ian McNiece; Katy Rezvani; Barbara Savoldo; Catherine M. Bollard; Elizabeth J. Shpall

BACKGROUND AIMS Naturally occurring regulatory T cells (Treg) are emerging as a promising approach for prevention of graft-versus-host disease (GvHD), which remains an obstacle to the successful outcome of allogeneic hematopoietic stem cell transplantation. However, Treg only constitute 1-5% of total nucleated cells in cord blood (CB) (<3 × 10⁶ cells), and therefore novel methods of Treg expansion to generate clinically relevant numbers are needed. METHODS Several methodologies are currently being used for ex vivo Treg expansion. We report a new approach to expand Treg from CB and demonstrate their efficacy in vitro by blunting allogeneic mixed lymphocyte reactions and in vivo by preventing GvHD through the use of a xenogenic GvHD mouse model. RESULTS With the use of magnetic cell sorting, naturally occurring Treg were isolated from CB by the positive selection of CD25⁺ cells. These were expanded to clinically relevant numbers by use of CD3/28 co-expressing Dynabeads and interleukin (IL)-2. Ex vivo-expanded Treg were CD4⁺25⁺ FOXP3⁺127(lo) and expressed a polyclonal T-cell receptor, Vβ repertoire. When compared with conventional T-lymphocytes (CD4⁺25⁻ cells), Treg consistently showed demethylation of the FOXP3 TSDR promoter region and suppression of allogeneic proliferation responses in vitro. CONCLUSIONS In our NOD-SCID IL-2Rγ(null) xenogeneic model of GvHD, prophylactic injection of third-party, CB-derived, ex vivo-expanded Treg led to the prevention of GvHD that translated into improved GvHD score, decreased circulating inflammatory cytokines and significantly superior overall survival. This model of xenogenic GvHD can be used to study the mechanism of action of CB Treg as well as other therapeutic interventions.


Blood | 2015

Ex vivo fucosylation of third-party human regulatory T cells enhances anti–graft-versus-host disease potency in vivo

Simrit Parmar; Xiaoying Liu; Amer Najjar; Nina Shah; Hong Yang; Eric Yvon; Katy Rezvani; Ian McNiece; Patrick A. Zweidler-McKay; Leonard Miller; Steve Wolpe; Bruce R. Blazar; Elizabeth J. Shpall

Adoptive therapy with regulatory T cells (Tregs) to prevent graft-versus-host disease (GVHD) would benefit from a strategy to improve homing to the sites of inflammation. We hypothesized that adding fucose to human Tregs, forming the Sialyl Lewis X moiety on P-selectin glycoprotein ligand-1, would improve their trafficking pattern. The selectin pathway recruiter, α-1,3-fucosyltransferase-VI enzyme, significantly increased Treg surface fucosylation (66% vs 8%). In a xenogenic GVHD mouse model, fucosylated Tregs showed prolonged periods of in vivo persistence. When given at a lower dose compared with the untreated Tregs, the murine recipients of fucosylated Tregs maintained weight, had ameliorated clinical GVHD, and improved survival (70% vs 30%; P < .0001). These preclinical data indicate that fucosylated human Tregs is an effective strategy for prevention of GVHD and, as such, warrants consideration for future clinical trials.


Bone Marrow Transplantation | 2014

FOXP3 is a direct target of miR15a/16 in umbilical cord blood regulatory T cells.

X. Liu; Simon N. Robinson; Tetsuro Setoyama; Shawndeep Tung; L. D'Abundo; M. Y. Shah; Hui Yang; Eric Yvon; Nina Shah; Marina Konopleva; Guillermo Garcia-Manero; Ian McNiece; Katy Rezvani; G. A. Calin; Elizabeth J. Shpall; Simrit Parmar

Exact mechanism of action of umbilical cord blood (CB)-derived regulatory T cells (Tregs) in the prevention of GVHD remains unclear. On the basis of selective overexpression of peptidase inhibitor 16 in CB Tregs, we explored the related p53 pathway, which has been shown to negatively regulate miR15a/16 expression. Significantly lower levels of miR15a/16 were observed in CB Tregs when compared with conventional CB T cells (Tcons). In a xenogeneic GVHD mouse model, lower levels of miR15a/16 were also found in Treg recipients, which correlated with a better GVHD score. Forced overexpression of miR15a/16 in CB Tregs led to inhibition of FOXP3 and CTLA4 expression and partial reversal of Treg-mediated suppression in an allogeneic mixed lymphocyte reaction that correlated with the reversal of FOXP3 demethylation in CB Tregs. On the other hand, miR15a/16 knockdown in CB Tcons led to expression of FOXP3 and CTLA4 and suppression of allogeneic lymphocyte proliferation. Using a luciferase-based mutagenesis assay, FOXP3 was determined to be a direct target of miR15a and miR16. We propose that miR15a/16 has an important role in mediating the suppressive function of CB Tregs and these microRNAs may have a ‘toggle-switch’ function in Treg/Tcon plasticity.


Clinical Lymphoma, Myeloma & Leukemia | 2014

The Development of a Myeloablative, Reduced-Toxicity, Conditioning Regimen for Cord Blood Transplantation

Antonio Di Stasi; Borje S. Andersson; Yago Nieto; Roy B. Jones; Marcos de Lima; Chitra Hosing; Uday Popat; Partow Kebriaei; Betul Oran; Amin M. Alousi; Katayoun Rezvani; Muzaffar H. Qazilbash; Qaiser Bashir; Catherine M. Bollard; Laurence J.N. Cooper; Laura L. Worth; Priti Tewari; Ian McNiece; Kaci Willhelm; Richard E. Champlin; Elizabeth J. Shpall

Cord blood transplantation is being used with increasing frequency for patients with high-risk hematologic malignancies. Myeloablative preparative regimens provide antitumor efficacy and facilitate engraftment but are associated with higher morbidity and nonrelapse mortality rates than nonablative regimens. We evaluated 3 sequential myeloablative regimens in the cord blood transplant setting. Regimen 1 (melphalan, fludarabine, and thiotepa) produced prompt engraftment and minimal engraftment failure but was associated with a high nonrelapse mortality rate. Regimen 2 (busulfan and fludarabine) was very well tolerated but was associated with a high rate of engraftment failure and relapse. Regimen 3 (busulfan, clofarabine, fludarabine, and low-dose total body irradiation given 9 days after the chemotherapy) was associated with a low rate of engraftment failure but was logistically difficult to administer. Finally, regimen 3 that included the total body irradiation given immediately after the chemotherapy was well tolerated, with prompt engraftment and tumor control. This latter regimen appears to be effective in preliminary studies and warrants further evaluation.

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Richard E. Champlin

University of Texas MD Anderson Cancer Center

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Nina Shah

University of Texas MD Anderson Cancer Center

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Chitra Hosing

University of Texas MD Anderson Cancer Center

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Simrit Parmar

University of Texas MD Anderson Cancer Center

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Amin M. Alousi

University of Texas MD Anderson Cancer Center

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Eric Yvon

University of Texas MD Anderson Cancer Center

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Laurence J.N. Cooper

University of Texas MD Anderson Cancer Center

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Katy Rezvani

University of Texas MD Anderson Cancer Center

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Partow Kebriaei

University of Texas MD Anderson Cancer Center

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