Clonal lymphoproliferation of T cell large granular lymphocytes with pleomorphic nuclei following mantle cell lymphoma

2013 ◽  
Vol 97 (2) ◽  
pp. 294-296
Author(s):  
Chien-Liang Lin ◽  
Yen-Chuan Hsieh ◽  
Sheng-Tsung Chang ◽  
Shih-Sung Chuang
2021 ◽  
Vol 161 ◽  
pp. S894-S895
Author(s):  
N. Figura ◽  
A. Sim ◽  
S. Dahiya ◽  
F. Lutfi ◽  
A. Rapoport ◽  
...  

2020 ◽  
Vol 217 (9) ◽  
Author(s):  
Matthew J. Frank ◽  
Michael S. Khodadoust ◽  
Debra K. Czerwinski ◽  
Ole A.W. Haabeth ◽  
Michael P. Chu ◽  
...  

Here, we report on the results of a phase I/II trial (NCT00490529) for patients with mantle cell lymphoma who, having achieved remission after immunochemotherapy, were vaccinated with irradiated, CpG-activated tumor cells. Subsequently, vaccine-primed lymphocytes were collected and reinfused after a standard autologous stem cell transplantation (ASCT). The primary endpoint was detection of minimal residual disease (MRD) within 1 yr after ASCT at the previously validated threshold of ≥1 malignant cell per 10,000 leukocyte equivalents. Of 45 evaluable patients, 40 (89%) were found to be MRD negative, and the MRD-positive patients experienced early subsequent relapse. The vaccination induced antitumor CD8 T cell immune responses in 40% of patients, and these were associated with favorable clinical outcomes. Patients with high tumor PD-L1 expression after in vitro exposure to CpG had inferior outcomes. Vaccination with CpG-stimulated autologous tumor cells followed by the adoptive transfer of vaccine-primed lymphocytes after ASCT is feasible and safe.


2019 ◽  
Vol 46 (7) ◽  
pp. 538-541 ◽  
Author(s):  
Caroline Laggis ◽  
Rodney Miles ◽  
Deborah M. Stephens ◽  
Keith Duffy ◽  
Anneli Bowen ◽  
...  

2021 ◽  
Vol 27 (3) ◽  
pp. S421-S422
Author(s):  
Edward Robert Scheffer Cliff ◽  
Thomas Eliot Lew ◽  
Piers Blombery ◽  
Michael Dickinson ◽  
Constantine S. Tam ◽  
...  

Blood ◽  
2007 ◽  
Vol 110 (11) ◽  
pp. 2591-2591
Author(s):  
Joshua D. Brody ◽  
Linhong Li ◽  
Stephanie Feller ◽  
Joseph Fratantoni ◽  
Ronald Levy

Abstract Mantle cell lymphoma (MCL) is an aggressive non-Hodgkin’s lymphoma with the worst long-term prognosis of any NHL subtype. Current therapeutic options are unsatisfactory. MCL patients’ malignant B cells are ineffective antigen-presenting cells (APCs), perhaps resulting from low level expression of the immune co-stimulatory molecules that are essential to activate T cells upon interaction with the T-cell receptor. The MCL cells can be engineered to be effective APCs and thereby function as a therapeutic cellular vaccine in combination with chemotherapy and/or stem cell transplantation to eradicate residual disease. However, primary MCL cells are difficult targets for gene transfer by both viral and non-viral methodologies. Ligation of CD40 resulting from co-culturing with hCD40L expressing murine fibroblasts was shown to be superior to a panel of other immune stimulants and cytokines in upregulating co-stimulatory markers and inducing anti-tumor T cell responses (Hoogendoorn et al. 2005). We now report on a technology platform, based on electroporation of mRNA for CD40L, for the introduction of CD40L protein expression and subsequent induction of immune co-stimulatory molecules by MCL tumor cells. Primary MCL malignant B cells were obtained from patients’ lymph node biopsies by mechanical dissociation, placed in single cell suspension and cryopreserved prior to modification. Full-length 5′-end capped hCD40L mRNA transcript was generated by in vitro transcription with a commercially available T7 polymerase kit. The transfected MCL cells were immunostained with fluorophore-conjugated monoclonal antibodies against hCD40L, hCD80 and 86 then analyzed by FACS. Data showed hCD40L could be detected in ≥ 80% of the transfected MCL cells as early as 2 hrs post transfection. At 3 days post manipulation, hDC40L expression could be detected on approximately 30% of the transfected MCL cells. Cell viability remained at approximately 80% during the 3 day in vitro culturing. FACS analysis of the immune co-stimulatory molecules revealed that forced expression of hCD40L caused an up-regulation of CD80/86, which was increased approximately 10 fold compared to the expression levels in naïve, non modified cells. The increased expression level of CD80/86 was maintained for 3 days. Furthermore, when the hCD40L modified MCL cells were mixed with allogeneic PBMC, they stimulated IFN-γ production at a level 4 fold higher than was observed with naïve, non modified MCL cells mixed with allogeneic PBMC. This provides proof-of-concept that MCL cells modified by mRNA-hCD40L transfection have the potential to be used as a cellular vaccine. Such transduced cells function to protect animals from tumor challenge. The process can be scaled up to produce >2×1010 modified tumor cells. This simple, non-viral cell manipulation system is practical and will be a useful tool for immunotherapy of human hematopoietic malignancies such as MCL.


Blood ◽  
2011 ◽  
Vol 118 (21) ◽  
pp. 3690-3690
Author(s):  
Sonal Temburni ◽  
Ryon M. Andersen ◽  
Steven L. Allen ◽  
Jaqueline C. Barrientos ◽  
Jonathan E. Kolitz ◽  
...  

Abstract Abstract 3690 Mantle cell lymphoma (MCL), a less common non-Hodgkin's lymphoma (NHL), often has a poor prognosis and a median survival time of 3–5 years. Historically, MCLs were believed to originate from mature but naive B cells; this notion has now changed based on the demonstration of somatically mutated IgHV sequences in the lymphoma cells from a subset of cases. Indirect evidence suggesting that the B-cell receptor (BCR) pathway may be at the base of the observed activation in the disease exists; however, that extent that this activation results from Toll-like receptor (TLR), B-cell antigen receptor (BCR), or a combination of signaling from both has not been adequately addressed. In this study, the responsiveness of purified primary B cells isolated from peripheral blood (PB) and/or bone marrow (BM) of MCL patients in the leukemic phase of the disease to triggering via the BCR or via TLR-9 alone or in context with selected chemokines – CCL17, CCL22, or CXCL12 - was assessed using various early and late cell signaling readouts. Phosphoflow analysis revealed that within 5 minutes of stimulation both PB and BM B cells significantly increased levels of pAkt and pNFkB in response to BCR crosslinking by an anti-IgM monoclonal antibody (mAb). When PB B cells were cultured for 3 days in the presence of various stimuli to evaluate their proliferative response (uptake of 3H-thymidine), anti-BCR triggering stimulated 2 to 5.5 fold increases in DNA synthesis, whereas the TLR-9 agonist ODN2006 elicited 55 to 235 fold increases. In addition, conditions simulating T-cell help (anti-CD40 mAb + IL-4 in the presence of CD32-transfected fibroblasts) stimulated significant (40–65 fold) proliferative responses in MCL B cells. Simultaneously, a significant increase in HLA-DR (anti-BCR: 49%; ODN2006: 61%; T-cell help: 20%) and Bcl-2 expression (anti-BCR: 21%; ODN2006: 36%; T-cell help: 25%) was induced by these stimuli. Furthermore, B cells from the BM of the same cases differed in their proliferative responses based on the agonist. Thus, in response to BCR triggering, B cells from BM proliferated to a greater extent compared with PB B cells, whereas in response to TLR-9 stimulation PB B cells proliferated to a greater extent than those from BM. In independent experiments, B cells were incubated with various stimuli including those simulating T-cell help and chemokines for 3 days. Cells were harvested and extracts prepared from viable cells to determine telomerase activity using the telomere repeat amplification protocol (TRAP). Anti-BCR stimulation and anti-TLR-9 stimulation independently increased telomerase activity 1.7 and 1.9 fold, respectively, whereas in combination with CCL17 and CCL22, anti-TLR-9 stimulation further increased telomerase activity to 2.28 and 2.36 fold, respectively. In summary, these findings suggest an important role for commonly encountered microenvironmental influences interacting with TLR9 and to a lesser extent the BCR in promoting the aggressiveness of MCL. They also suggest that responses to these stimuli differ between MCL cells residing in the BM and those circulating in the blood. Finally, the data suggest that ligands for CCR4 may play an enhancing role for signals transduced by the BCR and TLR-9 in this disease. If documented in a larger number of cases, treatment regimens that target these signaling pathways might be of therapeutic value. Disclosures: No relevant conflicts of interest to declare.


2012 ◽  
Vol 61 (10) ◽  
pp. 1819-1832 ◽  
Author(s):  
Corey M. Munger ◽  
Ganapati V. Hegde ◽  
Dennis D. Weisenburger ◽  
Julie M. Vose ◽  
Shantaram S. Joshi

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