Elevated Normal Immunoglobulins and Stable M-Protein Levels in Multiple Myeloma Patients on Erythropoietin Treatment.

Blood ◽  
2007 ◽  
Vol 110 (11) ◽  
pp. 4747-4747
Author(s):  
Noa Gadassi ◽  
Sari Prutchi Sagiv ◽  
Howard S. Oster ◽  
Drorit Newmann ◽  
Moshe Mittelman

Abstract Recombinant human erythropoietin (rHuEPO) is a well-known treatment for anemia in multiple myeloma (MM) patients. We have previously reported that rHuEPO treatment was associated with prolonged survival of several patients suffering from advanced disease (Mittelman et al., 1997). Recently we have demonstrated that treatment of MM patients with rHuEPO is associated with significant improvements of certain immunological parameters and functions (Prutchi-Sagiv et al., 2006), mainly related to the cellular compartment. The objective of the present retrospective study was to determine whether rHuEPO treatment, in addition to its effects on the cellular immune compartment, also modulates the humoral arm of the immune system in MM patients. Medical charts of eighteen consecutive IgG and IgA MM patients were analyzed and the levels of normal immunoglobulins (Ig) and M-protein before and during rHuEPO treatment were recorded. We have found a significant increase in the levels of normal Ig (IgG, IgA and IgM) in response to rHuEPO, during the 3–9 months fromtreatment initiation. Importantly, the levels of M-protein remained stable for a period of 10–12 months from treatment initiation. These results are in line with previous studies, including our study in murine models (Katz et al., 2007), demonstrating that EPO improves humoral immune responses. The current study highlights the concept that EPO’s immunomodulatory actions on MM patients might also involve the humoral compartment of the immune system.

Haematologica ◽  
2021 ◽  
Author(s):  
Kanagaraju Ponnusamy ◽  
Maria Myrsini Tzioni ◽  
Murshida Begum ◽  
Mark E Robinson ◽  
Valentina S Caputo ◽  
...  

Multiple myeloma is a malignancy of plasma cells (PC) initiated and driven by primary and secondary genetic events. Nevertheless, myeloma PC survival and proliferation might be sustained by non-genetic drivers. Z-DNA-binding protein 1 (ZBP1; also known as DAI) is an interferon-inducible, Z-nucleic acid sensor that triggers RIPK3-MLKL-mediated necroptosis in mice. ZBP1 also interacts with TBK1 and the transcription factor IRF3 but the function of this interaction is unclear, and the role of ZBP1-IRF3 axis in cancer is not known. Here we show that ZBP1 is selectively expressed in late B cell development in both human and mouse cells and it is required for optimal T-cell-dependent humoral immune responses. In myeloma PC, interaction of constitutively expressed ZBP1 with TBK1 and IRF3 results in IRF3 phosphorylation. IRF3 directly binds and activates cell cycle genes, in part through co-operation with the PC lineage-defining transcription factor IRF4, and thereby promoting myeloma cell proliferation. This generates a novel, potentially therapeutically targetable and relatively selective myeloma cell addiction to the ZBP1-IRF3 axis. Our data also show a non-canonical function of constitutive ZBP1 in human cells and expand our knowledge of the role of cellular immune sensors in cancer biology.


Author(s):  
Kanagaraju Ponnusamy ◽  
Maria Myrsini Tzioni ◽  
Murshida Begum ◽  
Mark E Robinson ◽  
Valentina S Caputo ◽  
...  

AbstractZBP1 is an inducible, non-constitutively expressed cellular nucleic acid sensor that triggers type I interferon (IFN) responses via phosphorylation and activation of the transcription factor (TF) IRF3 by TBK1. However, the role of the ZBP1-IRF3 axis in cancer is not known. Here we show that ZBP1 is selectively and constitutively expressed in late B cell development and it is required for optimal T cell-dependent humoral immune responses. In the plasma cell (PC) cancer multiple myeloma, interaction of constitutively expressed ZBP1 with TBK1 and IRF3 results in IRF3 phosphorylation. Notably, rather than IFN type I response genes, IRF3 directly activates, in part through co-operation with the PC lineage-defining TF IRF4, cell cycle genes thus promoting myeloma cell proliferation. This generates a novel, potentially therapeutically targetable and relatively selective myeloma cell addiction to the ZBP1-IRF3 axis. These data expand our knowledge of the role of cellular immune sensors in cancer biology.


eLife ◽  
2021 ◽  
Vol 10 ◽  
Author(s):  
Helen Parry ◽  
Gokhan Tut ◽  
Rachel Bruton ◽  
Sian Faustini ◽  
Christine Stephens ◽  
...  

Age is the major risk factor for mortality after SARS-CoV-2 infection and older people have received priority consideration for COVID-19 vaccination. However, vaccine responses are often suboptimal in this age group and few people over the age of 80 years were included in vaccine registration trials. We determined the serological and cellular response to spike protein in 100 people aged 80–96 years at 2 weeks after the second vaccination with the Pfizer BNT162b2 mRNA vaccine. Antibody responses were seen in every donor with high titers in 98%. Spike-specific cellular immune responses were detectable in only 63% and correlated with humoral response. Previous SARS-CoV-2 infection substantially increased antibody responses after one vaccine and antibody and cellular responses remained 28-fold and 3-fold higher, respectively, after dual vaccination. Post-vaccine sera mediated strong neutralization of live Victoria infection and although neutralization titers were reduced 14-fold against the P.1 variant first discovered in Brazil they remained largely effective. These data demonstrate that the mRNA vaccine platform delivers strong humoral immunity in people up to 96 years of age and retains broad efficacy against the P.1 variant of concern.


1999 ◽  
Vol 41 (2) ◽  
pp. 107-114 ◽  
Author(s):  
J. MEGID ◽  
M.T.S. PERAÇOLI ◽  
P.R. CURI ◽  
C.R. ZANETTI ◽  
W.H. CABRERA ◽  
...  

The cellular and humoral immune responses of mice inoculated with rabies virus and treated with the Bacillus of Calmette-Guérin, Avridine and Propionibacterium acnes were evaluated in this paper. There was a higher percentage of surviving mice in groups submitted to P. acnes treatment. Lower levels of interferon-<FONT FACE="Symbol">g</font> (IFN-<FONT FACE="Symbol">g</font>) were found in infected mice. The intra-pad inoculation test (IPI) was not effective to detect cellular immune response, contrary to the results found in MIF reaction. The survival of mice did not present correlation with the levels of antirabies serum neutralizing (SN) antibodies titers, IFN-<FONT FACE="Symbol">g</font> concentration and MIF response.


Blood ◽  
2014 ◽  
Vol 124 (21) ◽  
pp. 3379-3379 ◽  
Author(s):  
Tsuyoshi Muta ◽  
Shinsuke Iida ◽  
Kosei Matsue ◽  
Kazutaka Sunami ◽  
Jun Isoda ◽  
...  

Abstract Background: Smoldering multiple myeloma (SMM) has been defined as precursor state to symptomatic multiple myeloma (MM). Mayo Clinic demonstrated that the presence of bone marrow plasma cells (BMPC) ≥ 10% and M protein levels ≥ 3 g/dL significantly associated with early progression to symptomatic MM and the serum free-light chain (FLC) ratio of < 0.125 or 8 < was an important additional predictors of progression. PETHEMA showed that the proportion of aberrant plasma cells (aPCs) within the BMPC > 95% as assessed by flow cytometry was another important variable for progression. However, NIH demonstrated the discordance of these two risk models. The aim of this project is to develop the method to predict the symptomatic progression more definitely by simple parameters, usually available at medical practice. Methods: We employed the nation-wide retrospective study. The clinical data of SMM patients were collected from 61 medical centers in Japan and risk predictors of progression to symptomatic MM were analyzed. The diagnosis of SMM is made by the presence of the ratio of bone marrow plasma cells (BMPCs) ≥ 10% or serum M-protein levels ≥ 3 g/dL, and the absence of any myeloma derived end-organ damage. Eligible patients were aged 18 to 90 years, previously untreated, and diagnosed between 2000 and 2012. This study was approved by the institutional review board at all participating institutions. Results: Total 301 patients fulfilled the inclusion criteria. The median age was 67 years (rang 27 to 90). IgG is the major (80%) compared to IgA (15%) or Bence Jones protein (3%). Total 145 patients developed to symptomatic MM. The symptoms consisted of anemia in 66%, lytic bone lesions in 43%, and renal impairment in 10%. Both anemia and lytic bone lesions were seen in 16%. The median time to progression was 4.3 years. The cumulative incidence of progression was 30.7% at 2 years, 50.0% at 4 years, 59.8% at 6 years, and 68.6% at 8 years. Based on multivariate analysis, we firstly identify the serum beta 2-microglobulin (B2MG) levels ≥ 2.5 mg/L as a predictor for the early progression (HR 1.59; 95% CI, 1.11 to 2.29, p = 0.01), as well as the known factors: presence of both BMPC ≥ 10% and M protein levels ≥ 3 g/dL (HR 1.89; 95% CI, 1.31 to 2.73, p = 0.0007), IgA or Bence Jones type (HR:1.61; 95%CI, 1.04 to 2.49, p = 0.03), and immunoparesis (HR:1.88; 95%CI, 1.14 to 3.08, p = 0.01). FLC ratio was examined in 52 patients. A significant association with high risk of progression was observed in patients with FLC ratio of < 0.0625 or 16 < (P = 0.04), but not in those with the ratio of < 0.125 or 8 < (P = 0.09). Cytogenetic abnormality was examined with FISH in 82 patients. The cumulative incidence of progression in patients with either t(4;14), t(14;16), or del(17p) was not significantly different from those without such chromosomal aberration (P = 0.4). Notably, we firstly focused on the rate of rise of the M-protein levels over time which is referred to as the "M-protein velocity". We employed the linear regression analysis to estimate the gradient to assess the M-protein velocity of each patient. The receiver operating characteristics curve analysis showed that the M-protein velocity of 1.035 mg/dL/day was a risk-stratification cut-off point with a high specificity of 0.96 and with a moderate sensitivity of 0.60. Based on the landmark analysis, the serum B2MG levels ≥ 2.5 mg/L at diagnosis (HR 2.76; 95% CI, 1.69 to 4.51, P = 5 x 10–5) and the M-protein velocity > 1 mg/dL/day before the 18-month landmark point (HR 2.27; 95% CI, 1.30 to 3.95, P = 4 x 10–3) had independently correlated with subsequent progression to symptomatic MM. The cumulative incidence of progression of the patients with both the serum B2MG levels ≥ 2.5 mg/L at diagnosis and the M-protein velocity > 1 mg/dL/day showed 67.5% at 2 years, 75.6% at 3 years and 100% at 6.3 years after the landmark point. Conclusions: We identify the novel risk factors consisted of serum B2MG levels ≥ 2.5 mg/L and the M-protein velocity > 1 mg/dL/day for subsequent symptomatic progression. Theoretically, it is possible to emphasis that the serum B2MG levels represent the initial tumor burden of SMM and the M-protein velocity reflects the the growth rate of tumor cells. These results also suggest that the quantification of time-dependent change of measured values should be taken into consideration for the precise prediction of symptomatic progression. This study is supported by the National Cancer Center Research and Development Fund in Japan. Disclosures No relevant conflicts of interest to declare.


2002 ◽  
Vol 70 (5) ◽  
pp. 2319-2325 ◽  
Author(s):  
Kei Amemiya ◽  
Gary V. Bush ◽  
David DeShazer ◽  
David M. Waag

ABSTRACT Nonviable cell preparations of Burkholderia mallei, the causative agent of glanders, were evaluated as potential vaccine candidates in a BALB/c murine model. Three different B. mallei cell preparations plus Alhydrogel were evaluated: a heat-killed preparation, an irradiation-inactivated preparation, and a preparation of a capsule-negative mutant strain which had been irradiation inactivated. BALB/c mice were vaccinated twice with the different B. mallei preparations, and spleens and sera were collected to determine their cellular and humoral immune responses. All three bacterial cell preparations had essentially the same results in two cellular immune response assays. In a splenocyte proliferation assay, the amount of cell proliferation in response to the homologous immunogen, concanavalin A, or lipopolysaccharide was similar for all the cell preparations. Also, splenocytes from the inoculated mice expressed interleukin 2 (IL-2), gamma interferon, and small amounts of IL-4 and IL-5, and more IL-10 cytokine in the presence of the homologous antigen. When the immunoglobulin subclasses from these mice were examined, they all produced higher levels of IgG1 than IgG2a subclasses. The higher ratio of IgG1 to IgG2a was not due to the amount of the immunogen or the adjuvant (Alhydrogel) used in the BALB/c mice. The cell preparations did not protect the vaccinated mice from a live challenge (>300 50% lethal doses). Our results suggest that in BALB/c mice, a mixed T-helper-cell-like response to nonviable B. mallei is obtained, as demonstrated by a Th1- and Th2-like cytokine response and a Th2-like subclass immunoglobulin response. This may be the reason for the inability of the B. mallei cells that were examined as candidate vaccines to protect the mice from a live challenge.


2018 ◽  
Author(s):  
Susanna E. Brantley ◽  
Nathan T. Mortimer ◽  
Todd A. Schlenke

AbstractInnate immune responses depend on the action of multiple conserved signaling pathways. Pathways important for activation of humoral immune responses following microbial infection are well-characterized in the genetic model species Drosophila melanogaster, but our understanding of fly cellular immunity, and how parasites suppress it, is relatively fragmentary. Fly larvae mount a coordinated cellular immune response following infection by endoparasitoid wasps, characterized by the production of specialized blood cells called lamellocytes that form a tight capsule around wasp eggs in their hemolymph. The conserved JAK/Stat signaling pathway has been implicated in lamellocyte proliferation and is required for successful encapsulation of wasp eggs. Here we show that activity of Stat92E, the D. melanogaster Stat ortholog, is induced in the fat body and hemocytes following wasp infection. Virulent wasp species are able to suppress activation of a Stat92E activity reporter during infection, suggesting they target upstream activation of this pathway as part of their virulence strategies. Furthermore, two wasp species (Leptopilina guineaensis and Ganaspis xanthopoda) suppress phenotypes associated with gain-of-function mutations in hopscotch, the D. melanogaster JAK ortholog, showing that they inhibit JAK/Stat activity downstream of JAK. Our data demonstrate that endoparasitoid wasp virulence factors block JAK/Stat signaling to overcome fly immune defenses.


Blood ◽  
2016 ◽  
Vol 128 (22) ◽  
pp. 2127-2127 ◽  
Author(s):  
David L. Hermanson ◽  
Burton Earle Barnett ◽  
Srinivas Rengarajan ◽  
Rebecca Codde ◽  
Xinxin Wang ◽  
...  

Abstract Chimeric-antigen receptor (CAR)-T cell immunotherapies have been remarkably effective in treating acute lymphoblastic leukemia. However, current strategies generally suffer from difficult, inefficient and costly manufacturing processes, significant patient side effects and poor durability of response in some patients. Here, we report for the first time a CAR-T cell therapeutic comprising a non-immunoglobulin alternative scaffold Centyrin molecule (a "CARTyrin") manufactured with a novel non-viral piggyBacTM (PB) transposon-based system. Our lead candidate, P-BCMA-101, encodes a CARTyrin that targets the B cell maturation antigen (BCMA) for the treatment of multiple myeloma (MM) and has several unique aspects that improve upon earlier CAR-T products. First, P-BCMA-101 is manufactured using only in vitro transcribed mRNA and plasmid DNA without the need for lentivirus or g-retrovirus, resulting in time and cost savings. Importantly, PB is also safer than viral systems due to a less mutagenic insertional profile and is non-oncogenic. Furthermore, PB can efficiently deliver transgenes as large as several hundred kilobases, and, once inserted, transgenes demonstrate more stable, prolonged and higher expression when compared to those delivered by virus. Second, a mutein of the dihydrofolate reductase (DHFR) gene is included in the P-BCMA-101 transgene that can be used in combination with the non-genotoxic drug methotrexate (MTX) to provide a simple and effective method of CARTyrin+ cell enrichment and reduces variability in patient product material. Third, P-BCMA-101 incorporates a safety switch for optional depletion in vivo in case of adverse events. Lastly, the CARTyrin is comprised of a BCMA-specific Centyrin, which are based on a human tenascin fibronectin type III (FN3) consensus sequence. Centyrins have similar binding affinities to the antibody-derived single chain variable fragments (scFv), but are smaller, more thermostable and predicted to be less immunogenic. Importantly, no signs of tonic signaling leading to T cell exhaustion have been observed with CARTyrins unlike scFv-based CAR molecules, which can interact with each other on the surface causing non-specific CAR signaling. The manufacture process of P-BCMA-101 from primary human T cells is straightforward, employs no cytokines, and easily produces enough CARTyrin+ cells to treat patients. Within 18 days of electroporation of purified T cells, we demonstrate > 95% of the cell product is positive for CARTyrin expression and ready to be administered. Notably, our manufacturing process results in > 60% of CARTyrin+ T cells exhibiting a stem-cell memory phenotype (i.e. CD45RA+ CD62L+). P-BCMA-101 cells exhibit specific and robust in vitro activity against BCMA+ tumor targets, ranging from high to very low levels of BCMA, as measured by target-cell killing and CARTyrin-T cell proliferation. Importantly, proliferating P-BCMA-101 cells were highly sensitive in vitro to activation of the safety switch. Finally, we have evaluated the anti-tumor efficacy of P-BCMA-101 in a model of human MM. NSG™ mice were injected IV with 1.5x106 luciferase+ MM.1S cells, an aggressive human MM-derived cell line. After the tumor cells were allowed to grow for 21 days, animals received a single IV administration of 5x106 P-BCMA-101 cells. All untreated control animals demonstrated a marked increase in serum M-protein levels, rapid growth of tumor cells demonstrated by bioluminescent imaging (BLI), and death within four weeks. In stark contrast, 100% of animals that received P-BCMA-101 rapidly eliminated tumors within 7 days as measured by BLI and serum M-protein levels and improved survival out to at least 60 days post-treatment. P-BCMA-101 is the first-in-class of Centyrin-based CAR therapeutics. The CARTyrin, combined with our advanced manufacturing processes, represents a significant improvement over first generation, immunoglobulin-based and virally-transduced CAR-T products. P-BCMA-101 exhibited an advantageous stem-cell memory phenotype and demonstrated specific and potent anti-tumor efficacy against BCMA+ myeloma cells both in vitro and in vivo. Based on these results, we plan to initiate a phase I clinical trial of P-BCMA-101 for the treatment of patients with relapsed and/or refractory MM. Disclosures Hermanson: Poseida Therapeutics: Employment. Barnett:Poseida Therapeutics: Employment. Rengarajan:Poseida Therapeutics: Employment. Codde:Poseida Therapeutics: Employment. Wang:Poseida Therapeutics: Employment. Tan:Poseida Therapeutics: Employment. Martin:Poseida Therapeutics: Employment. Smith:Poseida Therapeutics: Employment. Osertag:Poseida Therapeutics: Employment, Equity Ownership. Shedlock:Poseida Therapeutics: Employment.


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