Proliferation of B Cells from Chronic Lymphocytic Leukemia Is Selectively Promoted by B Cell Growth Factor

1989 ◽  
Vol 81 (2) ◽  
pp. 91-97 ◽  
Author(s):  
Melchor Alvarez-Mon ◽  
Antonio de la Hera ◽  
Maria Luisa Gaspar ◽  
Alberto Orfao ◽  
Juan Casas ◽  
...  
1988 ◽  
Vol 85 (6) ◽  
pp. 1897-1901 ◽  
Author(s):  
J. A. Ledbetter ◽  
P. S. Rabinovitch ◽  
C. H. June ◽  
C. W. Song ◽  
E. A. Clark ◽  
...  

Blood ◽  
1987 ◽  
Vol 70 (4) ◽  
pp. 1105-1110
Author(s):  
S Karray ◽  
H Merle-Beral ◽  
A Vazquez ◽  
JP Gerard ◽  
P Debre ◽  
...  

We studied the effects of B cell directed growth factors on B lymphocytes from 11 patients with chronic lymphocytic leukemia (B-CLL). B-CLL lymphocytes were costimulated with anti-mu antibody (Ab) and with three growth factor preparations: recombinant IL2, B cell growth factor (BCGF) (20 kiloDalton (kD) BCGF) and a high molecular weight BCGF (50 kD BCGF). IL2 was the more active factor (in six of 11 patients). The effect of IL2 was dependent on a costimulation with anti-mu Ab or occurred independently of anti-mu Ab, according to the patients. This pattern of reactivity did not correlate with the presence or absence of the IL2 receptor (IL2-R) molecule on fresh B-CLL lymphocytes. Five patients responded to the 20 kD BCGF. Although four of them were also strong responders to IL2, one strongly responded to the 20 kD BCGF and did not respond to IL2. Only one patient responded to the 50 kD BCGF. When an anti-IL2-R Ab was introduced into the culture, only the responsiveness to IL2 was abolished: thus both 20 kD and 50 kD BCGFs activate B-CLL lymphocytes independently of the IL2-R. These results show that several B cell directed growth factors can act independently to support the proliferation of B-CLL lymphocytes.


Blood ◽  
1997 ◽  
Vol 89 (3) ◽  
pp. 941-947 ◽  
Author(s):  
Raymond S. Douglas ◽  
Renold J. Capocasale ◽  
Roberta J. Lamb ◽  
Peter C. Nowell ◽  
Jonni S. Moore

Abstract Chronic lymphocytic leukemia (CLL) is the most common leukemia of the western world and is characterized by a slowly progressing accumulation of clonal CD5+ B cells. Our laboratory has investigated the role of transforming growth factor-β (TGF-β) and interleukin-4 (IL-4) in the pathogenesis of B-cell expansion in CLL. In vitro addition of TGF-β did not increase spontaneous apoptosis of B cells from most CLL patients, as determined using the TUNEL method, compared with a twofold increase observed in cultures of normal B cells. There was similar expression of TGF-β type II receptors on both CLL B cells and normal B cells. In contrast to apoptosis, CLL B-cell proliferation was variably inhibited with addition of TGF-β. In vitro addition of IL-4, previously reported to promote CLL B-cell survival, dramatically reduced spontaneous apoptosis of CLL B cells compared with normal B cells. CLL B-cell expression of IL-4 receptors was increased compared to normal B cells. Thus, our results show aberrant apoptotic responses of CLL B cells to TGF-β and IL-4, perhaps contributing to the relative expansion of the neoplastic clone.


1988 ◽  
Vol 21 (3) ◽  
pp. 155-164
Author(s):  
Wayne M. Yokoyama ◽  
Millie M. Chien ◽  
Susan E. Engardt ◽  
Susan W. Aguiar ◽  
Robert F. Ashman

Blood ◽  
2021 ◽  
Vol 138 (Supplement 1) ◽  
pp. 1186-1186
Author(s):  
Alexandria P Eiken ◽  
Audrey L Smith ◽  
Sarbjit Singh ◽  
Sandeep Rana ◽  
Sunandini Sharma ◽  
...  

Abstract Introduction: Chronic lymphocytic leukemia (CLL) is an incurable, heterogenetic disease dependent on B cell receptor (BCR) signaling with subsequent nuclear factor-kappa B (NF-κB) activation resulting in the evasion of apoptosis and enhanced malignant B cell growth. Targeted therapies such as ibrutinib (IBR; BTK inhibitor) and venetoclax (VEN; BCL2 antagonist) have revolutionized the management of CLL, however ~20% of patients relapse, signifying the urgent need for novel therapeutics for CLL patients especially those with refractory/relapse (ref/rel) disease. Additionally, various tumor microenvironment (TME) stimuli fuel CLL growth and contribute to drug resistance through the activation of numerous signaling pathways (BCR, CD40R, TLR, BAFFR) and consequential sustained NF-κB activation. Currently, there are no FDA approved drugs that effectively target the NF-κB protein family. Herein we introduce 36-286 (N3), a novel spirocyclic dimer which displays NF-κB inhibitory activity and elicits potent anti-leukemic properties. N3 is a dimer of a spirocyclic α-methylene-γ-butyrolactone analog that covalently binds to surface exposed cysteine residues on NF-κB proteins (IKKβ and P65) (Rana S et al, 2016). Our study aims to investigate N3's mode of action (MOA) and to establish its anti-leukemic effects in CLL including drug-resistant disease, thereby introducing a novel therapeutic option for rel/ref disease. Methods: Cell growth via MTS proliferation assay was determined following treatment with N3 (0.125 - 2 μM) in a panel of malignant B cell lines [CLL (HG3, MEC1, OSUCLL), diffuse large B cell lymphoma (Pfeiffer, RC, RIVA), mantle cell lymphoma (Jeko1)], and in patient derived CLL cells stimulated with CpG ODN 2006 (CpG; 3.2 μM). Viability testing of normal B cells isolated from healthy donors was conducted following N3 treatment. Anti-tumor properties of N3 (1 - 2 μM; 4h) in the HG3 and OSUCLL cell lines were further confirmed under conditions mimicking different TME stimuli such as α-IgM (10 μg/mL), CD40L (100 ng/mL), BAFF (50 ng/mL) or CpG (3.2 μM). Protein expression of oncogenic MYC, select NF-κB pathway proteins (IKKα, IKKβ, P65, IκBα, RelB) and the anti-apoptotic protein MCL1 was determined following treatment with N3 (0.25 - 2 μM; 4h) by immunoblot (IB). Next, we induced IBR resistance in HG3 cells by prolonged exposure to increasing IBR concentrations (~10-15 fold its IC 50 in parental cells). Cell proliferation via MTS was determined following treatment with N3 on these resistant cells. To gain insight on the potential MOA of N3 in CLL, we adapted a proteomics-based approach (TMT labeled mass spectrometry) and conducted RNA-seq in OSUCLL cells treated with N3 (1 - 2 μM) for up to 24 h. Subsequent pathway analysis was performed to identify the top factors modulated by N3. Results: N3 showed remarkable efficacy (IC 50 < 0.6 μM) across all the malignant B cell lines evaluated while sparing normal B cells. In CpG stimulated primary CLL, N3 resulted in marked anti-leukemic effects (0.125 μM) comparable to IBR (1 μM). N3 induced cell apoptosis in CLL cell lines in a dose-dependent manner with marked PARP cleavage. Furthermore, our IB analyses of N3 treated CLL cell lines showed reduced levels of NF-κB pathway proteins, MYC and MCL1. Notably, N3 was effective in reducing levels of the above-mentioned proteins in the presence of the various TME stimuli. Strikingly, N3 maintained its cytotoxic effects in ibrutinib resistant HG3 cells. Studies to confirm N3's cytotoxicity in VEN resistant CLL cells are ongoing. Top ten pathways from both proteomics and RNA-seq analyses revealed an upregulation of the unfolded protein response (UPR) and inhibition of cap-dependent protein translation. IB analyses of select factors related to UPR (CHOP, XBP1, PERK, IRE1) and protein translation (eIF2α, 4E-BP1, PDCD4) in N3 treated CLL cells validated our omics' findings. Efforts to identify the proteome wide direct targets of N3 in CLL cells are currently underway. Conclusion: N3 is a novel pre-therapeutic lead that targets multiple survival and proliferation pathways through the inhibition of NF-κB activity and upregulation of UPR. We show that its highly cytotoxic in tumor B cells while sparing normal B cells. Moreover, N3 sustained its anti-tumor properties under different TME stimuli and in IBR resistant cells, indicating the potential use of this compound in rel/ref patients following evaluation in murine CLL models. Disclosures No relevant conflicts of interest to declare.


Blood ◽  
1990 ◽  
Vol 76 (8) ◽  
pp. 1601-1606 ◽  
Author(s):  
CS Chan ◽  
F Soehnlen ◽  
GP Schechter

Abstract We examined in vitro tritiated thymidine uptake by B cells from seven prolymphocytic leukemia (PLL), seven chronic lymphocytic leukemia (CLL), and four plasma cell leukemia (PCL) patients in response to culture with anti-human IgM antibody (anti-mu) and B-cell growth factor (BCGF). In contrast to the stimulatory effect observed in normal B-cell cultures, the divalent F(ab')2 anti-mu antibody uniquely inhibited the autonomous proliferation and induced marked cytotoxicity in six of seven PLL cell cultures independent of complement or Fc-receptor- mediated mechanisms. There was neither stimulation or inhibition of the slgM+ CLL or the slgM- PCL cells. The inhibitory effect on the PLL cells was observed at an anti-mu concentration below the stimulatory threshold for normal B cells. Significant impairment of trypan blue exclusion was delayed until 48 hours, with morphological cellular changes suggestive of a programmed cell death mechanism or apoptosis. The cytotoxicity was independent of the slgM-staining intensity or the autonomous and BCGF-augmented DNA synthetic activity of the PLL cells and was similar in patients with de novo PLL or with prolymphocytic transformation of CLL. Cells from a PLL patient were separated by elutriation into two fractions, a BCGF-unresponsive large “transformed” cell fraction with marked autonomous DNA synthesis and a smaller lymphoid cell subset with low 3H-thymidine uptake that could be augmented by BCGF. Both fractions were equally susceptible to the cytotoxic effect of anti-mu. These data suggest that certain slgM- bearing malignant B cells are susceptible to anti-mu-triggered cytotoxicity. They may represent the malignant counterpart of a “tolerogenic” normal B-cell subset, and the unique direct cytotoxicity of anti-mu may provide a therapeutic strategy specifically for PLL.


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