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M Linker-Israeli

Publications and source records attributed to M Linker-Israeli.

At least 19 recordsLinked to original sources

Peptides from antibodies to DNA elicit cytokine release from peripheral blood mononuclear cells of patients with systemic lupus erythematosus: relation of cytokine pattern to disease duration.

Peptides from VH regions of antibodies to DNA drive immune responses in systemic lupus erythematosus (SLE). We studied peptide-induced cytokine release by peripheral blood mononuclear cells (PBMC) of patients, the influence of peptide concentration, disease characteristics and HLA-D haplotypes. Cells secreting cytokines (IFNgamma, IL-2, IL-4 and IL-10) were measured by ELISPOT in PBMC from 31 patients with SLE and 20 matched healthy controls in response to seven peptides (A-G) from the CDR1/FR2 to CDR2/FR3 VH regions of human anti-DNA MAbs. Disease activity was assessed by SELENA-SLEDAI. HLA-DR and -DQ alleles were determined by molecular typing techniques. PBMC from significantly higher proportions of SLE patients than controls responded to VH peptides by generating IFNgamma and IL-10. Type of cytokines released in response to at least one peptide (D) depended on antigen concentration. Cytokine release was not associated with clinical features of SLE except for disease duration. A shift occurred from IFNgamma, IL-4 and IL-10 production in early disease to IL-4 and IL-10 in late disease (suggesting increasing TH2-like responses over time). Three peptides (B, D, G) were more stimulatory in the SLE patients than controls. Although none of the peptides was restricted by any particular MHC class II allele, among responders there was increased prevalence of HLA- DQB1*0201 and/or DRB1*0301, alleles known to predispose to SLE. Thus, responses to some VH peptides are more frequent in SLE and vary with disease duration. Increased responses in individuals with HLA class II genotypes that predispose to SLE suggest that peptide presentation by those molecules permits brisker peripheral blood cell responses to autoantibody peptides, thus increasing risk for disease.

Amino Acid Sequence↗

Vitamin D(3) and its synthetic analogs inhibit the spontaneous in vitro immunoglobulin production by SLE-derived PBMC.

The production of high-affinity pathogenic autoantibodies in systemic lupus erythematosus (SLE) may result from aberrant immune regulation. Since 1,25 dihydroxy vitamin D(3) (1,25 D(3)) has immunoregulatory activity, we examined effects of 1,25 D(3) and its analogs HM, V, MC1288, and KH1060 on autoantibody production and proliferation of SLE PBMC. We found, in SLE, a higher percentage of T, B, and NK expressing vitamin D(3) receptors (VDRs) (P = 0.034, 0.006, 0.012, respectively). Incubating SLE PBMC with 1,25 D(3) compounds significantly reduced proliferation, polyclonal and anti-dsDNA IgG production, and the percentages of CD3(+)/DR(+) T and B (CD19(+)) cells, while elevating NK (CD16(+)) cells (P < 0.001). 1,25 D(3) analogs were more potent than the natural compound: KH1060 up-regulated CD14 expression by SLE monocytes (P < 0.001), inhibited polyclonal and anti-dsDNA IgG production by SLE-derived B lymphoblasts, and induced apoptosis of activated B lymphoblasts. These data suggest that 1,25 D(3) compounds can offer novel approaches to the clinical management of SLE.

Antibodies, Antinuclear↗

Telomere shortening and decreased replicative potential, contrasted by continued proliferation of telomerase-positive CD8+CD28(lo) T cells in patients with systemic lupus erythematosus.

To evaluate whether the immune system of systemic lupus erythematosus (SLE) patients shows features of premature aging, we compared telomere length and proliferative potential of SLE peripheral blood mononuclear cells (PBMC) (N = 90) to those of controls (N = 64). SLE samples showed accelerated loss of telomeric DNA (P = 0.00008) and higher levels of senescent (< or =5 kb) telomeric DNA (P = 0.00003). Viability cell counts and CFSE tracking in 6-week-old cell cultures indicated that SLE PBMC (CD8+ and CD4+ T cells) underwent fewer mitotic cycles and had shorter telomeres than controls (P = 0.04). However, a CD8(+)CD28(lo) T cell subset expanded preferentially in SLE-derived bulk cultures (P = 0.0009), preserved telomeric DNA (P = 0.01 vs entire CD8+), and displayed telomerase activity [2.1 telomerase arbitrary units (TAU) vs 0.5 TAU in CD8+CD28(hi) cells and 0.3 TAU in bulk PBMC; P = 0.05]. These T cell anomalies could be due to chronic in vivo stimulation of the immune system and may contribute to the immune dysregulation found in SLE.

Adult↗

Cytokines play an aetiopathogenetic role in fibromyalgia: a hypothesis and pilot study.

OBJECTIVE: To measure soluble factors having a possible role in fibromyalgia (FM) and compare the profiles of patients with recent onset of the syndrome with patients with chronic FM. METHODS: The production of cytokines, cytokine-related molecules, and a CXC chemokine, interleukin (IL)-8, was examined. Fifty-six patients with FM (23 with <2 yr and 33 with >2 yr of symptoms) were compared with age- and sex-matched healthy controls. Cytokines and cytokine-related molecules were measured in sera and in supernatants of peripheral blood mononuclear cells (PBMC) that were incubated with and without lectins and phorbol myristate acetate (PMA). RESULTS: No differences between FMS and controls were found by measuring IL-1beta, IL-2, IL-10, serum IL-2 receptor (sIL-2R), interferon gamma (IFN-gamma), and tumour necrosis factor alpha (TNF-alpha). Levels of IL-1R antibody (IL-1Ra) and IL-8 were significantly higher in sera, and IL-1Ra and IL-6 were significantly higher in stimulated and unstimulated FM PBMC compared with controls. Serum IL-6 levels were comparable to those in controls, but were elevated in supernatants of in vitro-activated PBMC derived from patients with >2 yr of symptoms. In the presence of PMA, there were additional increases in IL-1Ra, IL-8 and IL-6 over control values. CONCLUSIONS: In patients with FM we found increases over time in serum levels and/or PBMC-stimulated activity of soluble factors whose release is stimulated by substance P. Because IL-8 promotes sympathetic pain and IL-6 induces hyperalgesia, fatigue and depression, it is hypothesized that they may play a role in modulating FM symptoms.

Cytokines↗

Exogenous IL-10 and IL-4 down-regulate IL-6 production by SLE-derived PBMC.

The elevated expression of IL-6 and IL-10 may have an important role in SLE pathogenesis. IL-6 production by normal monocytes can be inhibited by IL-10, and it has been suggested that SLE monocytes are refractory to this negative signal. To examine this possibility, the effects of regulatory factors on IL-6 expression by SLE PBMC (N = 51) were compared to effects on control PBMC (N = 21). We found that (1) exogenous rIL-10 and rIL-4 mediated reduction of constitutive and lectin-induced IL-6 in monocytes of SLE patients as effectively as that of controls; (2) IL-6 mRNA decay was significantly delayed in SLE with active disease (P < 0.001); (3) adding rIL-10 or neutralizing endogenous IL-1 beta and TNF-alpha down-regulated IL-6 mainly by destabilizing IL-6 transcripts, whereas exogenous IL-4 and TGF beta 1 down-regulated IL-6 transcriptionally; (4) time kinetics and levels of IL-10 were lower than those of IL-6 and IL-1 beta. Thus, contrary to a previous report, IL-6 production by SLE PBMC responds normally to regulatory signals, and the IL-6 overexpression in SLE may be due, at least in part, to the kinetics and availability of regulatory cytokines.

Adult↗

Association of IL-6 gene alleles with systemic lupus erythematosus (SLE) and with elevated IL-6 expression.

To evaluate the association of alleles of regions having regulatory potential in the IL-6 gene, with SLE, the AT-rich minisatellite in the 3' flanking region and the 5' promoter-enhancer of the IL-6 gene were genotyped by PCR- and RFLP-based methods. The AT-rich minisatellite allele distribution pattern was significantly different in SLE (n = 146) as compared to 139 controls (chi 2(7) = 48.97, P = 0.001, Caucasians; and chi 2(7) = 19.93, P = 0.006, African-Americans). In either race, short allele sizes (< or = 792 bp) were seen exclusively in SLE patients (P = 0.001), whereas the 828-bp allele was over-represented in controls (P = 0.015 and 0.002). In contrast, there was no preferential association of SLE with G/C alleles in the 5' region of the IL-6 gene. Furthermore, our results suggest that the 3' minisatellite alleles have biological significance: (1) B lymphoblastoid cells of patients having one or two SLE-associated alleles secreted IL-6 in 3- to 4-fold higher levels than non-allelic cells (P < 0.05); (2) higher percentages (approximately 4-fold) of IL-6 positive monocytes were observed in individuals having SLE-associated IL-6 alleles; (3) in lupus patients having SLE-associated minisatellite alleles, IL-6 mRNA stability was significantly enhanced.

Adult↗

Therapeutic Concentrations of Heparin Augment Platelet Activation at the Time of Coronary Angiography.

Background: Besides its anticoagulant effects, heparin is known to alter platelet (PLT) function. We examined the effects of unfractionated heparin on PLT function in patients with stable coronary artery disease (CAD). Methods and Results: PLT function was evaluated by whole-blood flow cytometry to detect PLT CD62 expression and by impedance aggregometry to assess the platelet aggregation (PA) before and after bolus intravenous administration of low-dose heparin (2713 +/- 1231 U) in 16 patients undergoing coronary angiography (group 1) and high-dose heparin (7937 +/- 2414 U) in 16 patients undergoing coronary angioplasty (group 2). Activated clotting time (ACT) and plasma antifactor-Xa heparin levels also were measured. Heparin increased PLT CD62 expression, which was significantly more pronounced in group 1 patients with plasma heparin levels less than 0.7 U/mL and ACT of 222 +/- 52 seconds compared with group 2 patients with heparin levels greater than 0.7 U/mL and ACT of 365 +/- 86 seconds (8 +/- 9 v -1 +/- 4% change in resulting PLTs, P =.01, and 11 +/- 12 v 1 +/- 6% increase in adenosine diphosphate (ADP) [5 µM]-stimulated PLTs, P =.02). Heparin produced a slight increase in PA in group 1 patients (1.4 +/- 5.3 ohms) as compared with the group 2 patients, where it significantly suppressed PA (-3.0 +/- 5.3 ohms, P.05 v group 1). A strong and statistically significant negative correlation between change in platelet CD62 expression and heparin concentration was observed in group 1 patients (r = -.5, P =.05, -ADP; r = -.65, P =.006, +ADP), whereas this relationship was weak and did not reach statistical significance in group 2 patients (r = -0.4, P =.2, -ADP; r =.11, P = 0.9; +ADP). Conclusion: Bolus administration of intravenous heparin augmented PLT activation in patients at clinically relevant anticoagulant concentrations (<0.7 U/mL). These findings may have implications for optimal dosing strategy for heparin as an antithrombotic agent in clinical situations characterized by platelet-dependent thrombotic events.

Journal Article↗

Synergistic decrease of clonal proliferation, induction of differentiation, and apoptosis of acute promyelocytic leukemia cells after combined treatment with novel 20-epi vitamin D3 analogs and 9-cis retinoic acid.

Patients with acute promyelocytic leukemia (APL) usually relapse after all-trans retinoic acid (RA) treatment because this therapy fails to eradicate the malignant clone. Our data showed that KH 1060 and other 20-epi vitamin D3 analogs alone were potent inhibitors of clonal growth of NB4 cells, an APL cell line (ED50, approximately 5 x 10(-11) M). The combination of KH 1060 and 9-cis-RA synergistically and irreversibly enhanced this effect. Neither KH 1060 nor 9-cis-RA (10(-6) M, 3 d) were strong inducers of differentiation of NB4 cells. However, 98% of the cells underwent differentiation to a mature phenotype with features of both granulocytes and monocytes after exposure to a combination of both compounds. Apoptosis only increased after incubation of NB4 cells with 9-cis-RA alone (28%) or with a combination of 9-cis-RA plus KH1060 (32%). Immunohistochemistry showed that the bcl-2 protein decreased from nearly 100% of the wild-type NB4 cells to 2% after incubation with a combination of KH 1060 and 9-cis-RA, and the bax protein increased from 50% of wild-type NB4 cells to 92% after culture with both analogs (5 x 10(-7) M, 3 d). Western blot analysis paralleled these results. Studies of APL cells from one untreated individual paralleled our results with NB4 cells. Taken together, the data demonstrated that nearly all of the NB4 cells can be irreversibly induced to differentiate terminally when exposed to the combination of KH 1060 and 9-cis-RA.

Antigens, Differentiation↗

Combination of a potent 20-epi-vitamin D3 analogue (KH 1060) with 9-cis-retinoic acid irreversibly inhibits clonal growth, decreases bcl-2 expression, and induces apoptosis in HL-60 leukemic cells.

All-trans retinoic acid (RA) is the first highly effective differentiation-inducing agent for remission induction in patients with acute promyelocytic leukemia. However, remissions are short-lived because the treatment fails to induce complete differentiation and fails to eradicate the malignant clone. To eliminate rapidly the malignant clone, in analogy with aggressive chemotherapy, the combination of potent differentiation- and apoptosis-inducing drugs working through different receptors and signal pathways may be useful. The active form of vitamin D3 (1,25-dihydroxyvitamin D3; 1,25(OH)2D3) inhibits proliferation and induces differentiation of myeloid leukemic cells. The 9-cis-RA, unlike all-trans-RA which binds only retinoic acid receptors, is a high affinity ligand for both retinoic acid receptors and retinoid X receptors. The aim of this study was to evaluate the therapeutic potential of combining a vitamin D(3) analogue, 20-epi-22-oxa-24a,26a,27a-tri-homo-1alpha,25(OH) 2D, (KH 1060), which belongs to the family of potent 20-epi-1,25(OH),D3 analogues, with 9-cis-RA by assessing their effects on the proliferation, differentiation, and apoptosis of the human leukemia cell line HL-60 in vitro. Our data show that KH 1060 alone is a very potent inhibitor of clonal proliferation of HL-60, but this effect is reversible, and that 9-cis-RA alone is a weak inhibitor of clonal proliferation of HL-60 cells. In contrast, the combination of KH 1060 and 9-cis-RA synergistically and irreversibly inhibited the clonal proliferation of HL-60 cells and induced apoptosis, as detected by morphological changes and DNA fragmentation. This combination also affected the expression of apoptosis-related genes. The bcl-2 protein became nearly undetectable, and expression of bax protein increased slightly (the bax:bcl-2 ratio was 14-fold higher than in untreated cells). Differentiation of treated HL-60 cells was assessed by their ability to produce superoxide, as measured by reduction of nitro blue tetrazolium, positive staining for alpha-naphthyl acetate esterase, phagocytosis, morphology, and analysis of membrane-bound differentiation markers with two-color immunofluorescence. Treatment with the combination of KH 1060 and 9-cis-RA was a potent inducer of differentiation of HL-60, with the cells developing a myelomonocytic phenotype. In summary, our data demonstrate that the combination of both KH 1060 and 9-cis-RA irreversibly and synergistically inhibited clonal growth, induced differentiation and apoptosis of HL-60 cells concomitantly with a very marked decreased expression of bcl-2, and increased the bax:bcl-2 ratio. This drug combination may have important therapeutic significance.

Antigens, Surface↗

A greater variability in the 3' flanking region of the IL-6 gene in patients with systemic lupus erythematosus (SLE).

The causes of the aberrant constitutive expression of cytokines in SLE have not been elucidated yet, but alterations in cytokine gene structure could be a contributing factor. By RFLP (Restriction Fragment Length Polymorphism) analysis of genomic DNA, we found a higher incidence of allelic, higher MW XbaI bands in the IL-6 genes of 9/57 SLE patients vs 1/36 unrelated controls (p = 0.05) HLA DR/DQ typing of the polymorphic patients revealed they were all DQ beta 6. The study of one family indicated that the XbaI polymorphic patient and her polymorphic unaffected offspring had higher than normal levels of constitutive IL-6 mRNA. The SLE-associated IL-6 XbaI restriction alleles had duplications of AT-repeat sequences, approximately 500 bp downstream of the 2nd polyadenylation site, in an AT-rich mini-satellite with similarities to Matrix Associated Regions (MARs), that may be important in DNA replication and in gene expression. These are novel observations that suggest that, in SLE, there is increased variability in the 3' flanking region of the IL-6 gene. This variability may be related to the aberrant IL-6 expression that was reported by us and others in this disease.

Deoxyribonucleases, Type II Site-Specific↗

20-epi-vitamin D3 analogues: a novel class of potent inhibitors of proliferation and inducers of differentiation of human breast cancer cell lines.

We have studied the in vitro biological activities and mechanism of action of 1,25-dihydroxyvitamin D3 (1,25D3) and four potent 1,25D3 analogues [20-epi-22oxa-24a,26a,27a-tri-homo-1,25(OH)2D3 (KH 1060); 20-epi-1,25(OH)2D3; 1,25(OH)2-16ene-D3; and 1,25(OH)2-16ene-23yne-D3] on proliferation and differentiation of estrogen receptor-negative (MDA-MB-436, BT-20, SK-BR-3, and MDA-MB-231), estrogen receptor-weakly positive (BT474), and estrogen receptor-positive (MCF-7) breast cancer cell lines. Dose-response studies showed that KH 1060 was the most potent analogue, because it was able to induce differentiation in all seven breast cancer cell lines (measured by lipid staining) and to suppress more than 50% clonal proliferation (ED50) at 10(-10) M in all cell lines, except MDA-MB-436 and BT-20. To explore how these compounds mediated antiproliferative actions, their effects on the cell cycle, on expression of bcl-2 and p53, and on apoptosis were assessed. Five of six cell lines have a mutant p53 gene, whereas MCF-7 has wild-type p53. Immunohistochemical staining showed that the p53 protein was predominantly localized in the nucleus in each of the breast cancer cell lines except for MCF-7, which expressed the protein predominantly in the cytoplasm. After incubation with KH 1060 (3 days; 10(-7) M), expression of bcl-2 protein as determined by immunohistochemical localization was markedly decreased in BT-474, MCF-7, and MDA-MB-231; these same cells were profoundly inhibited in their clonal proliferation and arrested in the G0/G1 phase of the cell cycle when cultured with KH 1060. In contrast, BT-20 and MDA-MB-436 cells that were refractory to the antiproliferative effect of KH 1060 (ED50 < 10(-6) M) had no down-regulation of their bcl-2 expression and no cell cycle changes after exposure to KH 1060. MCF-7 showed morphological changes and DNA fragmentation, indicative of apoptosis after 48 h incubation with KH 1060 (10(-6) M), during which time p53 protein accumulated in the nucleus and decreased in the cytoplasm. In contrast, no apoptosis was detected in three other breast lines (MDA-MB-231, SK-BR-3, and BT-474) that had a mutated p53. In conclusion, the data indicate that KH 1060 is an extremely potent 1,25D3 analogue inducing differentiation of all six breast cancer lines and potently inhibiting clonal growth of four of them with concomitant decreased bcl-2 and cell cycle arrest at G0/G1.(ABSTRACT TRUNCATED AT 400 WORDS)

Apoptosis↗

Elevated in vivo and in vitro secretion of CD8-alpha molecules in patients with systemic lupus erythematosus.

Endogenously activated CD8+ cells contribute to the aberrant immune regulation that characterizes SLE. Because stimulation of CD8+ cells with lectin/Ag triggers release of CD8-alpha molecules (sCD8), we measured, in patients with SLE, serum sCD8 content, its correlation with disease activity, and the in vitro release of sCD8 by SLE PBMCs. sCD8 levels, measured by ELISA in sera of 50 SLE patients, were higher than normal in 16 out of 21 mildly active and 15 out of 15 active SLE patients. sCD8 correlated positively with the clinical index for disease activity (r = 0.57, p = 0.001) and with sIL-2R levels (r = 0.52, p < 0.0001), and negatively with serum C3 levels (r = -0.5, p < 0.04). Freshly isolated SLE PBMCs had higher than normal CD8-alpha mRNA levels and secreted high levels of sCD8 in vitro (p < 0.05 vs control PBMC). sCD8 in vitro release by SLE PBMCs may be modulated by non-CD8+ cells. Thus, anti-CD2 mAb inhibited sCD8 release, whereas anti-HLA mAb increased it in unseparated PBMCs, but not in CD8+ enriched cultures. Moreover, sCD8 release increased significantly in PBMC cultures enriched for CD8+ DR+ cells by negative selection. Added-back monocytes decreased sCD8 to original levels, but not after glutaraldehyde fixation, nor in the presence of anti-HLA mAb. Further, lectin-induced IgG production and proliferation were reduced in the presence of sCD8, suggesting that the soluble CD8 molecules may be immunoregulatory. Because the high sCD8 levels in sera of active SLE likely reflect pathogenic cell activation, serum CD8 content may be an additional serologic activity marker, and its study could provide insights into mechanisms of disease.

CD8 Antigens↗

Inhibition of interphotoreceptor retinoid-binding protein-induced uveitis by monoclonal antibodies.

Immunization of Lewis rats with interphotoreceptor retinoid-binding protein (IRBP) resulted in development of uveoretinitis in 100% (12/12) of the animals so injected. In the present study, we attempted immunotherapy of this intraocular inflammation using the monoclonal antibodies anti-I-A and anti-I-E. The antibodies were injected 1 day before and on days 1 and 2 after IRBP sensitization, and the animals were killed 16 days later. Anti-I-A treatment inhibited the disease in 83% (10/12) of the animals, while anti-I-E antibodies resulted in inhibition of the disease in 67% (8/12) of the animals. All rats injected with preimmune IgG (control animals) developed uveoretinitis. The anti-I-A and anti-I-E antibodies exerted a specific suppressor effect on the immune response of these animals. Thus, anti-I-A and anti-I-E antibodies administered at the time of antigen priming abolished the immune function and inhibited the development of autoimmune uveitis.

Animals↗

The relevance of antimalarial therapy with regard to thrombosis, hypercholesterolemia and cytokines in SLE.

Hydroxychloroquine has several less well-known actions that may have clinical relevance in treating systemic lupus erythematosus (SLE). (1) Hydroxychloroquine has a possible anti-thrombotic action. It is a platelet inhibitor and appears to decrease the risk of thromboembolism in patients with anticardiolipin antibodies. (2) Hydroxychloroquine is associated with lower serum cholesterol and low-density lipoprotein levels compared to those present in patients who are taking corticosteroids but not antimalarials for SLE. (3) It may also decrease abnormal levels of cytokines. Interleukin-6 (IL-6), soluble CD8 and soluble IL-2 receptors (sIL-2R) are lower in patients taking antimalarials compared to those on corticosteroids alone or on neither medication. Serum levels of CD8 and sIL-2R decrease after 6 weeks of hydroxychloroquine treatment. These findings may help explain the favorable response of SLE patients treated with antimalarials.

Animals↗

Antigen-specific suppressor cells in experimental autoimmune uveitis.

Anti-I-A antibodies, administered in vivo at the time of S-antigen injection, suppress development of experimental autoimmune uveitis (EAU) in Lewis rats. While the effects of anti-I-A are profound, the exact mechanism for this suppression is unknown. We attempted adoptive transfer of this form of suppression by injecting lymphocytes from anti-I-A-treated animals into syngeneic recipients which were later injected with S-antigen. Histologically, globes of 75% of the anti-I-A-treated animals showed no inflammation while 25% of these animals developed mild uveitis. In the group of animals which were injected with S-antigen and also received spleen cells from anti-I-A-treated rats, only 1 showed mild uveitis while the remaining 7 had no inflammation. The animals undergoing adoptive transfer of spleen cells and which were primed with an irrelevant antigen, readily developed uveitis. Suppression of S-antigen-induced EAU was abrogated by pretreatment of donor animals with cyclophosphamide. In vitro studies revealed that spleen cells of S-antigen-primed, anti-I-A-treated donors specifically suppressed lymphocyte responses to S-antigen. These in vivo and in vitro results suggest that generation of antigen-specific suppressor cells play a role in the anti-I-A immunotherapy of EAU.

Animals↗