New treatments for multiple sclerosis (MS) focused on B cells have created an atmosphere of excitement in the MS community. B cells are now known to play a major role in disease, demonstrated by the highly impactful effect of a B cell-depleting antibody on controlling MS. The idea that a virus may play a role in the development of MS has a long history and is supported mostly by studies demonstrating a link between B cell-tropic Epstein-Barr virus (EBV) and disease onset. Efforts to develop antiviral strategies for treating MS are underway. Although gaps remain in our understanding of the etiology of MS, the role, if any, of viruses in propagating pathogenic immune responses deserves attention.
BackgroundSoluble triggering receptor expressed on myeloid cells-2 (sTREM-2) is a marker of macrophage and microglial activation and is increased in the cerebrospinal fluid (CSF) in multiple sclerosis (MS).ObjectiveTo determine the relationships among sTREM-2, T cell activation, neuroaxonal damage and clinical features of MS.MethodsEnzyme-linked immunosorbent assays were used to measure the levels of sTREM-2, soluble CD27 (sCD27, a marker of T cell activation), neurofilament light chain (NfL) and phosphorylated neurofilament heavy chain (pNfH) in the CSF of 42 patients with MS (including nine with clinically isolated syndrome) and 15 patients with other neurological diseases (OND) and in the serum of 164 patients with MS, 87 patients with OND and 62 healthy controls.ResultssTREM-2 was significantly elevated in the CSF ( p = 0.012), but not in the serum, in MS compared to OND. In MS, CSF sTREM-2 correlated positively with CSF sCD27 ( p = 0.005), CSF NfL ( p = 0.0001), CSF pNfH ( p = 0.0006), Expanded Disability Status Scale (EDSS) score ( p = 0.0079) and MS Severity Score (MSSS) ( p = 0.0006).ConclusionIn MS the level of sTREM-2 in the CSF is related to measures of T cell activation (sCD27), neuroaxonal damage (NfL and pNfH), disability (EDSS) and disease severity (MSSS).
Bipolar disorder (BD) is a chronic disease characterised by episodes of major depression and episodes of mania or hypomania, with a worldwide prevalence of 2.4%. The cause of BD is unknown. Here, I propose the hypothesis that BD is a chronic autoimmune disease caused by Epstein-Barr virus (EBV) infection of autoreactive B cells. It is postulated that EBV-infected autoreactive B cells accumulate in the brain where they provide costimulatory survival signals to autoreactive T cells and differentiate into plasma cells producing pathogenic autoantibodies targeting brain components such as the N-methyl-D-aspartate receptor. It is also proposed that the accumulation of EBV-infected autoreactive B cells in the brain is a consequence of a genetically determined defect in the ability of CD8+ T cells to control EBV infection. The theory is supported by studies indicating that autoimmunity, EBV infection and CD8+ T-cell deficiency all have roles in the pathogenesis of BD. According to the hypothesis, BD should be able to be treated by EBV-specific T-cell therapy and to be prevented by vaccination against EBV in early childhood. Exposure to sunlight or appropriate artificial light should also be beneficial in BD by augmenting CD8+ T-cell control of EBV infection.
The most prominent pathological features of multiple sclerosis (MS) are demyelination and neurodegeneration. The exact pathogenesis of MS is unknown, but it is generally regarded as a T cell-mediated autoimmune disease. Increasing evidence, however, suggests that other components of the immune system, particularly B cells and antibodies, contribute to the cumulative CNS damage and worsening disability that characterize the disease course in many patients. We have previously described strongly elevated T cell reactivity to an extracellular domain of the most abundant CNS myelin protein, myelin proteolipid protein (PLP) in people with MS. The current paper addresses the question of whether this region of PLP is also a target of autoantibodies in MS. Here we show that serum levels of isotype-switched anti-PLP181-230 specific antibodies are significantly elevated in patients with MS compared to healthy individuals and patients with other neurological diseases. These anti-PLP181-230 antibodies can also live-label PLP-transfected cells, confirming that they can recognize native PLP expressed at the cell surface. Importantly, the antibodies are only elevated in patients who carry HLA molecules that allow strong T cell responses to PLP. In that subgroup of patients, there is a positive correlation between the levels of anti-PLP181-230 antibodies and the severity of MS. These results demonstrate that anti-PLP antibodies have potentially important roles to play in the pathogenesis of MS.
NF-κB signaling pathways are dysregulated in both the central nervous system (CNS) and peripheral blood cells in multiple sclerosis (MS), but the cause of this is unknown. We have recently reported that peripheral blood mononuclear cells (PBMC) of patients with MS have increased constitutive activation and translocation of the transcription factor NF-κB to the nucleus compared to healthy subjects. NF-κB can be activated through either canonical or non-canonical pathways. In the canonical pathway, activation of NF-κB is normally negatively regulated by the inhibitor IκB. We therefore hypothesized that the increased activation of NF-κB could be caused by reduced IκB-α in the cells of patients with MS, possibly due to increased activity of the IκB kinase (IKK) complex, which regulates IκB-α. Alternatively, changes to the activity of key molecules in the non-canonical pathway, such as IKKα, could also lead to increased NF-κB activation. We therefore used Western blotting to detect IκB-α levels and ELISA to investigate NF-κB DNA binding activity and phosphorylation of IKKα and IKKβ in samples from PBMC of MS patients and controls. The level of full-length IκB-α protein in the cytosolic fraction of PBMC of MS patients was significantly reduced compared to healthy subjects, with significantly more evidence of multiple low molecular weight putative degradation products of IκB-α present in MS patients compared to healthy subjects. Conversely, the level of NF-κB DNA binding activity was increased in whole cell lysates from MS patients. Both IKKα and IKKβ showed increased overall activity in MS compared to healthy subjects, although not all of the MS patients showed increased activity compared to the healthy subjects, suggesting that there may be several different mechanisms underlying the constitutive activation of NF-κB in MS. Taken together, these findings suggest that there may be multiple points at which the NF-κB pathway is dysregulated in MS and that decreased levels of the full-length IκB-α protein are a major component in this.
Background and aims: Epidemiological and serological evidence suggest EBV infection is associated with MS pathogenesis. Previously, we showed that treatment with an autologous EBV-targeted T-cell immunotherapy in 10 patients with progressive MS may prevent MS progression and improve clinical symptoms. This study evaluates safety and feasibility of monotherapy with pre-manufactured, unrelated donor (off-the-shelf, allogeneic) EBV-targeted T-cells (ATA188) for adults with progressive MS. Methods: A phase 1 multicentre, open-label, single-arm, 2-population, dose-escalation study enrolled EBVseropositive adults with primary/secondary progressive MS (NCT03283826). Cohorts 1-4 receive 5.0x106, 1.0x107, 2.0x107, and 4.0x107 cells, respectively, on days 1, 8, and 15 in 2 cycles. Plasma inflammatory biomarkers (IL-2, IL-1β, TNF-α, IL-6) are monitored throughout treatment. Results: By 7 January 2019, 6 participants in cohort 1 (mean age: 58.2 years; 50% female) and 6 participants in cohort 2 (mean age: 56.7 years; 83% female) have received ≥1 dose. No dose-limiting toxicities or serious or grade ≥3 treatment-emergent adverse events (TEAEs) were reported. TEAEs occurred in 58% (7/12) participants (4/6 in cohort 1 and 3/6 in cohort 2); all TEAEs were grade 1 (17%) or grade 2 (42%). Most common TEAEs (n=2) were rhinorrhoea, fall, contusion, and headache. Two participants reported possibly-related grade 2 TEAEs. In cohort 1, 3 participants experienced upper respiratory infection symptoms, with 2 developing symptoms 2-5 months after treatment. Inflammatory cytokines remained at or near baseline throughout treatment. Conclusion: Initial safety data indicate ATA188 is well tolerated by adults with progressive MS and support proceeding with the study and identification of recommended phase 2 dose. Disclosure: This study was supported by Atara Biotherapeutics
Introduction: Evidence suggests Epstein-Barr virus (EBV) infection is associated with multiple sclerosis pathogenesis. In patients (pt) with progressive forms of MS (pMS), autologous EBV-specific T cells may prevent progression and improve symptoms (Pender, et al. JCI Insight. 2018). Objectives: To evaluate ATA188, an off-the-shelf, allogeneic, EBV-targeted T cell immunotherapy comprised of HLA-matched, in vitro-expanded, cytotoxic T lymphocytes in a first-in-human, multicenter, 2-part study in adults with pMS (NCT03283826). Preliminary data are reported. Methods: Eligible pt (age 18–< 66) are EBV-seropositive with pMS and an Expanded Disability Status Scale (EDSS) score of 3–7. Cohorts (cht) 1–4 (6–9 pt/cht) receive escalating doses of ATA188. 1° endpoints: safety and identification of the recommended phase 2 dose (RP2D) of ATA188. Efficacy criteria: EDSS, MS Impact Scale-29, Fatigue Severity Scale, and 12-Item MS Walking Scale scores; timed 25-foot walk; 9-hole Peg Test; and visual acuity. A responder (R) has sustained ⩾ minimal clinically significant (MCS) improvement from BL in 2 consecutive evaluations on ⩾2 efficacy criteria; a partial responder (PR) has ⩾ MCS improvement from baseline (BL) in any 1 evaluation on ⩾2 efficacy criteria; and a non-responder (NR) has ⩾ MCS decline from BL in any 1 evaluation on ⩾2 efficacy criteria (if both criteria are met, pt is NR). Plasma inflammatory biomarkers (IL-2, IL-1β, TNF-α, IL-6) are monitored throughout treatment. Results: As of 27 May 2019, 19 pt (53% male; median age, 56 years) have enrolled (6 in each of cht 1–3; 1 in cht 4) and received ⩾1 dose of ATA188. Treatment-emergent AEs (TEAE) occurred in 63% (12/19) pt and treatment-related AEs (TRAE) in 37% (7/19) pt; 1 pt (cht 2) had a grade ⩾ 3 TEAE, and 1 (cht 4) had a serious TRAE. No dose-limiting toxicities or fatal TEAE have been reported. Efficacy data are available for cht 1 and 2: cht 1, 1 R, 1 PR, and 4 NR at 6 months and 1 R, 0 PR, and 1 NR at 12 months; cht 2, 2 R, 4 PR, and 0 NR at 6 months. On measures of disability, 3/6 showed improvement and 3/6 showed decline in cht 1; 4/6 showed improvement and 1/6 showed decline in cht 2. Inflammatory cytokines remained at or near baseline. Conclusion: Preliminary data indicate ATA188 is well tolerated and improves efficacy measures in adults with pMS, even at lower doses. These results support continuing part 1 to identify RP2D for part 2, (randomized, double-blind, placebo-controlled portion).
BACKGROUND Increasing evidence indicates a role for EBV in the pathogenesis of multiple sclerosis (MS). EBV-infected autoreactive B cells might accumulate in the CNS because of defective cytotoxic CD8+ T cell immunity. We sought to determine the feasibility and safety of treating progressive MS patients with autologous EBV-specific T cell therapy. METHODS An open-label phase I trial was designed to treat 5 patients with secondary progressive MS and 5 patients with primary progressive MS with 4 escalating doses of in vitro-expanded autologous EBV-specific T cells targeting EBV nuclear antigen 1, latent membrane protein 1 (LMP1), and LMP2A. Following adoptive immunotherapy, we monitored the patients for safety and clinical responses. RESULTS Of the 13 recruited participants, 10 received the full course of T cell therapy. There were no serious adverse events. Seven patients showed improvement, with 6 experiencing both symptomatic and objective neurological improvement, together with a reduction in fatigue, improved quality of life, and, in 3 patients, reduced intrathecal IgG production. All 6 patients receiving T cells with strong EBV reactivity showed clinical improvement, whereas only 1 of the 4 patients receiving T cells with weak EBV reactivity showed improvement (P = 0.033, Fisher's exact test). CONCLUSION EBV-specific adoptive T cell therapy was well tolerated. Clinical improvement following treatment was associated with the potency of EBV-specific reactivity of the administered T cells. Further clinical trials are warranted to determine the efficacy of EBV-specific T cell therapy in MS. TRIAL REGISTRATION Australian New Zealand Clinical Trials Registry, ACTRN12615000422527. FUNDING MS Queensland, MS Research Australia, Perpetual Trustee Company Ltd., and donations from private individuals who wish to remain anonymous.
The NF-κB signalling pathway plays an important role in controlling cellular immune responses, inflammation and apoptosis. In multiple sclerosis (MS), there is evidence of dysregulation of NF-κB signalling in patients with a relapsing-remitting disease course, but thus far there is little information on whether it is also dysregulated in patients with progressive disease. We hypothesised that patients with progressive MS would have more activation of NF-κB than relapsing-remitting MS patients. Using several different methods, we showed that there was more nuclear translocation of p65 in cells from progressive MS patients, particularly in T cells and monocytes. In addition, the amount of p65 translocated to the nucleus in cells of patients with progressive MS was not increased upon non-specific activation of the cells with the mitogen Con A. These results suggest that NF-κB dysregulation occurs in patients with progressive MS patients, as well as those with relapsing-remitting MS.
April 27, 2018April 10, 2018Free AccessAntibodies specific for myelin proteolipid protein can inhibit remyelination in vivo. (S52.001)Bridget Bagert, Judith Greer, Hannah Savage, Shannon Beasley, Gracy Juba, and Michael PenderAuthors Info & AffiliationsApril 10, 2018 issue90 (15_supplement)https://doi.org/10.1212/WNL.90.15_supplement.S52.001 Letters to the Editor
PLP1 is located on the X-chromosome and encodes myelin proteolipid protein (PLP), the most abundant protein in central nervous system myelin. Generally, point mutations in PLP1 result in X-linked dysmyelinating disorders, such as Pelizaeus-Merzbacher disease (PMD) or spastic paraplegia type 2 (SPG2). However, several case studies have identified patients with missense point mutations in PLP1 and clinical symptoms and signs compatible with a diagnosis of multiple sclerosis (MS). To investigate if PLP1 mutations occur relatively frequently in MS, we sequenced the coding regions of PLP1 in 22 female MS patients who had developed disease after the age of 40 and in 42 healthy women, and identified a missense mutation in exon 2 of PLP1 resulting in a Leu30Val mutation in the protein in one of the MS patients. mCherry-tagged plasmids containing wild type or mutant PLP1 sequences of PLP, including two known PMD/SPG2-related mutations as positive controls, were constructed and transfected into Cos-7 cells. In comparison with cells transfected with wild type PLP1, all mutations caused significant accumulation of PLP in the endoplasmic reticulum of the cells and induction of the unfolded protein response—a mechanism that leads to apoptosis of cells expressing mutant proteins. Additionally, in silico analysis of the binding of peptides containing the Leu30Val mutation to the human leukocyte antigen (HLA) molecules carried by the patient harboring this mutation suggested that the mutation could produce several novel immunogenic epitopes in this patient. These results support the idea that mutations in myelin-related genes could contribute to the development of MS in a small proportion of patients.
Background: Transition probabilities are the engine within many health economics decision models. However, the probabilities of progression of disability due to multiple sclerosis (MS) have not previously been estimated in Australia. Objectives: To estimate annual probabilities of changing disability levels in Australians with relapsing-remitting MS (RRMS). Methods: Combining data from Ausimmune/Ausimmune Longitudinal (2003–2011) and Tasmanian MS Longitudinal (2002–2005) studies ( n = 330), annual transition probabilities were obtained between no/mild (Expanded Disability Status Scale (EDSS) levels 0–3.5), moderate (EDSS 4–6.0) and severe (EDSS 6.5–9.5) disability. Results: From no/mild disability, 6.4% (95% confidence interval (CI): 4.7–8.4) and 0.1% (0.0–0.2) progressed to moderate and severe disability annually, respectively. From moderate disability, 6.9% (1.0–11.4) improved (to no/mild state) and 2.6% (1.1–4.5) worsened. From severe disability, 0.0% improved to moderate and no/mild disability. Male sex, age at onset, longer disease duration, not using immunotherapies greater than 3 months and a history of relapse were related to higher probabilities of worsening. Conclusion: We have estimated probabilities of changing disability levels in Australians with RRMS. Probabilities differed between various subgroups, but due to small sample sizes, results should be interpreted with caution. Our findings will be helpful in predicting long-term disease outcomes and in health economic evaluations of MS.
As of June 2009, 361 genome-wide association studies (GWAS) had been referenced by the HuGE database(1). GWAS require DNA from many thousands of individuals, relying on suitable DNA collections. We recently performed a Multiple Sclerosis (MS) GWAS where a substantial component of the cases (24 %) had DNA derived from saliva. Genotyping was performed on the Illumina genotyping platform using the Infinium Hap370CNV DUO microarray. Additionally we genotyped ten individuals in duplicate using both saliva and blood derived DNA. The performance of blood versus saliva derived DNA was compared using genotyping call rate, which reflects both the quantity and quality of genotyping per sample, and the ‘GCScore’, an Illumina genotyping quality score, which is a measure of DNA quality. We also compared genotype calls and GCScores for the 10 sample pairs. Call rates were assessed for each sample individually. For the GWAS samples we compared data according to source of DNA and centre of origin. We observed high concordance in genotyping quality and quantity between the paired samples, and minimal loss of quality and quantity of DNA in the saliva samples in the large GWAS sample with the blood samples showing greater variation between centres of origin. This large dataset highlights the usefulness of saliva DNA for genotyping, especially in high-density SNP microarray studies such as GWAS.
Mounting evidence indicates that infection with Epstein–Barr virus (EBV) has a major role in the pathogenesis of multiple sclerosis (MS). Defective elimination of EBV-infected B cells by CD8+ T cells might cause MS by allowing EBV-infected autoreactive B cells to accumulate in the brain. Here we undertake a comprehensive analysis of the T-cell response to EBV in MS, using flow cytometry and intracellular IFN-γ staining to measure T-cell responses to EBV-infected autologous lymphoblastoid cell lines and pools of human leukocyte antigen (HLA)-class-I-restricted peptides from EBV lytic or latent proteins and cytomegalovirus (CMV), in 95 patients and 56 EBV-seropositive healthy subjects. In 20 HLA-A2+ healthy subjects and 20 HLA-A2+ patients we also analysed CD8+ T cells specific for individual peptides, measured by binding to HLA-peptide complexes and production of IFN-γ, TNF-α and IL-2. We found a decreased CD8+ T-cell response to EBV lytic, but not CMV lytic, antigens at the onset of MS and at all subsequent disease stages. CD8+ T cells directed against EBV latent antigens were increased but had reduced cytokine polyfunctionality indicating T-cell exhaustion. During attacks the EBV-specific CD4+ and CD8+ T-cell populations expanded, with increased functionality of latent-specific CD8+ T cells. With increasing disease duration, EBV-specific CD4+ and CD8+ T cells progressively declined, consistent with T-cell exhaustion. The anti-EBNA1 IgG titre correlated inversely with the EBV-specific CD8+ T-cell frequency. We postulate that defective CD8+ T-cell control of EBV reactivation leads to an expanded population of latently infected cells, including autoreactive B cells.
Background: There is substantial evidence that stress increases multiple sclerosis disease activity, but limited evidence on its association with the onset of multiple sclerosis. Objective: To examine the association between stressful life events and risk of first demyelinating event (FDE). Methods: This was a multicentre incident case–control study. Cases ( n = 282 with first diagnosis of central nervous system (CNS) demyelination, including n = 216 with ‘classic FDE’) were aged 18–59 years. Controls without CNS demyelination ( n = 558) were matched to cases on age, sex and study region. Stressful life events were assessed using a questionnaire based on the Social Readjustment Rating Scale. Results: Those who suffered from a serious illness in the previous 12 months were more likely to have an FDE (odds ratio (OR) = 2.35 (1.36, 4.06), p = 0.002), and when we limited our reference group to those who had no stressful life events, the magnitude of effect became stronger (OR = 5.41 (1.80, 16.28)). The total stress number and stress load were not convincingly associated with the risk of an FDE. Conclusion: Cases were more likely to report a serious illness in the previous 12 months, which could suggest that a non-specific illness provides an additional strain to an already predisposed immune system.