Follicular T helper cells (Tfh cells) provide key B-cell help and are essential in germinal center formation and (auto) antibody generation. To gain more insight into their role during the earliest phase of rheumatoid arthritis (RA), we analyzed their frequencies, phenotypes, and cytokine profiles in peripheral blood and lymph node biopsies of healthy controls (HCs), autoantibody-positive individuals at risk for developing RA (RA-risk individuals), and early RA patients. Subsequently, we confirmed their presence in lymph nodes and synovial tissue of RA patients using immunofluorescence microscopy. In the blood, the frequency of Tfh cells did not differ between study groups. In lymphoid and synovial tissues, Tfh cells were localized in B-cell areas, and their frequency correlated with the frequency of CD19(+) B cells. Compared to lymphoid tissues of healthy controls, those of RA patients and RA-risk individuals showed more CD19(+) B cells, CD4(+)CXCR5(+) follicular helper T cells, and CD8(+)CXCR5(+) follicular T cells. These Tfh cells produced less IL-21 upon ex vivo stimulation. These findings suggest that Tfh cells may present a novel rationale for therapeutic targeting during the preclinical stage of RA to prevent further disease progression.
Background: HLA class II tetramers can be used for ex vivo enumeration and phenotypic characterization of antigen-specific CD4+ T cells. They are increasingly applied in settings like allergy, vaccination and autoimmune diseases. Rheumatoid arthritis (RA) is a chronic autoimmune disorder for which many autoantigens have been described. Results: Using multi-parameter flow cytometry, we developed a multi-HLA class II tetramer approach to simultaneously study several antigen specificities in RA patient samples. We focused on previously described citrullinated HLA-DRB1*04:01-restricted T cell epitopes from α-enolase, fibrinogen-b, vimentin as well as cartilage intermediate layer protein (CILP). First, we examined inter-assay variability and the sensitivity of the assay in peripheral blood from healthy donors (n=7). Next, we confirmed the robustness and sensitivity in a cohort of RA patients with repeat blood draws (n=14). We then applied our method in two different settings. We assessed lymphoid tissue from seropositive arthralgia (n=5) and early RA patients (n=5) and could demonstrate autoreactive T cells in individuals at risk of developing RA. Lastly, we studied peripheral blood from early RA patients (n=10) and found that the group of patients achieving minimum disease activity (DAS28 <2.6) at 6 months follow-up displayed a decrease in the frequency of citrulline-specific T cells. Conclusions: Our study demonstrates the development of a sensitive tetramer panel allowing simultaneous characterization of antigen-specific T cells in ex vivo patient samples including RA ‘at risk’ subjects. This multi-tetramer approach can be useful for longitudinal immune-monitoring in any disease with known HLA-restriction element and several candidate antigens.
Objectives. The exact underlying mechanism of rituximab treatment in patients with RA is poorly defined and knowledge about the effect of B cell depletion on immune cells in secondary lymphoid organs is lacking. We analysed lymphoid tissue responses to rituximab in RA patients. Methods. Fourteen RA patients received 2 x 1000 mg rituximab intravenously, and lymph node (LN) biopsies were obtained before and 4 weeks after the first infusion. Tissues were examined by flow cytometry, immunohistochemistry and quantitative PCR. LN biopsies from five healthy individuals (HC) served as controls. Results. LN biopsies of RA patients showed increased frequencies of CD21(+)CD23(+)IgD(high)IgM(variable) follicular B cells and CD3(+)CD25(+)CD69(+) early activated, tissue resident T cells when compared with HCs. After treatment, there was incomplete depletion of LN B cells. There was a significant decrease in CD27(-)IgD(+) naive B cells, and CD27(+)IgD(+)unswitched memory B cells including the CD27(+)IgD(+)IgM(+) subset and follicular B cells. Strikingly, CD27(+)IgD(-) switched memory B cells persisted in LN biopsies after rituximab treatment. In the T cell compartment, a significant decrease was observed in the frequency of early activated, tissue resident T cells after rituximab treatment, but late activated T cells persisted. B cell proliferation inducing cytokine IL-21 was higher expressed in LN biopsies of RA patients compared with HC and expression was not affected by rituximab treatment. Conclusion. Rituximab does not cure RA, possibly due to persistence of switched memory B cells in lymphoid tissues suggesting that factors promoting B cell survival and differentiation need to be additionally targeted.
Systemic autoimmunity can be present years before clinical onset of rheumatoid arthritis (RA). Adaptive immunity is initiated in lymphoid tissue where lymph node stromal cells (LNSCs) regulate immune responses through their intimate connection with leucocytes. We postulate that malfunctioning of LNSCs creates a microenvironment in which normal immune responses are not properly controlled, possibly leading to autoimmune disease. In this study we established an experimental model for studying the functional capacities of human LNSCs during RA development.
Infections are implicated in autoimmunity. Autoantibodies are produced in lymphoid tissue where lymph node stromal cells (LNSCs) regulate lymphocyte function. Infections can alter the interaction between LNSCs and lymphocytes resulting in defective immune responses. In rheumatoid arthritis (RA) autoantibody production precedes clinical disease allowing identification of at risk individuals. We investigated the ability of human LNSCs derived from RA, RA-risk and healthy individuals to sense and respond to pathogens. Human LNSCs cultured directly from freshly collected lymph node biopsies expressed TLR1-9 with exception of TLR7. In all donors TLR3 triggering induced expression of ISGs, IL-6 and adhesion molecules like VCAM-1 and ICAM-1. Strikingly, T cell guiding chemokines CCL19 and IL-8 as well as the antiviral gene MxA were less induced upon TLR3 triggering in autoimmune LNSCs. This observed decrease, found already in LNSCs of RA-risk individuals, may lead to incorrect positioning of lymphocytes and aberrant immune responses during viral infections.
Background Exploration of the mechanism underlying the delay of development of clinical signs of seropositive rheumatoid arthritis (RA) observed after B cell directed therapy in individuals at risk of developing autoantibody positive RA may offer insights into the mechanism of disease and may assist the development of preventive strategies. Objectives To explore the effects of a single infusion of rituximab (anti-CD20 antibody) on the observed delay of the onset of clinically manifest arthritis in individuals at risk of developing autoantibody positive RA. Methods In a study of 81 subjects positive for both anti-citrullinated protein antibodies (ACPA) and rheumatoid factor (RF) with arthralgia who never had clinically manifest arthritis and never used disease-modifying antirheumatic drugs, a 55% reduction of the risk of developing arthritis was observed 12 months after receiving a single iv infusion of 1000 mg rituximab when compared to placebo. In this group there was a delay in the development of arthritis of 12.0 months (12 months placebo vs 24 rituximab group) at the 25% quartile (75% free of arthritis) of the cumulative arthritis-free survival. Explorative analysis of disease-related biomarkers was performed in subgroups to better understand the mechanisms of the observed delay of clinical disease onset. Results Baseline levels of ESR (mm/h; HR 1.03; p=0.016), the total number of B cells in peripheral blood (HR 1.48; p=0.047), the presence of anti-alpha-enolase 1 (anti-CEP1) antibodies (HR 3.71; p=0.004) and the percentage of regulatory B cells (HR 1.04; p=0.002) were related to arthritis development over time. Importantly, genetic analysis of 100 RA associated SNPs showed that the top SNP associated with arthritis development in the rituximab-treated group (OR=7, MAF in cases 60% compared to 17% in unaffected) was in the PLCL2 gene, described to play a role in B cell signaling1. In individuals treated with rituximab, B cell numbers and subtypes mainly of the memory and regulatory compartment as well as serum levels of IgM-RF (p<0.0001), IgA-RF (p=0.003), total IgM (p=0.001), and anti-CCP (p=0.035) showed statistically significant changes over time compared to individuals who received placebo. Exploratory analysis showed trends for multiple biomarkers in the B cell compartment that appeared predictive of the development of arthritis. Conclusions A single infusion of 1000 mg rituximab significantly affects B cell numbers and subsets of memory and regulatory B cells as well as a reduction of disease-related antibodies and immunoglobulin levels in individuals at risk of RA. The changes coincide with a decrease in risk and a delay in development of arthritis in this population. PLCL2 gene polymorphism was associated with arthritis development in rituximab-treated individuals. References Takenaka K, Fukami K, Otsuki M, Nakamura Y, Kataoka Y, Wada M, Tsuji K, Nishikawa S, Yoshida N, Takenawa T. Role of phospholipase C-L2, a novel phospholipase C-like protein that lacks lipase activity, in B-cell receptor signaling. Mol Cell Biol. 2003 Oct;23(20):7329–38. Disclosure of Interest None declared
OBJECTIVE:Innate lymphoid cells (ILCs) are emerging mediators of immunity, and accumulation of inflammatory ILC populations can occur in inflammatory-mediated conditions. Since early lymph node (LN) activation has been shown in rheumatoid arthritis (RA), we aimed to investigate the frequency and distribution of ILCs in LN biopsy specimens obtained during the earliest phases of RA.METHODS:Twelve patients with early RA, 12 individuals with IgM rheumatoid factor and/or anti-citrullinated protein antibodies without arthritis (RA risk group), and 7 healthy controls underwent ultrasound-guided inguinal LN biopsy. ILC subsets and the expression of vascular cell adhesion molecule (VCAM) and intercellular adhesion molecule (ICAM) by LN endothelial cells and fibroblasts were analyzed by flow cytometry.RESULTS:Although no differences in the frequencies of total ILCs (Lin-CD45+/low CD127+) were found, the distribution of the ILC subpopulations differed among groups. RA patients showed lower numbers of lymphoid tissue-inducer (LTi) cells (c-Kit+NKp44- ILCs) and increased ILC1 (c-Kit-NKp44- ILCs) and ILC3 (c-Kit+NKp44+ ILCs) numbers compared with controls (P < 0.001, P < 0.050, and P < 0.050, respectively). Individuals at risk of RA exhibited an increased frequency of ILC1 compared with controls (P < 0.01). LTi cells paralleled the expression of adhesion molecules on endothelial cells and fibroblasts.CONCLUSION:Our findings indicate that during the at-risk and earliest phases of RA, the ILC distribution in LN changes from a homeostatic profile toward a more inflammatory profile, thereby providing evidence of a role for ILCs in RA pathogenesis.
Although many studies are focused on auto-reactive CD4(+) T cells, the precise role of CD8(+) T cells in autoimmunity is poorly understood. The objective of this study is to provide more insight into the phenotype and function CD8(+) T cells during the development of autoimmune disease by studying CD8(+) T cells in human lymph-node biopsies and peripheral blood obtained during the earliest phases of rheumatoid arthritis (RA). Here, we show that lymphoid pro-inflammatory CD8(+) T cells exhibit a less-responsive phenotype already during the earliest phases of autoimmunity compared with healthy individuals. We found an increase in CD8(+) memory T cells in lymphoid tissue during the earliest phases of autoimmunity, even before clinical onset of RA, accompanied by an increased frequency of non-circulating or recently activated (CD69(+)) CD8(+) T cells in lymphoid tissue and peripheral blood. Importantly, lymphoid pro-inflammatory CD8(+) IL-17A(+) T cells displayed a decreased capacity of cytokine production, which was related to disease activity in early RA patients. In addition, a decreased frequency of regulatory CD8(+) IL-10(+) T cells in peripheral blood was also related to disease activity in early RA patients. Our results suggest that different CD8(+) T-cell subsets are affected already during the earliest phases of systemic autoimmunity.
The balance between proinflammatory and regulatory CD4 + T cells is tightly controlled in lymphoid organs. In autoimmune diseases this balance is altered in the periphery and target tissue of patients. However, not much is known about the balance initiated in lymphoid organs during the development of disease. Since systemic autoimmunity is present years before the clinical manifestations of rheumatoid arthritis (RA), it is possible to study the immunoregulatory balance during the earliest (preclinical) phases of disease. Here, we report for the first time the frequency and phenotype of proinflammatory and regulatory CD4 + T cells in lymph node biopsies obtained from autoantibody positive individuals at risk for developing RA, patients with established disease and healthy controls. The frequency of proinflammatory LN Th1 cells was increased in RA patients compared with HCs, while the frequency of regulatory T cells was lower in LN biopsies of RA‐risk individuals. Upon in vitro stimulation LN CD4 + T cells produced lower levels of proinflammatory cytokines, IFN‐γ and IL‐17A, in both RA‐risk individuals and early RA patients. This study shows that already during the earliest phases of systemic autoimmunity the immunoregulatory balance between proinflammatory and regulatory CD4 + T cells is altered in LN tissue.
Background Rituximab (RTX) is an effective treatment of rheumatoid arthritis (RA) after failure or intolerance to TNF blockers. Nevertheless, still 30–50% of RA patients does not respond. Therefore, identifying patients with favourable response to RTX is important in order to further optimize treatment for the individual patient. In vivo imaging of biodistribution of radiolabelled RTX in RA by Positron Emission Tomography (PET) might provide a tool to fulfil this unmet clinical need. Objectives To investigate the association of in vivo biodistribution of Zirconium-89 (89Zr-)RTX in RA patients starting with RTX treatment and clinical response at 24 weeks post injection (p.i.). Methods We included 20 anti-B cell therapy naïve RA patients (female18/20; age 53±11; DAS28 5.4±1.2) who started RTX treatment according to standard clinical protocol (without methylprednisolone). The first RTX infusion (1000 mg) was directly followed by infusion of 10 mg-18 MBq 89Zr-RTX. Whole body and PET-CT images of wrists/hands (n=22 joints/patient) were performed three days p.i. After 24 weeks of therapy, response was defined according to the EULAR response criteria (DAS28 at endpoint ≤5.1 and/or deltaDAS28>0.6) (1). 89Zr-RTX uptake was assessed visually (blinded for clinical data) and quantitatively by drawing volumes of interest (VOI) on PET positive tissues/joints. Standardized uptake values (SUVs) were calculated and background ROIs were drawn on metacarpal bone to calculate target-to-background (T/B) ratios. Results At 24 weeks 13/20 patients were moderate to good responders to RTX. Whole body PET images showed 89Zr-RTX distribution in liver, spleen, kidneys, blood pool, lymph nodes (LN) (9/20pts) and in shoulders/elbows (9/20pts), without statistically significant SUV differences between responders and non-responders. Detailed hand images showed PET positive joints in 18/20 patients (ranging 1–20 joints/patient). Clinical responders had significantly higher 89Zr-RTX uptake in visually positive joints than non-responders (SUV: 3.2±1.4 vs 2.1±1.1 [p=0.04]; T/B ratios 6.2±2.5 vs. 3.4±1.7 [p=0.015], respectively). Using a T/B cut-off value of 4.0, positive predictive value and negative predictive value for response were respectively 90% and 75%, at a sensitivity of 82% and specificity of 86% (Fig 1). In contrast, no association was found between any clinical disease or serological (including a-CCP/RF) parameters and clinical response at 24 weeks. Conclusions 89Zr-RTX PET-CT clearly visualizes arthritic joints in RA patients. Significant differences in baseline quantitative 89Zr-RTX uptake in PET positive hand joints were found between responders and non-responders to RTX treatment at 24 weeks. Our data point at a promising clinical value of 89Zr-RTX PET to predict at baseline the therapeutic response to RTX and therefore has potential for stratification of RTX treatment in RA. Further validation is required in larger cohorts. References Van Gestel et al; Arthritis Rheum 1998 Acknowledgement This study was financially supported by Hoffmann-La-Roche,The Netherlands Disclosure of Interest S. Bruijnen: None declared, M. Tsang-A-Sjoe: None declared, H. Raterman: None declared, T. Ramwadhdoebe: None declared, D. Vugts: None declared, G. Van Dongen: None declared, M. Huisman: None declared, O. Hoekstra: None declared, P. Tak Grant/research support from: P.P. Tak participated in this study from his position at the Academic Medical Center, Amsterdam, The Netherlands. GSK did neither sponsor this study nor supported this study otherwise. P.P.Tak also has affiliations at Cambridge and Ghent but his activities at these locations were not involved in the current study., A. Voskuyl: None declared, C. Van der Laken: None declared
B cells are key players in the pathogenesis of rheumatoid arthritis (RA). Although successful in 50–60% of patients with RA, anti-B-cell therapy given as rituximab could be more efficient by identifying potential responders prior to treatment. Positron emission tomography (PET) using radiolabeled rituximab for B-cell imaging might provide the means to fulfil this unmet clinical need. The objective of this study was to investigate the association between biodistribution of zirconium-89 (89Zr)-rituximab on PET-computed tomography (CT) and clinical response in patients with RA.
Objective Arthralgia may precede the development of synovial inflammation in autoantibody-positive individuals at risk of developing rheumatoid arthritis (RA). A major pathway involved in pain is the prostaglandin (PG) E2 pathway. We investigated this pathway in the synovium of individuals with RA-specific autoantibodies and in early arthritis patients. Methods Nineteen autoantibody-positive individuals (IgM-rheumatoid factor and/or anti-cyclic citrullinated peptide antibodies) with arthralgia (n=15) and/or a positive family history of RA (n=8), who had been prospectively followed for at least 2 years, were included. In addition, we included early arthritis patients (disease-modifying antirheumatic drug naïve) who after 2 years follow up fulfilled classification criteria for RA (n=63), spondyloarthritis (SpA; n=14), or had unclassified arthritis (UA; n=27). In all subjects we assessed pain and performed synovial biopsy sampling by mini-arthroscopy at baseline. Tissue sections were examined by immunohistochemistry to detect and quantify PGE2 pathway enzymes expression levels (mPGES-1; COX-1 and -2; 15-PGDH). Results In both study groups synovial expression of PGE2 enzymes was not clearly related to pain sensation. Expression levels at baseline were not associated with the development of arthritis after follow up (6 out of 19 autoantibody-positive individuals). However, in early SpA patients the expression levels of mPGES-1 and COX-1 were significantly increased compared to RA and UA patients. Conclusion Pain in autoantibody-positive individuals without synovial inflammation who are at risk of developing RA and in early arthritis patients may be regulated by pathways other than the PGE2 pathway or originate at sites other than the synovium. In contrast, in SpA, the PGE2 pathway may be inherently linked to the pathophysiology/etiology of the disease.
OBJECTIVES:We have previously shown that overweight may increase the risk of developing rheumatoid arthritis (RA) in autoantibody positive individuals. Adipose tissue could contribute to the development of RA by production of various bioactive peptides. Therefore, we examined levels of adipokines in serum and synovial tissue of subjects at risk of RA.METHODS:Fifty-one individuals positive for immunoglobulin M rheumatoid factor (IgM-RF) and/or anti-citrullinated protein antibodies (ACPA), without arthritis, were included in this prospective study. Levels of adiponectin, vaspin, resistin, leptin, chemerin and omentin were determined in baseline fasting serum samples (n = 27). Synovial tissue was obtained by arthroscopy at baseline and we examined the expression of adiponectin, resistin and visfatin by immunohistochemistry.RESULTS:The development of clinically manifest arthritis after follow-up was associated with baseline serum vaspin levels (HR1.5 (95% CI 1.1 to 2.2); p = 0.020), also after adjustment for overweight (HR1.7 (95% CI 1.1 to 2.5); p = 0.016). This association was not seen for other adipokines. Various serum adipokine levels correlated with BMI (adiponectin r = -0.538, leptin r = 0.664; chemerin r = 0.529) and systemic markers of inflammation such as CRP levels at baseline (adiponectin r = -0.449, omentin r = -0.557, leptin r = 0.635, chemerin r = 0.619, resistin r = 0.520) and ESR (leptin r = 0.512, chemerin r = 0.708), p-value<0.05. Synovial expression of adiponectin, resistin and visfatin was not associated with development of clinically manifest arthritis.CONCLUSIONS:In this exploratory study, serum adipokines were associated with an increased inflammatory state in autoantibody-positive individuals at risk of developing RA. Furthermore, serum vaspin levels may assist in predicting the development of arthritis in these individuals.
Background In last decade rituximab (RTX), a B-cell targeted monoclonal antibody, has been introduced to treat rheumatoid arthritis (RA) patients but with variable response rates (30-50%). To increase treatment efficacy and reduce costs, treatment should be individualized to match the spectrum of RA. B-cell targeted therapy has been hypothesized to be most effective in a more B-cell mediated RA disease, possibly correlated to serological status (1). Whole body Positron Emission Tomography (PET) is capable to show B-cells targeting with high specificity in lymphoma patients using 89Zr-RTX (2). In addition, our group previously demonstrated the potential of PET for non-invasive visualization of immunological targets in RA (3). Objectives To investigate the feasibility of non-invasive imaging of B-cells in RA patients who initiate RTX treatment by [89Zr]RTX PET-CT. Methods Anti-B cell therapy naïve RA patients (n=20; female18/20; age 53±11; 65% IgM RF/a-CCP +) with clinical arthritis in at least two hand joints, who were eligible for RTX treatment, were included. Directly after the first therapeutic RTX infusion (1000 mg, without methylprednisolone), 18MBq [89Zr]-10 mg RTX was administered. Whole body PET-CT and detailed images of wrists and hands (22 joints/patient) were acquired at 3, and in addition, in a subpopulation at 6 days post-injection (p.i.). Thereafter, RTX treatment was continued according to standard clinical protocol. Areas of enhanced uptake on PET were defined and quantified as maximum standardized uptake values (SUVmax). Wrist and hand joints were clinically assessed for swelling and tenderness. Results Visually, all patients showed at least one hand joint with increased focal tracer uptake (87/440 joints; mean/patient ± SD 4.4±4.9) (Figure 1) with distribution: metacarpophalangeal (n=44/200), proximal interphalangeal (n=22/200) and wrist joints (n=21/40). Interestingly, 66% of PET-positive joints (57/87) corresponded to clinical findings of arthritis, while PET additionally displayed possible subclinical disease activity in another 30 joints (34%). Quantitative analysis showed high mean SUVmax values of hotspots in hand joints (2.98±1.46) which were up to 4 times higher than maximum background uptake, but varying between patients (range SUVmax 1.2-8.0), regardless of serological status. Stability of joint uptake was found over time (3-6 days p.i.) while the tracer cleared from circulation, pointing at specific binding in joints. Whole body PET-CT also demonstrated tracer uptake in extra-articular tissues especially in liver, spleen and in 5/20 patients slightly enhanced uptake in at least one peripheral lymph node. Conclusions [89Zr]RTX PET-CT seems to be a sensitive tool for in vivo identification of B-cells in arthritic joints and extra-articular tissues in RA patients. Whether quantitative differences in uptake (articular and body distribution) correlate to clinical and RTX response data is currently investigated in a prospective study. References Isaacs JD et al; Ann Rheum Dis 2013. Muylle K et al; Ann Oncol 2008. van der Laken CJ et al; Arthritis Rheum 2008. Acknowledgements This study was financially supported by Hoffmann-La-Roche,The Netherlands Disclosure of Interest S. Bruijnen: None declared, M. Tsang-A-Sjoe: None declared, H. Raterman: None declared, T. Ramwadhdoebe: None declared, D. Vugts: None declared, G. Van Dongen: None declared, M. Huisman: None declared, O. Hoekstra: None declared, P. Tak Grant/research support from: P.P. Tak participated in this study from his position at the Academic Medical Center, Amsterdam, The Netherlands. GSK did neither sponsor this study nor supported this study otherwise. P.P.Tak also has affiliations at Cambridge and Ghent but his activities at these locations were not involved in the current study., A. Voskuyl: None declared, C. van der Laken: None declared
Accumulating evidence suggests an important role for interleukin 17 (IL-17) in the pathogenesis of several inflammatory diseases, including rheumatoid arthritis (RA) and psoriatic arthritis (PsA). Accordingly, clinical trials aimed at blocking IL-17 have been initiated, but clinical results between patients and across different diseases have been highly variable. The objective was to determine the variability in expression of IL-17A, IL-17F and their receptors IL-17RA and IL-17RC in the synovia of patients with arthritis.
The capacity of a low-dose HPV16 synthetic long-peptide vaccine (HPV16-SLP) to induce an HPV16-specific T-cell response as well as to establish long-term immunologic memory in patients with low-grade abnormalities of the cervix was determined in a placebo-controlled, double-blinded phase II study. In addition, the effect of a booster vaccination after 1 year was evaluated. Patients received either the HPV16-SLP or a placebo at the start of the study. After 1 year, the vaccinated patients were again randomized to receive the HPV16-SLP or a placebo. Patients were followed for 2 years. HPV16-specific T-cell responses were determined in pre- and post-vaccination blood samples by ELISPOT, proliferation assay and cytokine assays. We show that the HPV16-specific T-cell responses detected after vaccination are clearly due to vaccination and that reactivity was maintained for at least 2 years. Interestingly, a booster vaccination after 1 year especially augmented the HPV16-specific Th2 response. Furthermore, pre-existing immunity to HPV16 was associated with a stronger response to vaccination and with more side effects, reflected by flu-like symptoms. We conclude that two low-dose injections of HPV16-SLP can induce a strong and stable HPV16-specific T-cell response that lasts for at least 1 year. If booster vaccination is required, then polarizing adjuvant should be added to maintain the Th1 focus of the vaccine-induced T-cell response.
A reattachment of the tibial remnant of the torn anterior cruciate ligament (ACL) to the posterior cruciate ligament is sometimes observed during surgery and apparently implies that the human ACL does have a healing response. The aim of this study was to investigate whether this reattachment tissue has similar histological characteristics of a healing response as the medial collateral ligament (MCL), which can heal spontaneously. Standard histology and immunostaining of α-smooth muscle actin and collagen type 3 was performed. The results shows that the reattached tissue has typical characteristics of a healing response: there attached ACL remnant could not be released by forceful traction; microscopy showed that the collagen fibers of the reattached tissue were disorganized with no preferred direction; increased neovascularization; the presence of lipid vacuoles; the mean number of cells within the biopsy tissue was 631±269 cells per mm2; and 68±20% was expressing α-SMA; semi-quantitative analysis of collagen type 3 expression showed that collagen type 3 had an high expression with an average score of 3. In conclusion, this study shows that the human proximal 1/3 ACL has an intrinsic healing response with typical histological characteristics similar to the MCL.
Active immunotherapy for cancer is an accepted treatment modality aiming to reinforce the T-cell response to cancer. T-cell reactivity is measured by various assays and used to guide the clinical development of immunotherapeutics. However, data obtained across different institutions may vary substantially making comparative conclusions difficult. The Cancer Immunotherapy Immunoguiding Program organizes proficiency panels to identify key parameters influencing the outcome of commonly used T-cell assays followed by harmonization. Our successes with IFNγ-ELISPOT and peptide HLA multimer analysis have led to the current study on intracellular cytokine staining (ICS). We report the results of three successive panels evaluating this assay. At the beginning, 3 out of 9 participants (33 %) were able to detect >6 out of 8 known virus-specific T-cell responses in peripheral blood of healthy individuals. This increased to 50 % of the laboratories in the second phase. The reported percentages of cytokine-producing T cells by the different laboratories were highly variable with coefficients of variation well over 60 %. Variability could partially be explained by protocol-related differences in background cytokine production leading to sub-optimal signal-to-noise ratios. The large number of protocol variables prohibited identification of prime guidelines to harmonize the assays. In addition, the gating strategy used to identify reactive T cells had a major impact on assay outcome. Subsequent harmonization of the gating strategy considerably reduced the variability within the group of participants. In conclusion, we propose that first basic guidelines should be applied for gating in ICS experiments before harmonizing assay protocol variables.
The ability to measure antigen-specific T cells at the single-cell level by intracellular cytokine staining (ICS) is a promising immunomonitoring tool and is extensively applied in the evaluation of immunotherapy of cancer. The protocols used to detect antigen-specific CD8+ T-cell responses generally work for the detection of antigen-specific T cells in samples that have undergone at least one round of in vitro pre-stimulation. Application of a common protocol but now using long peptides as antigens was not suitable to simultaneously detect antigen-specific CD8+ and CD4+ T cells directly ex vivo in cryopreserved samples. CD8 T-cell reactivity to monocytes pulsed with long peptides as antigens ranged between 5 and 25 % of that observed against monocytes pulsed with a direct HLA class I fitting minimal CTL peptide epitope. Therefore, we adapted our ICS protocol and show that the use of tenfold higher concentration of long peptides to load APC, the use of IFN-α and poly(I:C) to promote antigen processing and improve T-cell stimulation, does allow for the ex vivo detection of low-frequency antigen-specific CD8+ and CD4+ T cells in an HLA-independent setting. While most of the improvements were related to increasing the ability to measure CD8+ T-cell reactivity following stimulation with long peptides to at least 50 % of the response detected when using a minimal peptide epitope, the final analysis of blood samples from vaccinated patients successfully showed that the adapted ICS protocol also increases the ability to ex vivo detect low-frequency p53-specific CD4+ T-cell responses in cryopreserved PBMC samples.