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Biomedical subjects

Daniel C Douek

Publications and source records attributed to Daniel C Douek.

At least 19 recordsLinked to original sources

IgA is necessary and sufficient to prevent norovirus infection in mice.

Human norovirus is the leading cause of viral gastroenteritis, yet effective vaccines and therapeutics remain elusive. Using murine norovirus as a model, we found that mucosal immunoglobulin A (IgA) is both necessary and sufficient for protection against infection, whereas CD8+ T cells are dispensable. Robust intestinal IgA production requires at least 4 weeks of enteric infection, consistent with kinetics of human norovirus RNA clearance. Systemic vaccination elicits high titers of neutralizing serum IgG but fails to prevent enteric norovirus infection, phenocopying a recent human norovirus vaccine failure. In contrast, prophylactic delivery of dimeric anti-norovirus IgA via mRNA lipid nanoparticles confers sterilizing immunity. Together, these findings define a critical role for mucosal IgA in norovirus protection and identify IgA-based treatments as a therapeutic approach for human norovirus.

Animals↗

Passive infusion of an S2-Stem broadly neutralizing antibody protects against SARS-CoV-2 infection and lower airway inflammation in rhesus macaques.

The continued evolution of SARS-CoV-2 variants capable of subverting vaccine and infection-induced immunity suggests the advantage of a broadly protective vaccine against betacoronaviruses (β-CoVs). Recent studies have isolated monoclonal antibodies (mAbs) from SARS-CoV-2 recovered-vaccinated donors capable of neutralizing many variants of SARS-CoV-2 and other β-CoVs. Many of these mAbs target the conserved S2 stem region of the SARS-CoV-2 spike protein, rather than the receptor binding domain contained within S1 primarily targeted by current SARS-CoV-2 vaccines. One of these S2-directed mAbs, CC40.8, has demonstrated protective efficacy in small animal models against SARS-CoV-2 challenge. As the next step in the pre-clinical testing of S2-directed antibodies as a strategy to protect from SARS-CoV-2 infection, we evaluated the in vivo efficacy of CC40.8 in a clinically relevant non-human primate model by conducting passive antibody transfer to rhesus macaques (RM) followed by SARS-CoV-2 challenge. CC40.8 mAb was intravenously infused at 10mg/kg, 1mg/kg, or 0.1 mg/kg into groups (n = 6) of RM, alongside one group that received a control antibody (PGT121). Viral loads in the lower airway were significantly reduced in animals receiving higher doses of CC40.8. We observed a significant reduction in inflammatory cytokines and macrophages within the lower airway of animals infused with 10mg/kg and 1mg/kg doses of CC40.8. Viral genome sequencing demonstrated a lack of escape mutations in the CC40.8 epitope. Collectively, these data demonstrate the protective efficiency of broadly neutralizing S2-targeting antibodies against SARS-CoV-2 infection within the lower airway while providing critical preclinical work necessary for the development of pan-β-CoV vaccines.

Animals↗

Functional leukemia-associated antigen-specific memory CD8+ T cells exist in healthy individuals and in patients with chronic myelogenous leukemia before and after stem cell transplantation.

Antigens implicated in the graft-versus-leukemia (GVL) effect in chronic myeloid leukemia (CML) include WT1, PR1, and BCR-ABL. To detect very low frequencies of these antigen-specific CD8+ T cells, we used quantitative polymerase chain reaction (qPCR) to measure interferon-gamma (IFN-gamma) mRNA production by peptide-pulsed CD8+ T cells from HLA-A*0201+ healthy volunteers and from patients with CML before and after allogeneic stem cell transplantation (SCT). Parallel assays using cytomegalovirus (CMV) pp65 tetramers demonstrated the IFN-gamma copy number to be linearly related to the frequency of tetramer-binding T cells, sensitive to frequencies of 1 responding CD8+ T cell/100 000 CD8+ T cells. Responses to WT1 and PR1 but not BCR-ABL were detected in 10 of 18 healthy donors. Responses to WT1, PR1, or BCR-ABL were observed in 9 of 14 patients with CML before SCT and 5 of 6 after SCT, often to multiple epitopes. Responses were higher in patients with CML compared with healthy donors and highest after SCT. These antigen-specific CD8+ T cells comprised central memory (CD45RO+CD27+CD57-) and effector memory (CD45RO-CD27-CD57+) T cells. In conclusion, leukemia-reactive CD8+ T cells derive from memory T cells and occur at low frequencies in healthy individuals and at higher frequencies in patients with CML. The increased response in patients after SCT suggests a quantitative explanation for the greater effect of allogeneic SCT.

CD3 Complex↗

T cells containing T cell receptor excision circles are inversely related to HIV replication and are selectively and rapidly released into circulation with antiretroviral treatment.

OBJECTIVE: To examine baseline predictors of T-cell receptor rearrangement excision circle (TREC) levels and their changes during treatment with combined antiretroviral therapy. METHODS: Peripheral blood and lymph node lymphocytes were examined for the presence of TREC by real-time polymerase chain reaction and circulating lymphocyte phenotypes were examined by flow cytometry. Correlates for CD4 and CD8 cell TREC levels at baseline were identified among CD4 and CD8 immunophenotypes, viral load and patient demographics; the significance of TREC changes after initiation of antiretroviral therapy was assessed. RESULTS: Circulating TREC levels correlated inversely with age, with HIV RNA levels, with activation markers on circulating T cells and with naive CD4 but not CD8 cell frequencies. With initiation of antiretroviral therapy, TREC and naive T cell frequencies increased in peripheral blood during the first 2 weeks of treatment and these changes correlated negatively with TREC frequencies in lymph node aspirates, particularly among CD8 T cells. CONCLUSIONS: These findings suggest that recent thymic emigrants are sequestered in lymphoid tissue during uncontrolled HIV replication and are selectively released into circulation rapidly after initiation of antiretroviral therapies.

Adult↗

Identification and monitoring of graft-versus-host specific T-cell clone in stem cell transplantation.

Allogeneic haemopoietic stem cell transplantation can be complicated by acute graft-versus-host disease (GVHD). If the alloreactive T-cell clones responsible for this disorder could be identified before stem cell transplantation, they could be quantitatively monitored afterwards to allow initiation of immunosuppression before GVHD becomes apparent. We identified an alloreactive CD4+ T-cell clone from a donor before stem cell transplantation, and then monitored its frequency in the recipient's peripheral blood after transplantation by use of clonotypic quantitative real-time PCR. Greatly increased concentrations of this clone (nearly 100% of circulating CD4+ T cells) preceded and closely correlated with the onset of clinical GVHD, suggesting that a sole alloreactive T-cell clone was responsible for initiation of this disease in vivo. This simple identification and monitoring of potentially GVHD-causing clones can be undertaken before stem cell transplantation with no previous knowledge of the alloantigen responsible, and could allow earlier diagnosis and intervention in GVHD.

Adult↗

Early reconstitution of the T-cell repertoire after non-myeloablative peripheral blood stem cell transplantation is from post-thymic T-cell expansion and is unaffected by graft-versus-host disease or mixed chimaerism.

To study immune recovery after non-myeloablative, reduced-intensity stem cell allografts (NST) and T-cell-depleted myeloablative transplants (TCD), we measured T-cell subset recovery by flow cytometry, T-cell repertoire by spectratyping and thymic T-cell output using a T-cell receptor excision circle (TREC) assay. We found a rapid and comparable increase in lymphocyte numbers in both NST and TCD, supporting the presence of a powerful drive for lymphocyte recovery after transplant. Spectratyping on d 45 and 100 revealed almost complete normalization of the T-cell repertoire in NST patients by d 45, whereas TCD patients demonstrated marked skewing of the repertoire, persisting to d 100. After NST, there was a significantly higher number of TREC-positive CD4+ and CD8+ cells (P = 0.02 and P = 0.01 respectively). However, in both NST and TCD, early T-cell recovery after transplant appeared to result entirely from post-thymic T cells, the expansion pattern of which is most influenced by the starting T-cell dose, but not markedly by graft-versus-host disease (GVHD) or mixed chimaerism. These results define important qualitative differences in the T-cell repertoire according to the type of transplant schedule used.

Adolescent↗

Evaluation of thymic output by measurement of T-cell-receptor gene rearrangement excisional circles (TREC) in patients who have received fludarabine.

The role of the thymus in immune reconstitution in adults receiving chemotherapy is controversial. Detection of T-cell-receptor gene rearrangement excisional circles (TREC) in peripheral blood T cells has been shown to estimate thymic output. Therefore, we measured TREC levels to assess the contribution of the thymus to immune recovery following treatment with fludarabine. Patients who had received fludarabine alone or a fludarabine containing regimen were identified. Cryopreserved peripheral-blood mononuclear cells were obtained and analyzed by four-color flow cytometry utilizing fluorochrome-conjugated antibodies against CD4, CD8, CD45RO and CD27. Proportions of naïve T cells in each CD4+ and CD8+ subset were measured by gating on CD45RO-negative, CD27+ cells. Quantification of TREC in sorted naïve CD4+ and CD8+ T cells was performed by real-time PCR. Thirteen patients received a mean of 3.8 +/- 0.4 courses of fludarabine and samples were obtained at a average of 18.8 (range 3.6-40.3) months after completing chemotherapy. Ten (77%) had detectable TREC levels. There was a positive correlation (Spearman's rank correlation) between the degree of TREC expression and the percentage of naïve T cells (r = 0.6, p = 0.03), naïve CD4+ (r = 0.6, p = 0.03) and naïve CD8+ (r = 0.66, p = 0.01) cells. We conclude that increased thymic output as demonstrated by an increase in TREC levels correlated with, and was predictive ofincreased numbers of naive T cell following fludarabine administration. The thymus appears to play a role in immune recovery in adults after receiving chemotherapy.

Adult↗

Increased thymic output during acute measles virus infection.

Measles virus infects thymic epithelia, induces a transient lymphopenia, and impairs cell-mediated immunity, but thymic function during measles has not been well characterized. Thirty Zambian children hospitalized with measles were studied at entry, hospital discharge, and at 1-month follow-up and compared to 17 healthy children. During hospitalization, percentages of naïve (CD62L+, CD45RA+) CD4+ and CD8+ T lymphocytes decreased (P = 0.01 for both), and activated (HLA-DR+, CD25+, or CD69+) CD4+ and CD8+ T lymphocytes increased (P = 0.02 and 0.03, respectively). T-cell receptor rearrangement excision circles (TRECs) in measles patients were increased in CD8+ T cells at entry compared to levels at hospital discharge (P = 0.02) and follow-up (P = 0.04). In CD4+ T cells, the increase in TRECS occurred later but was more sustained. At discharge, TRECs in CD4+ T cells (P = 0.05) and circulating levels of interleukin-7 (P = 0.007) were increased compared to control values and remained elevated for 1 month, similar to observations in two measles virus-infected rhesus monkeys. These findings suggest that a decrease in thymic output is not the cause of the lymphopenia and depressed cellular immunity associated with measles.

Acute Disease↗

Cellular immunity elicited by human immunodeficiency virus type 1/ simian immunodeficiency virus DNA vaccination does not augment the sterile protection afforded by passive infusion of neutralizing antibodies.

High levels of infused anti-human immunodeficiency virus type 1 (HIV-1) neutralizing monoclonal antibodies (MAbs) can completely protect macaque monkeys against mucosal chimeric simian-human immunodeficiency virus (SHIV) infection. Antibody levels below the protective threshold do not prevent infection but can substantially reduce plasma viremia. To assess if HIV-1/SIV-specific cellular immunity could combine with antibodies to produce sterile protection, we studied the effect of a suboptimal infusion of anti-HIV-1 neutralizing antibodies in macaques with active cellular immunity induced by interleukin-2 (IL-2)-adjuvanted DNA immunization. Twenty female macaques were divided into four groups: (i). DNA immunization plus irrelevant antibody, (ii). DNA immunization plus infusion of neutralizing MAbs 2F5 and 2G12, (iii). sham DNA plus 2F5 and 2G12, and (iv). sham DNA plus irrelevant antibody. DNA-immunized monkeys developed CD4 and CD8 T-cell responses as measured by epitope-specific tetramer staining and by pooled peptide ELISPOT assays for gamma interferon-secreting cells. After vaginal challenge, DNA-immunized animals that received irrelevant antibody became SHIV infected but displayed lower plasma viremia than control animals. Complete protection against SHIV challenge occurred in three animals that received sham DNA plus MAbs 2F5 and 2G12 and in two animals that received the DNA vaccine plus MAbs 2F5 and 2G12. Thus, although DNA immunization produced robust HIV-specific T-cell responses, we were unable to demonstrate that these responses contributed to the sterile protection mediated by passive infusion of neutralizing antibodies. These data suggest that although effector T cells can limit viral replication, they are not able to assist humoral immunity to prevent the establishment of initial infection.

Animals↗

Quantification of T-cell receptor excision circle DNA using fluorescence resonance energy transfer and the LightCycler system.

T-cell receptor excision circles (TRECs) are circular, stable extrachromosomal DNA fragments and are generated during V(D)J gene recombination, a process responsible for diversity of the T-cell receptor repertoire. Here we describe a sensitive, rapid and easy to perform real-time PCR assay based on the LightCycler technique for the quantification of TRECs among peripheral blood cells and a comparison of this assay with conventional PCR-ELISA. By LightCycler, a sensitivity of 20 copies of plasmid deltaRec-psiJalpha Signal Joint TREC DNA was achieved whereas by PCR-ELISA, a detection limit of 2 copies was demonstrated. In blood samples from healthy individuals (n=52) a median TREC count of 1.6x10(4) copies [range 2x10(1) to 2x10(5)]/2x10(5) peripheral blood mononuclear cells (PBMNCs) and in cord blood, a median TREC count of 1.45x10(5) copies [range 1.2x10(5) to 1.6x10(5)]/2x10(5) PBMNCs) could be detected. No significant difference was found in 15 individuals when unfractionated PBMNCs (median count of 1.1x10(5) copies/2x10(5) PBMNCs) or magnetic associated cell sorter (MACS)-sorted CD45RA+ T-cells (median count of 2.5x10(5) copies/2x10(5) cells) were analyzed for TREC counts. In addition, we examined the number of deltaRec-psiJalpha Signal Joint TREC in paediatric (n=6) and adult patients (n=7) after allogeneic stem cell transplantation. In children, we observed a median TREC count of 5.7x10(4) copies/2x10(5) PBMNCs after 1x10(4) and 5.6x10(4) copies/2x10(5) PBMNCs after 2 years, and in adults, a median count of 3.6x10(4) copies/2x10(5) PBMNCs after 1x10(4) and 1.1x10(4) copies/2x10(5) PBMNCs after 2 years. In conclusion, the LightCycler-based real-time PCR assay described offers a very sensitive and rapid tool for the quantification of TREC DNA.

Adolescent↗

Expression of CD57 defines replicative senescence and antigen-induced apoptotic death of CD8+ T cells.

Virus-specific CD8(+) T-cell responses play a pivotal role in limiting viral replication. Alterations in these responses, such as decreased cytolytic function, inappropriate maturation, and limited proliferative ability could reduce their ability to control viral replication. Here, we report on the capacity of HIV-specific CD8(+) T cells to secrete cytokines and proliferate in response to HIV antigen stimulation. We find that a large proportion of HIV-specific CD8(+) T cells that produce cytokines in response to cognate antigen are unable to divide and die during a 48-hour in vitro culture. This lack of proliferative ability of HIV-specific CD8(+) T cells is defined by surface expression of CD57 but not by absence of CD28 or CCR7. This inability to proliferate in response to antigen cannot be overcome by exogenous interleukin-2 (IL-2) or IL-15. Furthermore, CD57 expression on CD8(+) T cells, CD4(+) T cells, and NK cells is a general marker of proliferative inability, a history of more cell divisions, and short telomeres. We suggest, therefore, that the increase in CD57(+) HIV-specific CD8(+) T cells results from chronic antigen stimulation that is a hallmark of HIV infection. Thus, our studies define a phenotype associated with replicative senescence in HIV-specific CD8(+) T cells, which may have broad implications to other conditions associated with chronic antigenic stimulation.

Apoptosis↗

IL-7 therapy dramatically alters peripheral T-cell homeostasis in normal and SIV-infected nonhuman primates.

Interleukin-7 (IL-7) is important for thymopoiesis in mice and humans because IL-7 receptor alpha (IL-7Ralpha) mutations result in a severe combined immunodeficiency phenotype with severe thymic hypoplasia. Recent evidence has indicated that IL-7 also plays an important role as a regulator of T-cell homeostasis. Here we report the immunologic effects of recombinant human IL-7 (rhIL-7) therapy in normal and simian immunodeficiency virus (SIV)-infected nonhuman primates. Cynomolgus monkeys receiving 10 days of rhIL-7 showed substantial, reversible increases in T-cell numbers involving a dramatic expansion of both naive and nonnaive phenotype CD4(+) and CD8(+) subsets. Although IL-7 is known to have thymopoietic effects in mice, we observed marked declines in the frequency and absolute number of T-cell receptor excision circle-positive (TREC(+)) cells in the peripheral blood and dramatic increases in the percentage of cycling T cells in the peripheral blood as measured by Ki-67 expression (baseline less than 5% to approximately 50% after 6 days of therapy) and ex vivo bromodeoxyuridine (BrdU) incorporation. Similarly, moderately CD4- depleted SIV-infected macaques treated with rhIL-7 also had significant increases in peripheral blood CD4(+) and CD8(+) T cells following rhIL-7 therapy. Thus, rhIL-7 induces dramatic alterations in peripheral T-cell homeostasis in both T-cell-replete and T-cell-depleted nonhuman primates. These results further implicate IL-7 as a promising immunorestorative agent but illustrate that a major component of its immunorestorative capacity reflects effects on mature cells. These results also raise the possibility that IL-7 therapy could be used to temporarily modulate T-cell cycling in vivo in the context of immunotherapies such as vaccination.

Animals↗

Distinct lineages of T(H)1 cells have differential capacities for memory cell generation in vivo.

We studied here the long-term maintenance of distinct populations of T helper type 1 (T(H)1)-lineage cells in vivo and found that effector T(H)1 cells, defined by their secretion of interferon-gamma (IFN-gamma), are short-lived and do not efficiently develop into long-term memory T(H)1 cells. In contrast, a population of activated T(H)1-lineage cells that did not secrete IFN-gamma after primary antigenic stimulation persisted for several months in vivo and developed the capacity to secrete IFN-gamma upon subsequent stimulation. These data suggest that a linear differentiation pathway, as defined by the transition from IFN-gamma-producing to resting memory cells, is relatively limited in vivo and support a revised model for T(H)1 memory differentiation.

Animals↗

Direct ex vivo analysis of human CD4(+) memory T cell activation requirements at the single clonotype level.

CD4(+) memory T cells continuously integrate signals transmitted through the TCR and costimulatory molecules, only responding when the intensity of such signals exceeds an intrinsic activation threshold. Recent data suggest that these activation thresholds can be regulated independently of TCR specificity, and that threshold tuning may constitute a major mechanism for controlling T cell effector activity. In this work we take advantage of the profound clonotypic hierarchies of the large human CD4(+) T cell response to CMV to study activation thresholds of fresh (unexpanded) memory T cells at the clonotypic level. We identified dominant responses to CMV matrix determinants mediated by single TCRB sequences within particular TCR-Vbeta families. The specific response characteristics of these single, Ag-specific, TCRB-defined clonotypes could be unequivocally determined in fresh PBMC preparations by cytokine flow cytometry with gating on the appropriate Vbeta family. These analyses revealed 1) optimal peptides capable of eliciting specific responses by themselves at doses as low as 2 pg/ml, with each log increase in dose eliciting ever-increasing frequencies of responding cells over a 4- to 5-log range; 2) significant augmentation of response frequencies at all submaximal peptide doses by CD28- and CD49d-mediated costimulation; 3) differential dose response and costimulatory characteristics for IFN-gamma and IL-2 responses; and 4) no association of activation requirements with the CD27-defined CD4(+) T cell memory differentiation pathway. Taken together these data confirm that triggering heterogeneity exists within individual CD4(+) memory T cell clonotypes in vivo and demonstrate that such single clonotypes can manifest qualitatively different functional responses depending on epitope dose and relative levels of costimulation.

Antigen-Presenting Cells↗

HIV preferentially infects HIV-specific CD4+ T cells.

HIV infection is associated with the progressive loss of CD4(+) T cells through their destruction or decreased production. A central, yet unresolved issue of HIV disease is the mechanism for this loss, and in particular whether HIV-specific CD4(+) T cells are preferentially affected. Here we show that HIV-specific memory CD4(+) T cells in infected individuals contain more HIV viral DNA than other memory CD4(+) T cells, at all stages of HIV disease. Additionally, following viral rebound during interruption of antiretroviral therapy, the frequency of HIV viral DNA in the HIV-specific pool of memory CD4(+) T cells increases to a greater extent than in memory CD4(+) T cells of other specificities. These findings show that HIV-specific CD4(+) T cells are preferentially infected by HIV in vivo. This provides a potential mechanism to explain the loss of HIV-specific CD4(+) T-cell responses, and consequently the loss of immunological control of HIV replication. Furthermore, the phenomenon of HIV specifically infecting the very cells that respond to it adds a cautionary note to the practice of structured therapy interruption.

Anti-HIV Agents↗

Factors influencing T-lymphopoiesis after allogeneic hematopoietic cell transplantation.

In adult recipients of allogeneic hematopoietic cell transplants (HCT) studied at 1 year after grafting, there was a significant correlation between the counts of T cell receptor excision circle (TREC)-containing CD4 T cells (presumed recent thymic emigrants) and the counts of total T cells (r=0.65, P<0.001). Thus, the reconstitution of CD4 T cell pool depends on T cell generation from hematopoietic stem cells (T-lymphopoiesis). We evaluated factors that could affect T-lymphopoiesis. Low TREC-containing CD4 T cell counts were associated with older patient age (r=-0.41, P=0.01) but not with donor age, graft type (marrow vs. blood stem cells), CD34 cell dose, conditioning (with vs. without irradiation), acute graft-versus-host disease (aGVHD), or chronic graft-versus-host disease (cGVHD) in multivariate analysis. We conclude that patient age is the primary determinant of CD4 T-lymphopoiesis after allogeneic HCT.

Adolescent↗

Effects of exogenous interleukin-7 on human thymus function.

Immune reconstitution is a critical component of recovery after treatment of human immunodeficiency virus (HIV) infection, cancer chemotherapy, and hematopoietic stem cell transplantation. The ability to enhance T-cell production would benefit such treatment. We examined the effects of exogenous interleukin-7 (IL-7) on apoptosis, proliferation, and the generation of T-cell receptor rearrangement excision circles (TRECs) in human thymus. Quantitative polymerase chain reaction demonstrated that the highest level of TRECs (14 692 copies/10 000 cells) was present in the CD1a(+)CD3(-)CD4(+)CD8(+) stage in native thymus, suggesting that TREC generation occurred following the cellular division in this subpopulation. In a thymic organ culture system, exogenous IL-7 increased the TREC frequency in fetal as well as infant thymus, indicating increased T-cell receptor (TCR) rearrangement. Although this increase could be due to the effect of IL-7 to increase thymocyte proliferation and decrease apoptosis of immature CD3(-) cells, the in vivo experiments using NOD/LtSz-scid mice given transplants of human fetal thymus and liver suggested that IL-7 can also directly enhance TREC generation. Our results provide compelling evidence that IL-7 has a direct effect on increasing TCR-alphabeta rearrangement and indicate the potential use of IL-7 for enhancing de novo naïve T-cell generation in immunocompromised patients.

Adult↗