Search PubMed⌕ Search

Biomedical subjects

A Kelso

Publications and source records attributed to A Kelso.

At least 37 records · Page 2Linked to original sources

Activation of the extracellular signal-regulated kinase pathway is differentially required for TCR-stimulated production of six cytokines in primary T lymphocytes.

The extracellular signal-regulated kinase (ERK) signaling pathway is strongly activated in response to TCR stimulation in normal T cells. However, the extent to which activation of the ERK pathway is necessary for TCR-stimulated cytokine production is not clear. We have addressed this question by use of two separate methods to interfere with TCR activation of the ERK cascade. The first approach utilized transient expression of a catalytically inactive form of mitogen-activated/ERK 1 (CI-MEK1), while the second involved using the MEK1- and MEK2-specific inhibitor PD98059 to block ERK activation by the TCR. In order to assess the requirement for ERK activation in T cell cytokine production, we have measured the effect of ERK inhibition upon the production of six cytokines, IL-3, IL-4, IL-5, IL-10, granulocyte macrophage colony stimulating factor (GM-CSF) and IFN-gamma, by newly activated normal mouse T cells in response to TCR stimulation. The results of experiments using both methods to block ERK activation have revealed a requirement for intact ERK signaling for the full elicitation of TCR-stimulated cytokine production. Dose-response analyses using the MEK inhibitor PD98059 showed that the TCR-stimulated production of all cytokines measured was affected by this treatment. However, the production of IL-3 and IL-4 was only partially dependent upon ERK activation, whereas IL-5, IL-10, IFN-gamma and GM-CSF production was severely affected by diminished ERK activation. We conclude that the ERK pathway is differentially involved in the activation of different cytokine genes in normal T cells.

Animals↗

Activated T cells from draining lymph nodes and an effector site differ in their responses to TCR stimulation.

We previously showed that T cells from the mediastinal lymph nodes (MLN) and lung parenchyma of influenza virus-infected mice were functionally remarkably different. Here we demonstrate that the differences in cytokine production are due to differences in the frequencies of T cells within the activated pool able to produce cytokines after TCR stimulation. FACS analysis of T cells from MLN and lung tissue demonstrated that T cells expressing any of the activation markers tested (LFA-1, CD25, CD44, CD45RB, CD49d, CD62L) always expressed high levels of CD44 and LFA-1. These double-high T cells produced >99% of all anti-CD3 mAb-induced IL-4 and IFN-gamma. Separation of T cells employing mAb against the other activation markers in combination with anti-CD44 mAb did not enable further fractionation into cytokine producers and nonproducers. Despite their similar phenotype, purified double-high lung parenchyma T cells produced markedly higher levels of IL-2, IL-4, and IFN-gamma, and contained a higher frequency of cytokine producers than their MLN counterparts. Activation of the extracellular signal-regulated kinase (ERK)-2 in response to TCR cross-linking was detected in double-high T cells from lung tissue but not MLN. The requirement for ERK signaling for maximal IFN-gamma synthesis could nevertheless be demonstrated in both populations by blockade with the inhibitor PD98509. Collectively, the data suggest that inductive and effector sites differ in the frequency of activated T cells able to induce ERK-2-regulated cytokine production after TCR ligation.

Animals↗

A single peripheral CD8+ T cell can give rise to progeny expressing type 1 and/or type 2 cytokine genes and can retain its multipotentiality through many cell divisions.

The lineage relationships between murine CD8(+) T cells with different cytokine profiles were investigated by paired-daughter analysis in the presence and absence of the type 2 cytokine-inducing stimulus, interleukin 4 (IL-4). Single CD8(+) CD44(low) lymph node T cells were activated to divide at high frequency with IL-2 and immobilized antibodies to CD3, CD8, and LFA-1. When these parent cells were subcloned by transferring their daughter or granddaughter cells into secondary cultures with or without IL-4, the subclones expressed diverse combinations of the mRNAs for the type 1 cytokines, interferon gamma (IFN-gamma), and IL-2, and the type 2 cytokines, IL-4, IL-5, IL-6, and IL-10. Frequencies of subclones that expressed IL-4, IL-6, and, to a lesser extent, IL-2, IL-5, and IL-10 were higher among those grown with IL-4, but a significant proportion of those grown without exogenous IL-4 also expressed one or more type 2 cytokines. Subclones within 89% of families displayed different cytokine profiles, indicating that their parent cells were multipotential for this function. Because 98% of parent cells yielded subclones that produced type 1 cytokines and 77% yielded type 2 cytokine producers, we conclude that type 1 and type 2 cytokine-producing CD8(+) T cells can be derived from a common precursor. Similar analyses performed by subcloning after >/=7 or >/=13 cell divisions without IL-4 showed that many CD8(+) T cells retained the potential to shift toward a type 2 cytokine profile in response to IL-4, even after prolonged expansion under conditions that favored type 1 cytokine expression. CD8(+) T cells that express type 1 and/or type 2 cytokines therefore are derived from the same peripheral T cell lineage whose multipotentiality can persist through many cell divisions.

Animals↗

A case report: immune responses and clinical course of the first human use of granulocyte/macrophage-colony-stimulating-factor-transduced autologous melanoma cells for immunotherapy.

The first use of granulocyte/macrophage-colony-stimulating-factor-transduced, lethally irradiated, autologous melanoma cells as a therapeutic vaccine in a patient, with rapidly progressive, widely disseminated malignant melanoma resulted in the generation of a novel antitumour immune response associated with partial, albeit temporary, clinical benefit. An initially negative reaction to non-transduced, autologous melanoma cells was converted to a delayed-type hypersensitivity (DTH) reaction of increasing magnitude following successive vaccinations. While intradermal vaccine sites showed prominent dendritic cell accrual, DTH sites revealed a striking influx of eosinophils in addition to activated/memory T lymphocytes and macrophages, recalling the histology of challenge tumour cell rejection in immune mice. Cytotoxic T lymphocytes (CTL) reactive with autologous melanoma cells were detectable at high frequency after vaccination, not only in limiting-dilution analysis, but also in bulk culture without added cytokines. Clonal analysis of CTL showed a conversion from a purely CD8+ response to a high proportion of CD4+ clones following vaccination. A prominent acute-phase response manifested by a five- to tenfold increase in C-reactive protein was observed, as was a systemic eosinophila. Vaccination resulted in the regression of axillary lymphatic metastases, stabilisation of pulmonary metastases, and a dramatic, reversible increase in cerebral oedema associated with multiple central nervous system metastases: however, lesions in the adrenal glands, pancreas and spleen proved refractory. The antitumour effects and immune response were not detectable 2 months following the last vaccination. Irradiation of the extensive cerebral metastases resulted in rapid deterioration and death of the patient.

Autopsy↗

A subclass of dendritic cells regulates the response of naive CD8 T cells by limiting their IL-2 production.

Previous work indicated that a subclass of mouse spleen dendritic cells (DC), those bearing CD8alpha, expresses the Fas ligand and restricts peripheral CD4 T cell responses by initiating Fas-mediated apoptosis. To determine whether a similar regulation applies to CD8 T cells, they were purified from normal or from TCR-transgenic mice, and then cultured with purified splenic CD8+ DC or CD8- DC presenting either alloantigens or the specific Ag for the TCR transgene. In all systems studied, the proliferative response of CD8 T cells was markedly less on stimulation with CD8+ DC compared with conventional CD8- DC. However, the basis of this restricted proliferation in response to CD8+ DC was totally different for CD8 T cells than for CD4 T cells. The reduced proliferation of CD8 T cells occurred later in the response than with CD4 T cells. In contrast with CD4 T cells, the reduced proliferation of CD8 T cells occurred even with T cells from Fas-deficient Ipr mice, or with DC from Fas ligand-deficient gld mice, indicating that Fas-induced apoptosis was not involved. Also, in contrast with CD4 T cells, the reduced proliferation of CD8 T cells was completely reversed by the addition of exogenous IL-2. Furthermore, cultures of CD8 T cells with CD8+ DC were found to be deficient in IL-2 production. Accordingly, although CD8+ DC are very efficient at stimulating CD8 T cells into cell division, they are deficient at stimulating endogenous cytokine production. The implications of these different DC regulatory systems are discussed.

Animals↗

Identification of the 70kD heat shock cognate protein (Hsc70) and alpha-actinin-1 as novel phosphotyrosine-containing proteins in T lymphocytes.

T cell antigen receptor (TCR) ligation results in the tyrosine phosphorylation of numerous intracellular protein substrates, and the identification of these substrates has been a major undertaking by several groups. We have used pervanadate treatment to artificially increase cellular phosphotyrosine levels and immobilized anti-phosphotyrosine monoclonal antibodies to partially purify tyrosine phosphorylated proteins in quantities suitable for amino acid sequencing. This strategy was used to identify three phosphotyrosine containing proteins, with relative molecular masses of 105, 81, and 76 kD by amino acid sequencing. Here we report the identification of pp105 as alpha-actinin-1, pp81 as the murine equivalent of the HS1 gene product, and pp76 as Hsc70. This is the first report that alpha-actinin-1 and Hsc70 are targets of activated tyrosine kinases. Furthermore, we show that Hsc70 is tyrosine phosphorylated in response to TCR ligation, which constitutes the first evidence that Hsc70 might be subject to regulation by tyrosine kinase signaling pathways.

Actinin↗

Functionally distinct T cells in three compartments of the respiratory tract after influenza virus infection.

This study aimed to resolve, firstly, whether T cell responses induced in one tissue site are similar to those induced by the same antigen in another site and, secondly, whether influenza virus infection induces one predominant type of T cell response locally in the respiratory tract. To address these questions, T cell responses in three compartments of the respiratory tract were compared after infection of mice with a sublethal dose of influenza virus: the draining mediastinal lymph nodes (MLN), the lung parenchyma and the airways. Each compartment harbored a T cell response substantially different from that found at the other sites. A preferential accumulation of ex vivo-cytolytic CD8+ T cells was found in the airways (CD4/CD8 ratio 1:2) and to a lesser extent in the lung parenchyma (CD4/CD8 ratio 1:1). T cells from both compartments expressed high levels of various cytokine mRNA, but showed differences in their respective expression pattern, with those from lung tissue showing particularly high levels of IFN-gamma mRNA. The response in the draining lymph nodes, on the other hand, was dominated by CD4+ T cells (CD4/CD8 ratio 2:1) with a higher proliferative capacity (after TCR/CD3 cross-linking) and which provided better B cell help in vitro than CD4+ T cells isolated from lung tissue. T cells from MLN expressed mRNA for a variety of cytokines with only low levels of IFN-gamma mRNA and they showed no CTL activity ex vivo. These functional differences were not due to differences in the kinetics of the response, or to the higher frequencies of activated T cells in lung tissue and airways compared to MLN, since the differences remained when cell-sorter-purified activated (CD18hi, CD44hi) T cells from MLN and lung tissue were compared in a time-course study. Taken together, these findings indicate that pathogens such as influenza virus induce a heterogenous set of T cell responses in different tissue sites affected by the infection.

Animals↗

Differential activation of T cell cytokine production by the extracellular signal-regulated kinase (ERK) signaling pathway.

Stimulation of T cells via the T cell receptor (TCR) activates a number of signaling pathways that are potentially involved in the elicitation of physiological responses, such as the production of cytokines. The extracellular signal-regulated kinases (ERK) are a group of molecules activated in response to TCR ligation, whose role in T cell cytokine production is controversial. In this study, we have asked whether ERK activation is coupled to the production of a number of T cell-derived cytokines, and whether particular cytokines are differentially affected by ERK activation. To address these questions, we have utilized a constitutively active version of the immediate upstream activator of both ERK1 and ERK2, mitogen-activated/extracellular signal-regulated kinase 1 (MEK1), to activate ERK signaling selectively in the absence of other TCR-activated signaling pathways. The effect of constitutive MEK/ERK activation on T cell cytokine production was measured by transiently co-transfecting newly activated mouse T cells with DNA encoding constitutively active MEK1 (CA-MEK1) and the human interleukin-2 (IL-2) receptor alpha chain (hCD25), purifying hCD25+ transfectants by flow-cytometric cell sorting, and measuring the production of IL-3, IL-4, interferon (IFN)-gamma and granulocyte/macrophage-colony-stimulating factor (GM-CSF) either in the presence or absence of ionomycin stimulation. Newly activated T cells were used in these experiments as they more closely resemble T cells activated in vivo than do transformed T cells or long-term established T cell clones. CA-MEK1 expression led to constitutive ERK activation, which acted synergystically with ionomycin treatment to stimulate cytokine production. Furthermore, these experiments revealed a hierarchy of cytokine responsiveness to MEK/ERK activation, such that the production of IL-3 was most affected, followed by GM-CSF, IFN-gamma, and IL-4.

Animals↗

In vivo blockade of gamma interferon affects the influenza virus-induced humoral and the local cellular immune response in lung tissue.

Influenza virus infection induces the local production of gamma interferon (IFN-gamma) by T cells and non-T cells in the respiratory tract. To elucidate the possible functions of this cytokine, the humoral and local cellular immune responses to influenza virus were studied in BALB/c mice with or without in vivo neutralization of IFN-gamma by using monoclonal antibodies. Neutralization of IFN-gamma led to a significant reduction in virus-specific titers of immunoglobulins G2a and G3 in serum but had little effect on other isotypes. Studies on cells isolated from the lung parenchyma itself revealed that at the height of the immune response the ability of these cells to produce cytokines after antigen or T-cell receptor/CD3 stimulation was not affected. Ex vivo cytolytic activity by lung parenchyma cells, which is induced by infection with this virus in normal mice, was also found to be undisturbed by this treatment, even though anti-IFN-gamma antibody activity was recovered from lung lavage samples and sera at all days studied. Surprisingly, in vivo neutralization of IFN-gamma led to a significant reduction in the magnitude of the cellular infiltrate in the lung tissue which followed infection, suggesting an involvement of IFN-gamma in the mechanisms that regulate increased leucocyte traffic in the inflamed lung parenchyma. This conclusion was supported by findings of differences between mock-treated and anti-IFN-gamma-treated mice in the number of CD8+ lung T cells expressing CD49d (alpha4-integrin) and CD62L at various times after influenza virus infection. This study therefore demonstrates that IFN-gamma affects the local cellular response in the respiratory tract as well as the systemic humoral response to influenza virus infection.

Animals↗

Limiting dilution analysis of CD4 T-cell cytokine production in mice administered native versus polymerized ovalbumin: directed induction of T-helper type-1-like activation.

Polarized expression of T-helper type-1 (Th1)- or Th2-like patterns of cytokine production frequently correlates with disease outcome. Previously, we have described the long-lived reciprocal regulation of ovalbumin (OVA)-specific IgE (> 95% inhibition) and IgG2a (300-800-fold increased) production following administration of high MW OVA polymers (OVA-POL), in both de novo and ongoing OVA (alum)-induced responses. Here, limiting dilution analysis (LDA) was used to compare precursor frequencies of CD4 T cells producing interferon-gamma (IFN-gamma), interleukin-4 (IL-4) or IL-10 following OVA versus OVA-POL exposure in vivo. Adjuvants were not used, so as to circumvent their impact on measurement of precursor frequencies. We found that the two forms of antigen elicited T-cell activation of comparable intensity, as indicated by equivalent precursor frequencies of clonogenic antigen-specific CD4 T cells. However, they elicited qualitatively different cytokine responses. OVA-POL treatment led to 10-fold higher (mean of six independent LDA experiments) frequencies of IFN-gamma-producing cells, and a mean fivefold lower frequency of IL-10-producing cells, than was observed following in vivo administration of unmodified OVA. Thus, the high MW polymerized form of antigen acted to steer commitment of naive (for this antigen) CD4 T-cell activation from a situation in which IL-10 producers outnumbered IFN-gamma-producing cells by a factor of 4:1 (found in mice administered OVA), to one where IFN-gamma producers dominated by a factor of 11:1 (in mice given OVA-POL), i.e. a qualitative shift in the nature of the OVA-specific response induced from Th2-like to Th1-like. In vivo co-administration of anti-IFN-gamma monoclonal antibody (mAb) abolished the capacity of OVA-POL to preferentially elicit Th1-like dominance. Interestingly, although the ratios of IFN-gamma:IL-4 and IFN-gamma:IL-10 OVA-specific precursor frequencies were strongly increased following OVA-POL exposure (mean 18- and 47-fold higher), the frequency of IL-4-producing CD4 T cells did not differ significantly. The data suggest that this modified antigen promotes in vivo commitment of naive T cells towards a Th1-like response, with consequent inhibition of IgE and enhancement of IgG2a responses, not through direct effects on IL-4 production, but via decreased frequencies of IL-10 and increased frequencies of IFN-gamma-producing OVA-specific CD4 cells. Collectively, the data (1) demonstrate the ability to manipulate commitment of antigen-driven CD4 T-cell populations in naive mice to specific patterns of cytokine gene expression, and (2) provide in vivo evidence of the regulatory role played by IFN-gamma in limiting induction and/or expansion of IL-4- and IL-10-producing CD4 cells to protein allergens.

Animals↗

Dissociated expression of granulocyte-macrophage CSF and IL-3 in short-term T cell clones from normal mice.

Granulocyte-macrophage colony-stimulating factor (GM-CSF) and IL-3 are generally thought to be produced in a coordinated fashion by all activated T cells. We have examined this premise using quantitative kinetic analyses of the expression of GM-CSF and IL-3 in clonal cultures of mouse T cells for the first two weeks following in vitro stimulation with solid-phase TCR- and accessory molecule-specific mAbs. We demonstrate that 1) differential secretion of GM-CSF and IL-3 is a feature of high proportions of CD8+ and CD4+ T cell clones, for extended periods of time following activation; 2) multiple patterns of expression of these two cytokines can occur, including equivalent, GM-CSF-biased, and IL-3-biased production, and a pattern that switches over a period of days from GM-CSF-biased to IL-3-biased production; 3) the disparate relative levels of secretion are not due to differential consumption of either cytokine; 4) altered T cell activation by addition of CD28 costimulation accelerates both GM-CSF and IL-3 production but biased patterns of expression are retained, and 5) most T cells are not pre-committed to a particular pattern of relative GM-CSF and IL-3 expression; instead, the potential for multiple patterns may persist for several days following in vitro activation. The results indicate that T cells have the potential to display previously unrecognized diversity of expression of GM-CSF and IL-3.

Animals↗

Evidence for the stochastic acquisition of cytokine profile by CD4+ T cells activated in a T helper type 2-like response in vivo.

The diversity of cytokine production patterns displayed by T cells activated in vivo was investigated by analyzing short-term antigen-specific CD4+ T cell clones and single CD4+ T cells derived from draining lymph nodes of mice undergoing a T helper 2 (Th2)-like response to keyhole limpet hemocyanin (KLH). On average, 2.7% of CD4+ lymph node cells gave rise to clones in the presence of the immunizing antigen and, of these, about 90% secreted interleukin-4 (IL-4) and 20% secreted interferon-gamma (IFN-gamma) when restimulated after 2 weeks in vitro. Almost all IFN-gamma-producing clones co-produced IL-4. The definition of clones as positive or negative for cytokine synthesis depended on assay sensitivity, however, since their titers were distributed continuously from the threshold of detection over at least a 1000-fold range. Reverse-transcription polymerase chain reaction analysis of 59 clones revealed multiple patterns of co-expression of IL-2, IL-3, IL-4, IL-6, IFN-gamma and granulocyte-macrophage colony-stimulating factor (GM-CSF) mRNA. Although most clones contained detectable IL-4 and IL-6 mRNA and a minority contained IFN-gamma mRNA, only 1 clone expressed the canonical Th2 cytokine profile. The observed frequencies of mRNA co-expression for most of the six cytokines (including IL-4 with IFN-gamma), and the frequency of co-secretion of IL-4 and IFN-gamma, were not significantly different from those predicted for random association. Independent regulation of IL-4 and IFN-gamma mRNA expression was confirmed at the single-cell level in a polyclonal population of KLH-primed CD4+ cells, among which co-expression of these cytokines again occurred at the frequency predicted for a random event. The data suggest that the polarization of this immune response towards a Th2 cytokine profile is achieved by altering the probabilities of expression of the IL-4, IFN-gamma and other cytokine genes at the population level, rather than by selective expansion of a distinct T cell subset.

Animals↗

Th1 and Th2 subsets: paradigms lost?

The T helper 1 (Th1)/Th2 model has provided a valuable framework to investigate and explain many immune reactions and now pervades current thinking on the regulatory role of T cells. However, individual T cells and clones display remarkable diversity in their cytokine profiles, collectively forming a continuous spectrum in which Th1 and Th2 cells may be only two of the possible extreme phenotypes. For these reasons, Anne Kelso argues that cytokine-producing T cells cannot be classified into discrete subsets.

Animals↗

Differential activation of Brucella-reactive CD4+ T cells by Brucella infection or immunization with antigenic extracts.

In order to induce acquired cellular resistance to facultative bacterial pathogens, infection with live organisms is required. We have previously demonstrated that spleen cells from Brucella-infected mice produced gamma interferon (IFN-gamma) and interleukin-2 (IL-2) in response to Brucella antigens in vitro, while spleen cells from mice immunized with soluble Brucella proteins (SBP) produced substantial amounts of IL-2 but no detectable amount of IFN-gamma. In this study, we further analyzed the response of T cells from Brucella-infected mice and SBP-immunized mice and demonstrated that CD4(+)-enriched cells from SBP-immunized mice also produced significant amounts of IL-4, which was not detected in bulk cultures of spleen cells from infected mice. Limiting dilution analysis showed that infection resulted in a higher precursor frequency of IFN-gamma-producing CD4+ T cells and a lower precursor frequency of IL-4-producing CD4+ T cells, while immunization with SBP resulted in a higher precursor frequency of IL-4-producing cells and a very low frequency of IFN-gamma-producing cells. The precursor frequencies of IL-2-producing cells for the two groups were similar. Furthermore, IFN-gamma-producing CD4+ T cells from infected donor mice were capable of mediating resistance against challenge infection in recipient mice, but IL-4-producing CD4+ T cells from immunized mice failed to do so. These results indicate that the form of antigen has a profound influence on the outcome of the immune response. The results are discussed in light of the supposed dichotomy between Th1 and Th2 cytokine responses.

Animals↗

The enigma of cytokine redundancy.

The redundancy of many cytokine functions that was first noted in vitro has now been confirmed in vivo with the demonstration that some of these functions can occur in mice rendered deficient in a cytokine or cytokine receptor by gene inactivation. Other functions are ablated in these mice, suggesting that they are cytokine-specific. Although some of the underlying mechanisms have been identified, it remains unclear why certain activities of a cytokine should be unique and others redundant. It is proposed that compensatory mechanisms exist only for those cytokine functions whose inappropriate or excessive activation would not be pathogenic or whose importance justifies this risk. Conversely, cytokine-specific functions might be those that should be tightly regulated to avoid the pathological consequences of their inadvertent expression.

Animals↗

Rapid establishment of a stable IL-4/IFN-gamma production profile in the antigen-specific CD4+ T cell response to protein immunization.

Development of the antigen-specific murine T cell response to immunization with keyhole limpet hemocyanin (KLH) in adjuvant has been monitored with direct limiting dilution analysis of CD4+ cells in draining lymph nodes (LN) and measurement of the cytokines produced by their clonal progeny. In vivo, the response to immunization suggested a major role for IL-4 and a minor role for IFN-gamma since IL-4 mRNA levels increased and IFN-gamma mRNA levels declined in LN over the first 3 days, and KLH-specific serum antibodies were mainly of IgG1 class with lower levels of IgE and IgG2a. Antigen-specific clonogenic cells were first detected in LN at day 4, at which time they comprised approximately 8% of the total CD4+ LN cell pool, declining to 1-2% from day 7 until at least 6 weeks after immunization. These clonogenic cells expressed high levels of surface CD44 (Pgp-1) both early and late in the in vivo response. Over the whole of the time span from day 4 to 6 weeks after immunization, most antigen-specific cells gave rise to clones that secreted IL-4 and a smaller proportion gave rise to IFN-gamma-secreting clones. By contrast, polyclonally activated CD4+ cells from untreated mice preferentially gave rise to clones with the converse cytokine profile. We conclude that a stable ratio of antigen-specific CD4+ cells committed to IL-4 or IFN-gamma synthesis is established within the first 4 days after KLH immunization and, contrary to prediction, does not evolve towards a more restricted cytokine profile during the primary response.

Animals↗

Novel features of the respiratory tract T-cell response to influenza virus infection: lung T cells increase expression of gamma interferon mRNA in vivo and maintain high levels of mRNA expression for interleukin-5 (IL-5) and IL-10.

Analysis of the respiratory tract before and after primary influenza virus infection revealed a virus-induced preferential accumulation of a CD8+ T-cell population that coexpresses mRNA for interleukin-5 (IL-5) and IL-10 with virus dose-dependent high levels of gamma interferon. However, cytokine production in lung tissues was not restricted to the T-cell population, since CD3- cells were found to express mRNA for various cytokines, including IL-4 and particularly IL-6 and granulocyte-macrophage colony-stimulating factor. These data provide in vivo evidence for a local respiratory tract immune response to influenza virus infection dominated by cytokine-producing CD8+ T cells.

Animals↗

Limiting dilution analysis reveals the precursors of interleukin-4-producing CD4+ cells induced by protein immunization.

Although cytokine-producing T cells play a key role in the response to vaccination, they are not always revealed by antigen stimulation of primed lymphoid cells in vitro. In this study, mice were immunized subcutaneously with alum-precipitated keyhole limpet haemocyanin (KLH) in adjuvant to activate interleukin-4 (IL-4)-producing CD4+ T cells. IL-4 mRNA was the dominant cytokine mRNA species found in draining lymph nodes (LN) 7 days after immunization and its levels were increased after in vitro stimulation with KLH for 24 hr. IL-4 protein, on the other hand, was not detected in the supernatants of such antigen-stimulated cultures. The presence of T cells primed for IL-4 production was nevertheless suggested by the findings that primed LN cells produced low IL-4 titres in response to anti-CD3 antibody, whereas normal LN cells did not, and primed CD4+ LN cells produced readily detectable IL-4 levels in response to antigen after one or more cycles of in vitro restimulation. Culture at limiting dilution showed that 1-2% of 7 day KLH-primed CD4+ LN cells were clonogenic and specific for KLH without prior expansion in vitro, and that this frequency was markedly increased by repeated stimulation in bulk culture. Most clonogenic cells in primed LN gave rise to IL-4-secreting clones and a smaller number gave rise to interferon-gamma (IFN-gamma)-producing clones. The precursor frequency of IL-4-producing CD4+ cells in primed LN and the average IL-4 titre per cloned cell support the conclusion that these two parameters account for the low levels of IL-4 produced in bulk culture by LN cells from immunized mice.

Animals↗