Search PubMedSearch

SEARCH · Search PubMed

Results for “Cells”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Differentiation profiles of normal blast cell colonies derived from mononucleated cells, T cell depleted nonadherent cells and CD33-negative, CD34-positive normal human bone marrow cells.

Blast cell colonies can be grown reproducibly in methylcellulose from normal human mononuclear bone marrow cells (MNC) in the presence of 30% human plasma, 1 U human recombinant erythropoietin and 10% of medium conditioned by phytohemagglutinin stimulated leukocytes as a source of growth factors. The colonies can be recognized by inverted microscopy by their display of highly refractile cytoplasmic structures that resemble small vacuoles. A proportion of cells within these colonies remains CD34-positive (CD34+). The blast-like morphology of these cells was sustained for at least 14 to 21 days. The frequency of blast cell colony forming units (CFU-BL) can be increased by a series of separation procedures to produce E-rosette depleted, nonadherent cells (E-NAC), CD34+ cells and CD33-CD34+ cells. The mean number of CFU-BL per 10(5) cells was 1.9 +/- 1.6 in MNC, 5.7 +/- 2.7 in E-NAC, 108 +/- 51 in CD34+ cells and 112 +/- 109 in CD33-CD34+ cells. The enrichment procedures were not specific for CFU-BL but also resulted in a similar increase of multilineage and single lineage progenitors. The relative proportions of CFU-BL and other progenitors remained unchanged among these subpopulations. The size of individual blast cell colonies on day 16 varied from 20 to 1,600 cells. After 14 to 21 days, cells within blast cell colonies acquired mature morphological features. The majority of blast cell colonies developed into multilineage colonies (62%); some (38%) were restricted to a single hemopoietic lineage. Larger blast cell colonies had a higher probability of developing into multilineage colonies than smaller blast cell colonies.

Antigens, CD

Surface membrane changes of T cells induced by syngeneic tumour cells. II. T-cell defects induced by small tumour cell inocula or tumour cell antigens.

Injection of a large number of tumour cells, like other strong immunogenic challenges, is followed within 6 h by the uptake of cytophilic Ig (probably complexes) by a subpopulation of T cells. This phenomenon, known as the "6-hour T-cell response" is abrogated when small tumour cell inocula (10(2)), or small amounts of a preparation from tumour cells, which contains tumour antigens, are injected prior to the immunogenic challenge Abrogation of the "6-hour T-cell response" resulted in a decrease in specific anti-tumour cell immunity as tested in vitro by measuring growth inhibition (cytostasis). It has also resulted in loss of the amplifying function on antibody formation against sheep erythrocytes, normally detected in a T-B cell co-operative system when T cells are used 6 h after priming with sheep erythrocytes. It is postulated that this T-cell defect may represent a mechanism by which tumour cells, in the early stages of their growth, interfere with inductive stages of the immune response for a sufficient period of time to allow the tumour to grow beyond immune control.

Animals

Recognition of heterogeneous lymphokine-activated killer (LAK) receptors on Kaposi's sarcoma cells, endothelial cells, and monocytes/macrophages: evidence of distinct LAK-cell antigen on Kaposi's sarcoma cells--potential for use of LAK cells for immunotherapy.

The purpose of this study was to determine the potential use of lymphokine-activated killer (LAK) cells against Kaposi's sarcoma (KS) cells. We used chromium release cold-target inhibition assay for understanding the expression of heterogeneous LAK-cell antigens (Ags) on KS cells, endothelial cells (ECs), and monocytes/macrophages (M phi) which could allow for the utilization of LAK-cell immunotherapy in KS without side effects. Our data show that (i) all three cell types express the CD18 Ag of LFA-1 or Leu-CAM, (ii) rare KS cells from eyes cannot cold target-inhibit ECs, (iii) KS cells express a distinct LAK-cell Ag, which we have called LAK-KS Ag, and (iv) LAK-KS Ag allows for cold-target inhibition between different KS cells. The identification of LAK-KS Ag and a monoclonal antibody capable of inhibiting lysis of ECs and M phi without obstructing LAK-KS Ag would be important.

Antigens, CD

Effect of tumor cells on the generation of cytotoxic T lymphocytes in vitro. I. Accessory cell functions of mouse tumor cells in the generation of cytotoxic T lymphocytes in vitro: replacement of adherent phagocytic cells by tumor cells or 2-mercaptoethanol.

In agreement with previous reports, the primary in vitro response to alloantigens has been shown to be dependent on the presence of macrophages (Mphs). Splenocytes extensively depleted of adherent phagocytic cells did not generate cytotoxic T lymphocytes, and this activity could be completely restored by small numbers of adherent peritoneal cells (accessory cells). Either P388D1 (Mph-like tumor), P388 ("null" tumor) or P815 (mastocytoma) tumor cells, or 2-mercaptoethanol, could completely replace the accessory function normally mediated by accessory cells. These tumor cells did not non-specifically "enhance" the cytotoxic activity generated with normal nondepleted spleen cells. The restored cultures maintained killing specificity to H-2 targets which was mediated by effector T cells as shown by sensitivity to anti-theta and complement. Therefore, Mphs seem not to be the sole cells capable of mediating an accessory function in a primary response to alloantigens in vitro.

Animals

Hybrid resistance to EL-4 lymphoma cells. I. Characterization of natural killer cells that lyse EL-4 cells and their distinction from marrow-dependent natural killer cells.

Natural killer (NK) cells from nonimmunized mice capable of lysing EL-4 (C57BL/6 strain H-2b) tissue culture-adapted lymphoma cells have been analyzed and compared with NK cells which lyse YAC-1 (A-strain, H-2a) lymphoma cells. A correlation was seen in the ability of inbred and B6D2F1 mice to reject C57BL/6 (B6) bone-marrow grafts and the ability of their spleen cells to lyse EL-4 cells in vitro. This suggests that hybrid or hemopoietic histocompatibility antigens, (Hh-1b), relevant in the rejection of B6 stem cells may also be the relevant target structures for the anti-EL-4 NK cells. Certain features of these NK cells are similar to the NK cells reactive against YAC-1 cells. Both types of NK cells are present in athymic nude mice, are not affected by treatment with anti-immunoglobulin plus complement, and are not depleted by techniques that remove macrophages. NK activity against both targets is stimulated 3 d after injection of Corynebacterium parvum, and 24 h after challenge with polyinosinic:polycytidylic acid. Hydrocortisone acetate and cyclophosphamide lead to reduction of NK activity within 2-3 d after administration. However, the anti-YAC and anti-EL-4 NK reactivities differed in several important respects. Treatment of mice with 89Sr, the bone-seeking isotope, to deplete marrow-dependent cells, depleted the anti-YAC-1 but not anti-EL-4 cell functions. Anti-EL-4 NK cells were unaffected by silica particles in vivo or in vitro; the NK cells reactive to EL-4 cells matured functionally much earlier in life (5 d of age) and the function did not decline with age. Irradiated mice reconstituted with syngeneic marrow or spleen cells developed functional NK cells against EL-4 targets before they developed anti-YAC-1 NK cells in their spleen. Thus anti-EL-4 NK cells that express hybrid resistance in vitro appear to differ from anti-YAC-1 NK cells and do not require an intact marrow microenvironment for functional differentiation. Despite differences in the NK-cell types involved in the lysis of YAC-1 and EL-4 cells, these two tumor cells share certain common determinants. This was ascertained both by cold competition and by utilization of YAC-1 and EL-4 cell monolayers as immunoadsorbents. We conclude that Hh-1b is the common antigen present in EL-4 and YAC-1 cells, because B6D2F1 anti-B6 (anti-Hh-1b) cytotoxic T lymphocytes lysed both the tumor cells. Our data suggest that Hh-1b antigen is recognized by both types of NK cells, but that additional determinants must be present on YAC-1 cells. Two models of NK cell lysis compatible with the data are presented.

Animals

Cytokine- and Ig-producing T cells in mucosal effector tissues: analysis of IL-5- and IFN-gamma-producing T cells, T cell receptor expression, and IgA plasma cells from mouse salivary gland-associated tissues.

The present study has focused on the analysis of cytokine- and Ig-producing mononuclear cells (MC) that reside in the salivary glands and their associated tissues (SGAT) in the oral region. The SGAT are located under the mandibular area and consist of submandibular glands, periglandular lymph nodes, and cervical lymph nodes. MC were isolated from individual SGAT and examined for T cell subsets and TCR expression, in comparison with T cells obtained from other mucosa-associated and systemic tissues. Forty to fifty percent of MC in submandibular glands were CD3+ T cells, equally divided into CD4+ CD8- and CD4- CD8+ T cell subsets. On the other hand, the intestinal lamina propria and Peyer's patches possessed a approximately 2 to 3:1 ratio of CD4+ CD8- to CD4- T cells. A high frequency of CD4- CD8- (double negative) (DN) T cells (approximately 6 to 10%) was also isolated from submandibular glands. In contrast, approximately 70 to 90% of MC in periglandular lymph nodes and cervical lymph nodes were CD3+ T cells and like the peripheral lymph nodes consisted of fivefold higher numbers of CD4+ CD8- than CD4- CD8+ T cells, with low numbers of DN cells (less than 5%). When expression of gamma/delta and alpha/beta TCR was examined in individual T cell subsets of submandibular glands, the CD4- CD8+ and DN T cell fractions contained 25% and 100% gamma/delta TCR+ cells, respectively. On the other hand, essentially all CD4+ CD8- T cells in SGAT as well as CD4- CD8+ cells in periglandular lymph nodes and cervical lymph nodes were alpha/beta TCR+ T cells. When cytokine production was examined by using IFN-gamma- and IL-5-specific enzyme-linked immunospot assays, the CD3+ CD4+ CD8- T cells in submandibular glands contained T cells spontaneously producing IFN-gamma and IL-5. Further, IL-5 spot-forming cells (SFC) were two- to threefold greater in number, compared with IFN-gamma SFC. The periglandular lymph node T cells contained cytokine producing cells with a ratio of 2:1 for IL-5 and IFN-gamma SFC cells, whereas cervical lymph node T cells did not produce cytokines unless stimulated with T cell mitogens. When the isotype distribution of Ig-producing cells was examined among SGAT, submandibular glands contained large numbers of IgA-producing cells, with few IgM- and IgG-producing cells, a pattern similar to that of the lamina propria. Further, elevated numbers of IgA-secreting cells were also seen in periglandular lymph nodes but not in cervical lymph nodes.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

[Autoradiographic investigations on the effect of city smog extract on DNA synthesis and cell cycle of mammalian cells in vitro. II. Alterations of the cell cycle of hamsters kidney cells and hamster embryonic cells in presence of city smog extract (author's transl)].

We used the autoradiographic method according to Quastler and Sherman to analyse alterations in the cell cycle under the influence of city smog extracts. Investigations were performed on logarithmically growing cultures of kidney and embryonic cells of the Syrian golden hamster. Low concentrations of city smog extracts (0.125 micrograms/ml Benzo(a)pyren-equivalent) induced a remarkable delay of cell entrance into DNA-synthesis. Furthermore a considerable prolongation of generation time and phase of DNA-synthesis was detected. The number of mitosis was strongly reduced. Already a doubling of concentration of city smog extract caused an almost complete breakdown of the cell cycle and a disappearing of mitosis for a time period of 10 hours. Our results strongly indicate that city smog extracts lead to a severe alteration of the molecular biology of the cell. Taking this in consideration, it can be assumed that a long term exposure of human beings to the city smog could induce an injury of health.

Air Pollutants

Natural killer cells may be the only cells in normal mouse lymphoid cell populations endowed with cytolytic ability for antibody-coated tumour target cells.

Mouse normal lymphoid cells were analysed as to their ability to perform in three cytolytic systems: Ability to act as 'natural killer', NK, cells against a NK sensitive tumour target, YAC; as effector cells against IgG-coated 815 cells, or to function as effector cells against IgG-coated CRBC. NK activity and ADCC against the IgG-coated P815 cells were found to vary in parallel as affected by age, organ distribution and genotype of the effector cells. On the other hand, ADCC against CRBC was largely carried out by effector cells distinct from those functioning as NK cells or in ADCC against P815. Temperature pretreatment schedules at 37 degrees C showed both NK cells and ADCC ability against P815 to be highly sensitive on contrast to ADCC against CRBC. Likewise, inoculation of Corynebacterium parvum intraperitoneally will lead to reduction in ADCC ability against CRBC but increase in ADCC against P815 and NK activity. Blocking experiments using 'cold' inhibitor cells in the cytolytic assays indicated that NK cells and effector cells against IgG-coated P815 cells are the very same cells. We thus conclude that NK cells in the mouse also have the ability to express K cell activity against IgG-coated tumour target cells. In fact, our data suggest that the NK cells may be the only cell type in the mouse equipped with cytolytic potential for antibody-coated murine nucleated cells

Age Factors

Kinetics of anti-CD4-induced T helper cell depletion and inhibition of function. Activation of T cells by the CD3 pathway inhibits anti-CD4-mediated T cell elimination and down-regulation of cell surface CD4.

In vivo treatment with anti-CD4 antibody profoundly suppresses a number of T cell-dependent responses and is clinically useful in the treatment of certain mouse models of autoimmune disease. Treatment with anti-CD4 antibody will inactivate and can deplete CD4 T cells, but the mechanisms responsible for these effects are incompletely understood. When mouse spleen cells were exposed in vitro to both SRBC and monoclonal anti-CD4, there was 55% reduction of the anti-SRBC response. If cultures were preincubated with anti-CD4 for 48 h before in vitro challenge, the reduction was greater than 80%. When unfractionated spleen cells were cultured with anti-CD4 for 96 h, there was actual elimination of CD4 cells in these cultures since virtually all CD3+ cells were CD8+. Activation of T cells by exposure to anti-CD3 rendered them resistant to antibody-mediated CD4 depletion. This resistance to CD4 depletion was seen even in cultures that were pretreated with anti-CD4 for as long as 24 h before anti-CD3 exposure. In cultures of purified T cells, anti-CD4 did not eliminate CD4 T cells. However, culture of T cells with macrophage-rich adherent cells and anti-CD4 resulted in elimination of CD4 T cells. Thus, it appears that macrophages play a role in anti-CD4-induced T cell elimination. While anti-CD4 did not eliminate CD4 cells from a population of purified T cells, there was profound down-regulation of cell surface CD4. Activating T cells with immobilized anti-CD3 before addition of anti-CD4 prevented down-regulation of CD4. These experiments demonstrate that T cell activation by anti-CD3 renders the activated cells resistant to antibody-induced CD4 down-regulation and to antibody-induced CD4 T cell depletion. These findings may have relevance to the application of anti-CD4 therapy in human diseases that are mediated by activated Th cells.

Antigen-Antibody Reactions

Interactions between CD4+ T-cells and rat Schwann cells in vitro. 1. Antigen presentation by Lewis rat Schwann cells to P2-specific CD4+ T-cell lines.

Interactions between CD4+ P2-specific T-cell lines and Schwann cells were examined in vitro by scanning electron microscopy (SEM) and T-cell proliferation studies. CD4+ T-cell lines clustered around and attached to Schwann cells which expressed Major histocompatibility complex (MHC) class II molecules. Only those P2-specific T-cell lines capable of inducing experimental allergic neuritis (EAN) when injected into adult Lewis rats clustered around the Schwann cells. T-cell lines responsive to P2 but not able to induce EAN did not cluster around Schwann cells. The addition of exogenous P2 protein inhibited in a dose-dependent way clustering and proliferation of the P2-specific T-cell lines. Cytoplasmic P2 was detected in Schwann cells by immunofluorescent labelling and the results of proliferation assays in this study suggest that endogenous P2 protein was processed by the Schwann cells and presented to T-cell lines in association with MHC class II molecules. The clustering and proliferation of class II-restricted CD4+ P2-specific T-cell lines in the presence of Schwann cells provides evidence for a role for Schwann cells as facultative antigen presenting cells, processing and presenting 'self' endogenous antigen to CD4+ T-cell lines capable of inducing EAN.

Animals

Decreases in alpha beta T cell receptor negative T cells and CD8 cells, and an increase in CD4+ CD8+ cells in active Hashimoto's disease and subacute thyroiditis.

We examined peripheral lymphocyte subsets in patients with autoimmune thyroid disease, or subacute thyroiditis, in the active stage when possible. During destructive thyrotoxicosis arising from alpha beta T cell receptor (TCR) negative T (WT31-CD3+) cells and CD8 (CD4-CD8+) cells decreased and those of CD4+CD8+ cells increased slightly, resulting in proportional increases in CD4 (CD4+CD8-) cells, non-T, non-B (CD5-CD19-) cells, and the CD4/CD8 cell ratio. Changes were similar in active subacute thyroiditis. During stimulative thyrotoxicosis in active Graves' disease, the numbers of such T lymphocyte subsets were not changed, but only the number of CD5+ B (CD5+CD19+) cells increased markedly, resulting in proportional decreases in total T (CD3+) cells, alpha beta+ TCR T (WT31+CD3+) cells, CD8 cells, and non-T, non-B cells. A serial study of some of the patients showed opposite changes in alpha beta TCR- T cells, the CD4/CD8 cell ratio, and CD5+ B cells between the active stages of Graves' and Hashimoto's diseases. alpha beta TCR- T cells were mostly gamma delta TCR+ T (IIF2+ CD3+) cells in these patients. These data suggest that alpha beta TCR-T (gamma delta TCR+ T), CD8, and CD4+ CD8+ cells are important in thyroid destruction in Hashimoto's disease and subacute thyroiditis, and that CD5+ B cells are important in thyroid stimulation in Graves' disease.

Adult

Effects of concanavalin A-induced cells on the proliferative response of T cells. Concanavalin A-induced suppressor and amplifier cells to the proliferative response of human T cells to trinitrophenyl-modified autologous lymphocytes.

Effects of Con A-induced human mononuclear cells on the proliferative response of peripheral T cells were examined by using TNP-modified autologous lymphocytes as stimulator cells. Cells induced by incubation with Con A contained both suppressor cells and amplifier cells. The former were induced from nylon wool-nonadherent T cells and these precursor cells were sensitive to mitomycin treatment. On the other hand, amplifier precursor cells were nylon wool-nonadherent T cells and were resistant to mitomycin treatment. Cell proliferation was required for the induction of suppressor cells but not for the induction of amplifier cells. Con A-induced suppressor effector cells were both nylon wool-adherent and nonadherent cells, on the contrary, Con A-induced amplifier effector cells were nonadherent cells. A small number of macrophages enhanced the suppressive activity of nonadherent T cells when added at the induction phase of suppressor T cells.

Cell Adhesion

T-cell-mediated cytotoxic immune responses to F9 teratocarcinoma cells: cytolytic effector T cells lyse H-2-negative F9 cells and syngeneic spermatogonia.

Murine thymus derived (T) lymphocytes primed in vivo to mouse 129 (H-2bc) derived H-2-negative F9 embryonal carcinoma cells and rechallenged in vitro with X-irradiated F9 stimulator cells differentiated into anti-F9 cell immune cytotoxic T lymphocytes (CTL). Using CBA mouse derived splenic responder T cells, F9 stimulator cells triggered a primary cytotoxic anti-F9 response. The CTL generated lysed the F9 antigen-positive target cells F9. PCC3 and PCC4, but not the F9 antigen-negative mouse 129 derived PYS tumor cells, nor LPS induced H-2bc blast cells. Mouse 129 anti-F9 cell antisera but not H-2k anti-H-2bc antisera blocked the lytic interaction with F9 target cells. Similarily unlabeled F9 cells but not H-2bc blast cells inhibited the anti-F9 cell cytotoxicity H-2k anti-F9 cell immune CTL were found to be cytotoxic for syngeneic spermatogonia, known to express the F9 antigen. The results suggest not only that CTL can recognize and lyse H-2-negative target cells, but also that CTL precursors can be sensitized against H-2-negative stimulator cells. From the data available it may be inferred that anti-F9 Cell immune CTL recognize the F9 antigen, known to be linked with the T/t locus. Since anti-F9 cell immune CTL lyse syngeneic spermatogonia, the system may be useful to analyze in vitro the induction and effector phase of a T-cell-mediated cytotoxic autoimmune orchitis.

Animals

LAK-cell-mediated cytotoxicity against tumor cell targets used to monitor the stimulatory effect of interleukin-2: cytotoxicity, target recognition and phenotype of effector cells lysing the Daudi, T24 and K562 tumor cell lines.

The T24 transitional bladder carcinoma cell line, the Daudi Burkitt lymphoma cell line and the K562 erythroleukemia cell line have all been used as target cells in 51Cr release assays to measure the in vivo induced lymphokine-activated killer (LAK) cell cytotoxicity during interleukin-2 (IL-2) therapy of cancer patients. However, different relationships between the clinical response to IL-2 treatment and the LAK cytotoxicity have been reported using these three different target cells. The purpose of the present study was to evaluate whether the LAK cytotoxicities measured against these target cells represent similar effector-to-target-cell interactions, so similar conclusions may be drawn of 51Cr release assay results in which the cell lines are used as target cells. The cytotoxicity of peripheral blood mononuclear cells (PBMC) and PBMC depleted of different natural killer and T cell subsets was measured against the three targets. LAK cell recognition of targets was evaluated by cold target inhibition experiments, and the development of LAK-cell-mediated lysis with time was evaluated in 51Cr release assays of varying duration. This study shows that LAK-mediated lysis of T24 and Daudi cells was closely related and LAK cytotoxicity measured in 51Cr release assays against these two target cells may be measurement of similar effector-to-target cell interactions.

Antigens, CD

Immunoregulatory functions for murine intraepithelial lymphocytes: gamma/delta T cell receptor-positive (TCR+) T cells abrogate oral tolerance, while alpha/beta TCR+ T cells provide B cell help.

Past work has shown that a subset of effector T cells with unique characteristics could abrogate hapten- or antigen-induced tolerance, and the reconstitution of this immune response has been termed contrasuppression. We have studied contrasuppression in a model of oral tolerance (OT) in which adoptively transferred antigen-specific T contrasuppressor (Tcs) cells reverse OT and result in antibody responses to the eliciting antigen. In the present study, we show that murine intraepithelial lymphocytes (IELs) from mice orally immunized with sheep red blood cells (SRBC) contain T cells that exhibit Tcs cell activity. This effect was mediated by CD3+ gamma/delta T cell receptor-positive (TCR+), but not alpha/beta TCR+ T cells, and gamma/delta TCR+ Tcs cells were associated with both the CD4-,CD8+ and CD4-,CD8- (double-negative) IEL fractions. The CD4-,CD8+ gamma/delta TCR+ IELs were further separated into Vicia villosa-adherent and -nonadherent fractions. Adoptive transfer of V. villosa-adherent gamma/delta TCR+ T cells to mice with OT to SRBC resulted in splenic IgA, IgM, and IgG subclass anti-SRBC responses, while V. villosa-nonadherent gamma/delta TCR+ T cells were without activity. The gamma/delta TCR+ IELs did not support in vitro antibody responses in B cell cultures, while alpha/beta TCR+ IELs were effective T helper cells. Further, cytokine production by the gamma/delta TCR+ IELs was examined, and the gamma/delta TCR+ V. villosa-adherent fraction, which possessed contrasuppressor function, contained low levels of IL-5 mRNA and small numbers of IL-5-producing cells when compared with alpha/beta TCR+ IELs and V. villosa-nonadherent gamma/delta TCR+ IELs. Our results now show that mouse IELs contain two distinct types of T cells that function in the immune response, e.g., alpha/beta TCR+ T cells that produce IL-5 and function as helper cells, and gamma/delta TCR+ T cells that restore antibody responses in mice that had been orally tolerized with antigen.

Animals

Cells and mediators involved in immunoglobulin synthesis by human circulating mononuclear cells. IV. B cells synthesize but do not secrete immunoglobulins because of a defect in the non-T non-B (null) cells.

Null cells (non-T and non-B lymphocytes) have previously been demonstrated to be obligatory participants for immunoglobulin synthesis and secretion by normal B cells in culture. Normal null cells have been demonstrated to secrete a factor, human immunoglobulin synthesis/secretion-facilitating factor (HISFF), which can replace the null cells in the culture. In this investigation, the B cells of an 8-month-old male infant and a 46-year-old male adult who presented with a humoral (antibody) immunodeficiency syndrome synthesized immunoglobulin but did not secrete immunoglobulin after culture with pokeweed mitogen and autologous T cells, monocytes, and null cells. In contrast, the patients' B cells synthesized and secreted immunoglobulin after the addition of allogeneic normal null cells or HISFF to the cultures. The same results were obtained with the cells of the infant and the adult patient tested at monthly intervals for 4 months. The results demonstrate that the patients' T cells, B cells, and monocytes functioned normally and that only the patients' null cells were defective. These findings provide an explanation for the absence of immunoglobulin in the circulation of "non(immunoglobulin)secretors," although they possess normal numbers of circulating immunoglobulin-synthesizing B cells. The defect is in the null cell and not in the B cell and consists of the inability of the null cell to secrete HISFF that facilitates the synthesis and secretion of immunoglobulin by the B cell.

Antigens, CD

Expression of T-cell differentiation antigens on effector cells in cell-mediated cytotoxicity in vitro. Evidence for functional heterogeneity related to the surface phenotype of T cells.

The cell-mediated cytotoxicity (CMC) of nonadherent cells from the peritoneal cavity (NAPC) of alloimmunized mice can be measured by the [3H]proline microassay. The exhibition of thymus-derived (T) cell antigens on these killer cells was studied by incubating them with the relevant T-cell antisera and complement (C), under optimal conditions for lysis, before performance of the CMC assay. Under these conditions, the following T-cell antigens were demonstrable on the killer population in terms of percent reduction in CMC by the respective antisera: (a) Thy-1.1 (83%) and Thy-1.2 (100%), (b) MSLA (86%), (c) NTA-RA (a T-cell antigen recognized by naturally occurring autoantibody of NZB mice) (62%), (d) Ly1.1 )58%, (e) Ly-2.1 (11%; considered a marginal result) and Ly-2.2 (63%), and (f) Ly-3.2 (77%). The following were not demonstrable: (g) TL, and (h) Ly-1.2. (i) The antigen Ly-3.1 was not studied. Omission of C deprived all T-cell antisera tested of their capacity to suppress CMC, indicating that the cell components recognized by such antisera may perform no direct function in CMC. On the assumption that all Ly+ cells are Thy-1+, it is clear that the T-cell members of the immune NAPC population must be heterogenous. This follows from the fact that the proportions of T cells lysed by different Ly antisera did not correspond with ensuing degree of loss of CMC capacity. The extremes were represented by anti-Ly-1.2 (74% Thy-1+ cells lysed, but no reduction in CMC) and Ly-3.2 (54% Thy-1+ cells lysed, with 77% reduction in CMC). From this initial survey it appears that the C57BL/6 mice killer T-cell population active in CMC in vitro is relatively rich in surface antigens of the Ly-2/Ly-3 category and relatively poor in representation of the Ly-1 surface antigens. It remains to be seen whether this killer cell phenotype, poor in Ly-1 and rich in Ly-2/Ly-3, is characteristic of the mouse generally. From these results it appears that subsets of T cells with different immunological functions may exhibit qualitative or quantitative differences in surface antigens specified by different Ly loci; this will be easier to assess in the future when the results of experiments with the same Ly antisera but dealing with T-cell functions other than CMC become available.

Animals

The relation between the T cells responsible for cell-mediated cytotoxic killing of mastocytoma cells and the helper-cell effect.

The relationship between T cells involved in cell-mediated immunity and antibody response of C57Bl/6J mice towards DBA/2 mastocytoma cells was investigated. Spleen cells primed with viable mastocytoma cells demonstrated marked cell-mediated cytotoxicity (CMC) in vitro, but antibody response of these cells to a hapten (TNP) conjugated to the allogeneic tumour cells in vitro was suppressed as compared with that of normal spleen cells. In contrast, spleen cells primed with frozen-thawed mastocytoma cells showed no CMC, but antibody response to the hapten in vitro of these cells was enhanced. C57Bl/6J mice primed with frozen-thawed mastocytoma cells produced more cytotoxic antibody than non-primed mice when immunized with viable mastocytoma cells. These results indicate that T cells involved in cell-mediated immunity and those involved in the antibody response to allogeneic mastocytoma cells are distinct.?222

Animals