PubMed HealthSearch

Biomedical subjects

L Flores-Romo

Publications and source records attributed to L Flores-Romo.

At least 19 recordsLinked to original sources

Entamoeba histolytica: liver invasion and abscess production by intraperitoneal inoculation of trophozoites in hamsters, Mesocricetus auratus.

Intraperitoneal inoculation of axenically cultured Entamoeba histolytica trophozoites constitutes an easy to perform, highly reproducible procedure for inducing amebic liver abscesses in hamsters. Efficiency in abscess production (95% of infected animals after 1 week) was similar to data reported using direct intrahepatic or intraportal inoculation. The morphological sequence of infection shows that amebas in the peritoneal cavity initially produce a large exudate constituted mainly of acute inflammatory cells. These cells form a rim of polymorphonuclear leukocytes surrounding the amebas, which adhere to the trophozoite and can sometimes be observed polarized to one end of the parasite, suggesting capping of surface receptors. Early stages are also characterized by the production of distant inflammatory reactions in the hepatic portal spaces. At 6 h postintraperitoneal inoculation, larger foci of inflammatory reactions surrounding amebas are developed in the peritoneum, extending to and damaging the liver surface membranes as well as the serosa of other internal organs. Thereafter, tissue damage progresses deeper into the liver parenchyma, and a few days later, coalescing granulomas and large necrotic areas are observed in the liver tissue. Based on the present morphological time-sequence study, we suggest that inflammatory cells associated with E. histolytica trophozoites play an important role in commencing the damage of liver sheaths and producing the subsequent parenchymal lesions. The simplicity and reliability of this model are important factors to consider when large numbers of experimentally induced amebic liver abscesses are needed.

Animals

CD40 ligation on human cord blood CD34+ hematopoietic progenitors induces their proliferation and differentiation into functional dendritic cells.

Human CD34+ multilineage progenitor cells (CD34HPC) from cord blood and bone marrow express CD40, a member of the tumor necrosis factor-receptor family present on various hematopoietic and nonhematopoietic cells. As hyper-IgM patients with mutated CD40 ligand (CD40L) exhibit neutropenia, no B cell memory, and altered T cell functions leading to severe infections, we investigated the potential role of CD40 on CD34HPC development. CD40-activated cord blood CD34HPC were found to proliferate and differentiate independently of granulocyte/macrophage colony-stimulating factor, into a cell population with prominent dendritic cell (DC) attributes including priming of allogeneic naive T cells. DC generated via the CD40 pathway displayed strong major histocompatibility complex class II DR but lacked detectable CD1a and CD40 expression. These features were shared by a dendritic population identified in situ in tonsillar T cell areas. Taken together, the present data demonstrate that CD40 is functional on CD34HPC and its cross-linking by CD40L+ cells results in the generation of DC that may prime immune reactions during antigen-driven responses to pathogenic invasion, thus providing a link between hematopoiesis, innate, and adaptive immunity.

Animals

Human interdigitating dendritic cells directly stimulate CD40-activated naive B cells.

Human interdigitating dendritic cells (IDC) were isolated from tonsils based on their CD40+ lineage-negative expression in situ. Isolated IDC displayed a phenotypic profile similar to that of IDC in tonsils and spleen in situ, characterized by high-level expression of major histocompatibility complex class II, the co-stimulatory molecules B7.1 (CD80) and B7.2 (CD86), expression of the late DC maturation marker CD83, and no expression of CD1a, CD13, or CD33. IDC also showed weak nonspecific esterase staining and had the ability to induce an allogeneic mixed lymphocyte reaction. In this study, we further show that in the presence of surrogate activated T cells in the form of CD40 ligation and IL-2, IDC enhance the proliferation of naive B cells and induce their differentiation into plasma cells producing IgM. Evidence for the anatomical co-localization of naive B cells and IDC in the T cell area together with the data obtained in vitro implies a role for IDC in the initiation of the extrafollicular reaction.

B-Lymphocytes

In vitro Entamoeba histolytica adhesion to human endothelium: a comparison using two strains of different virulence.

Extraintestinal dissemination of Entamoeba histolytica is frequently manifested by the life-threatening amebic liver abscess (ALA). The hepatic establishment of amebas implies invasion of blood vessels and contact with the endothelium. By means of a fluorescence-based quantitative adhesion assay, we assessed the binding to human endothelial cells of two E. histolytica strains of different virulence. The highly virulent strain (L-A) adhered substantially more strongly to unstimulated endothelium than the non-virulent one (BG3). Attachment of L-A was increased by treatment of endothelial cells with interleukin-1 beta (IL1 beta). Other proinflammatory cytokines such as interferon-gamma (IFN gamma) and tumor necrosis factor-alpha (TNF alpha) did not modify the spontaneous adhesion capacity of amebas. For purposes of comparison we also performed adhesion of the parasites to skin fibroblasts. Adhesion to this cell type was quite low (< 10%). Parasite virulence, differential adhesive capacity to endothelial cells, and modulation of the latter phenomenon by proinflammatory factors (IL1 beta) may influence the evolution and outcome of extraintestinal amebiasis, especially hepatic abscesses.

Animals

CD40 ligation counteracts Fas-induced apoptosis of human dendritic cells.

Dendritic cells (DC) are cells of the hematopoletic system specialized in capturing antigens and initiating T cell-mediated immune responses. We show here that human DC generated in vitro by culturing CD34+ cord blood progenitor cells in granulocyte macrophage colony stimulating factor plus tumor necrosis factor-alpha express the Fas antigen (APO-1, CD95) and undergo apoptosis upon triggering of Fas by mAb. However, only a proportion of the cells die in response to Fas ligation, an observation that may be related to the virtual absence of the bcl-2 protein in about half of the cells. Ligation of DC CD40 by culture on CD40L-transfected fibroblastic cells up-regulates the expression of bcl-2 and, concomitantly, renders DC virtually resistant to Fas-induced apoptosis. Parallel experiments with mature, interdigitating dendritic cells (IDC) isolated from tonsils revealed that IDC express Fas but do not enter into apoptosis following Fas ligation, a finding that may be explained by their high levels of bcl-2. Thus, upon encountering antigen-specific T cells, DC become resistant to Fas-induced apoptosis, as a consequence of CD40 ligation and possibly by mechanisms associated to the up-regulation of bcl-2 protein expression.

Antibodies, Monoclonal

T cell interleukin-17 induces stromal cells to produce proinflammatory and hematopoietic cytokines.

Analysis of the cDNA encoding murine interleukin (IL) 17 (cytotoxic T lymphocyte associated antigen 8) predicted a secreted protein sharing 57% amino acid identity with the protein predicted from ORF13, an open reading frame of Herpesvirus saimiri. Here we report on the cloning of human IL-17 (hIL-17), the human counterpart of murine IL-17. hIL-17 is a glycoprotein of 155 amino acids secreted as an homodimer by activated memory CD4+ T cells. Although devoid of direct effects on cells of hematopoietic origin, hIL-17 and the product of its viral counterpart, ORF13, stimulate epithelial, endothelial, and fibroblastic cells to secrete cytokines such as IL-6, IL-8, and granulocyte-colony-stimulating factor, as well as prostaglandin E2. Furthermore, when cultured in the presence of hIL-17, fibroblasts could sustain the proliferation of CD34+ hematopoietic progenitors and their preferential maturation into neutrophils. These observations suggest that hIL-17 may constitute (a) an early initiator of the T cell-dependent inflammmatory reaction; and (b) an element of the cytokine network that bridges the immune system to hematopoiesis.

Amino Acid Sequence

IL-8-induced signal transduction in T lymphocytes involves receptor-mediated activation of phospholipases C and D.

We have characterized the IL-8-induced signal transduction processes in T lymphocytes. A basal level of IL-8 receptor expression was shown on mixed PBL, as identified by using phycoerythrin (PE)-coupled IL-8, and this expression was increased following IL-2 stimulation. Scatchard analysis of T cells revealed competitive binding of IL-8 with a Kd of 0.55 nM, with approximately 1200 receptors per cell, on freshly isolated T cells. After 24 h in culture following purification, reverse transcriptase PCR (RT-PCR) analyses show the mRNA for only the type B IL-8R on these cultured T lymphocytes and the cell line MOLT-4. Stimulation of T lymphocytes or T cell clones with IL-8 led to generation of inositol trisphosphate and calcium flux. In addition, when T cells were prelabeled with [3H]oleic acid, IL-8 caused a long lasting, time- and dose-related increase in [3H]phosphatidylethanol (PtE), indicating activation of phospholipase D (PLD). By contrast, this IL-8-dependent PLD activity was undetectable in IL-8-stimulated neutrophils. PLD activation appeared to be downstream of protein kinase C, because several inhibitors abrogated the increase in [3H]PtE, whereas guanosine-5'-O-(3-thiotriphosphate (GTP(gamma)S) and inositol trisphosphorothioate (IP3S3) both increased the generation of [3H]PtE. Together, these results demonstrate that the IL-8RB receptor is sufficient to mediate phospholipase C (PLC) and PLD activation in T lymphocytes, but not in neutrophils, and indicate an important difference in receptor usage and signal transduction pathways between IL-8-stimulated lymphocytes and neutrophils.

CD4-Positive T-Lymphocytes

Detoxified venom from Crotalus durissus terrificus is devoid of cytotoxic activity and induces mitogenesis.

The venom from the snake Crotalus durissus terrificus was detoxified by stepwise incorporation of stable cationic iodine. The venoid, in a dosage equivalent to 100 LD50 of the lethal venom, was injected in mice without lethal exits. The native venom (NAT), or its toxoided (TXD) derivative were incubated in presence or absence of mitogens, with human mononuclear (MN), B and T cells, with a pulse of [3H]Thymidine. No synergistic or antagonistic effects were observed in the combined activity of the mitogens and NAT or TXD. In the direct action of NAT the incorporation of radioactivity into MN and T cells diminished with venom increase in concentration indicating that the cytotoxicity of the native venom was correlated with the amount added. With B cells, the native venom exercised an initial mitogenic activity, declining in the higher concentration. On the other hand, the TXD showed a consistent effect, increasing the thymidine uptake in a manner related to concentration. This stimulation by TXD was observed with all groups of cells. The results indicate that, by abolishing direct cytotoxic activity with toxoiding of this venom, a derivative that enhances mitogenesis in these white cells can be obtained.

Animals

Interleukin-8 and RANTES induce the adhesion of the human basophilic cell line KU-812 to human endothelial cell monolayers.

Basophils are implicated in the pathogenesis of the late-phase allergic reaction, but the mechanisms by which circulating basophils adhere to vascular endothelium and migrate to lesional sites remain unclear. In order to assess the biological similarity of the basophilic cell line KU-812 to normal human basophils, we have compared the adhesion response of this cell line and normal basophils, following challenge with interleukin-8 (IL-8) and RANTES. We demonstrate here that IL-8 and RANTES are able to stimulate the adherence of the basophilic cell line, KU-812, to cytokine-activated human umbilical vein endothelium (HUVEC). The chemokine-induced increase in adhesion was dose-related and was maximal after prior priming with IL-5. The stimulation of adhesion was partially inhibited by co-incubation with anti-CD18 and anti-CD11c antibodies and antibodies to the beta 1-integrins. In comparison, the chemokine-induced adhesion of normal human basophils was only inhibited by the beta 2-integrins. These chemokines were also able to induce the migration of KU-812 in a dose-dependent manner, but only after prior treatment with phorbol myristate acetate (PMA) or IL-5. In all cases tested, IL-8 was more potent and efficacious than RANTES. We conclude from these studies that these members of the chemokine superfamily may play an important role in the recruitment of reactive leukocytes in allergic inflammation, by stimulating their adhesion and subsequent migration from the vasculature into the inflammatory sites. However, it is apparent that KU-812 is not an adequate substitute for normal human basophils in order to investigate chemokine biology.

Base Sequence

A fluorescence-based quantitative adhesion assay to study interactions between Entamoeba histolytica and human enterocytes. Effect of proinflammatory cytokines.

In order to study the initial events during infection of target cells by the enteric pathogen Entamoeba histolytica, we developed a quantitative adhesion assay based on the use of a human colonic cell line (CaCo-2) and biotinylated amoebae tagged with fluorescein. To prevent the strong and rapid lytic activity of Entamoeba histolytica on colonic cells, which would otherwise impede the study of the primary adhesion steps, parasites were mildly fixed, biotinylated and labelled with streptavidin-FITC. After labelled parasites have bound to enterocytes, nonadhered amoebae are removed by washing and attached parasites quantified by means of an automated fluorescence plate reader. The bioassay is simple, nonhazardous and can be completed in 1.5 h. We were able to detect ranges from 200 to 20,000 fluorescent parasites per microwell in a 96-well plate, containing approximately 10(5) colonic cells. Fluorescence intensity (arbitrary units) increased in direct relationship to the number of parasites added per well, and was not limited by the size of the culture plate (96, 24 or six wells). As an example of the value of this assay, two proinflammatory cytokines (interleukin-1, (IL-1 beta) and interferon-gamma (IFN-gamma) known to influence the adhesion properties of endothelial and epithelial cells, were used to assess their effects upon enterocyte-entamoeba binding. The increase in amoebae binding revealed by cytokine treatment to enterocytes suggests that the parasite may take advantage of inflammatory stimuli in order to increase its binding to colonic epithelium. We believe this rapid, sensitive and simple method offers the potential for large scale screening assays to study the immunobiology of this protozoal infection by analysing the mechanisms involved in the primary interactions between Entamoeba histolytica and enterocytes.

Animals

Induction of human IgE synthesis in B cells by mast cells and basophils.

Immunoglobulin E (IgE) is central to the induction of allergic diseases through its binding to the high-affinity receptor (Fc epsilon R1) on mast cells and basophils. Crosslinking by allergens of the bound IgE leads to the release of various inflammatory mediators. IgE production by B cells requires a physical interaction with T cells, involving a number of surface adhesion molecules, as well as the soluble factors interleukin-4 (IL-4) and IL-13 (ref. 5) produced by T cells, basophils and mast cells. Here we report that, in the presence of IL-4, mast and basophilic cell lines can provide the cell contact signals that are required for IgE synthesis. The human cell lines HMC-1 (mast) and KU812 (basophilic) both express the ligand for CD40 (CD40L) which is shown to be responsible for the IgE production. Moreover, freshly isolated purified human lung mast cells and blood basophils are also shown to express CD40L and to induce IgE production. This evidence suggests that mast cells and basophils may therefore play a key role in allergy not only by producing inflammatory mediators, but also by directly regulating IgE production independently of T cells.

Animals

Inhibition of an in vivo antigen-specific IgE response by antibodies to CD23.

Immunoglobulin E (IgE) mediates many allergic responses. CD23 is a 45-kilodalton type II transmembrane glycoprotein expressed in many cell types. It is a low-affinity IgE receptor and interacts specifically with CD21, thereby modulating IgE production by B lymphocytes in vitro. In an in vivo model of an allergen-specific IgE response, administration of a rabbit polyclonal antibody to recombinant human truncated CD23 resulted in up to 90 percent inhibition of ovalbumin-specific IgE synthesis. Both Fabs and intact IgG inhibited IgE production in vitro and in vivo. Thus, CD23 participates in the regulation of IgE synthesis in vivo and so could be important in allergic disease.

Amino Acid Sequence

A new pair of surface molecules involved in human IgE regulation.

The molecules controlling IgE production are the subject of intense study in the effort to find new ways to treat allergic diseases. One candidate, the CD23 molecule, a low affinity receptor for IgE, was recently identified to interact with another molecule, named CD21, in the regulation of IgE production.

B-Lymphocytes

Receptors for IgE.

Following advances during the past 5 years in our understanding of the molecular structure of receptors for IgE, progress has been made in elucidating the structure and function of IgE receptors and the signalling events through these receptors. IgE is not the only ligand for some of these receptors, leading to their having unexpected and interesting biological activities.

Animals

Anti-CD40 antibody stimulates the VLA-4-dependent adhesion of normal and LFA-1-deficient B cells to endothelium.

We have demonstrated that anti-CD40 antibody stimulates the heterotypic adhesion of B cells to endothelial cells. This has been shown by using normal B lymphocytes and B-cell lines in a quantitative adhesion assay. When B cells, B-cell lines and Epstein-Barr virus (EBV)-transformed B cells from a patient with leucocyte adhesion deficiency (LAD) were stimulated with anti-CD40 antibody, they were found to adhere to both untreated and interleukin-1 (IL-1)-stimulated human umbilical vein endothelial cells (HUVEC), and to the lung carcinoma line A549. To identify the adhesion receptors responsible for this anti-CD40-induced adhesion, cells were pretreated with blocking antibodies prior to assay. Our results indicate that anti-CD40-stimulated adhesion of tonsillar B cells, B-cell lines RPMI-8866, JY, and an EBV-transformed LAD-cell line were predominantly dependent on the very late antigen-4 (VLA-4)-vascular cell adhesion molecule (VCAM) interaction. Anti-CD40-induced adhesion appears to be dependent on the activation of protein tyrosine kinase and protein kinase C and on the presence of divalent cations.

Antibodies

Growth factor requirements for the stimulation of germinal center B cells: evidence for an IL-2-dependent pathway of development.

Germinal center (GC) B cells readily undergo apoptosis, a tendency which can be suppressed in vitro by immobilized anti-Ig; mAb to CD40 and soluble CD23 (in synergy with IL-1 alpha) also effect rescue of GC cells from programmed cell death. In the present study, the signals which stimulate rescued GC populations to DNA synthesis have been examined and compared to those established for the activation of follicular mantle (FM) B cells. On co-culture with anti-Ig, optimal responses in FM B cells can be achieved with a combination of IL-4 and CD40 antibody; these activities also provided a modest stimulus to GC cells but, for this population, anti-Ig was ineffective at augmenting the response further. Stimulations of GC B cells were enhanced, however, when performed on a support of primary fetal lung fibroblasts; a major influence of stroma was to promote, by direct cell-cell contact, the CD40-dependent survival of GC B cells. FM B cells were relatively independent of such stromal support. In marked contrast to FM cells, GC B cells were found to respond by enhanced DNA synthesis to IL-2 even when quite low concentrations of the factor were present (IC50 = 2 U/ml). Stimulation of GC cells via this pathway was augmented almost 2-fold on the inclusion of anti-Ig whereas neither fibroblasts, IL-4, nor CD40 antibody made any additional contribution to the IL-2-dependent response. The requirements found for stimulating GC cells in vitro are discussed with reference to the signals that this population may encounter in appropriate microenvironments in vivo: the variety of options apparently available could reflect changing priorities at different stages of a developing GC response.

Antigens, CD