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Lymphokine-activated killer cells selectively kill tumor cells in bone marrow without compromising bone marrow stem cell function in vitro.

Although it has been demonstrated that lymphokine-activated killer (LAK) cells kill tumor cells in a selective way without being toxic to a variety of normal cells, contradictory results exist about the possible toxicity of natural killer (NK) and LAK cells for hematopoietic progenitor cells. Therefore, the cytolytic activity and growth inhibitory effects of LAK cells on normal bone marrow progenitor cells and the ability of LAK cells to eliminate neoplastic hematopoietic cells from populations of bone marrow cells in vitro was studied. The results of these experiments show the following: (1) LAK cells have little cytolytic activity against normal bone marrow cells; (2) normal bone marrow cells fail to cold target compete for the killing of the hematopoietic tumor cell lines K562 and HL60 or freshly frozen acute myelocytic leukemia (AML) blast cells by LAK cells; (3) LAK cells inhibit the growth of K562 and HL60 to more than 90% in clonogenic assays; (4) LAK cells have no inhibitory effect on hematopoietic progenitor growth in CFU-GM (colony-forming unit-granulocytes, macrophages), CFU-E (colony-forming unit-erythrocytes), BFU-E (burst-forming units-erythrocytes), or CFU-GEMM (colony-forming unit-granulocytes, erythrocytes, macrophages, megakaryocytes) assays. These results indicate that LAK cells have low toxicity for normal bone marrow and that LAK activity against tumor cells is not adversely affected by the presence of normal bone marrow cells. The differences in cytolysis and growth inhibition of neoplastic hematopoietic cells and hematopoietic progenitor cells by LAK cells in vitro could create a therapeutic index that might allow the use of LAK cells for cleansing of the autologous bone marrow graft and for adjuvant therapy in combination with autologous bone marrow transplantation without compromising the reconstitution of the bone marrow in the host.

Bone Marrow

In vitro selection and extended culture of antigen-specific T lymphocytes. I. Description of selection culture procedure and initial characterization of selected cells.

Specific selection of antigen-responsive guinea pig peritoneal exudate lymphocytes (PELs) was achieved by a selection culture procedure. This procedure involved the addition of PELs from immune donors to monolayers of antigen-pulsed adherent peritoneal exudate cells from nonprimed syngeneic donors. PELs which failed to adhere were discarded at 24 and 48 h; after 1 wk of culture, lymphocytes were obtained which were highly responsive to the antigen for which they were selected but which demonstrated little or no response to other antigens to which the original donor of the lymphocyte was immune. These selected cells were largely T lymphocytes and could be maintained in culture for 2-5 wk in an antigen-responsive state and, in 20-30% of cases, for 8-10 wk in an antigen-independent state.

Albumins

T-cell selection and T-cell receptor variable beta-chain usage in chronic hemodialysis patients.

Thymic and extrathymic selection processes are responsible for the shape of the T-cell repertoire. T-cell receptor (TCR) variable (V) chain usage, holding a place in tolerance, autoimmunity and response to external agents, was analyzed in 41 patients maintained on chronic hemodialysis treatment. Leukocyte (mean: 6444 +/- 2277 cells/microliters), lymphocyte (mean: 1457 +/- 707 cells/microliters) and T-cell (mean: 67 +/- 16%) counts were within expected limits, but hemodialysis patients showed an impressive increase of TCR V beta 6.7 positive peripheral blood lymphocytes (PBL) and a massive deletion of TCR V beta 8 positive PBL. V beta 6.7 positive PBL were detectable in all hemodialysis patients (n = 41, mean: 2.47 +/- 1.61% PBL) in contrast to a healthy population, where only 45% of subjects expressed V beta 6.7 on PBL (n = 9, mean: 3.50 +/- 1.83% PBL). Only 27% of our hemodialysis patients expressed V beta 8 on PBL (n = 11, mean: 1.00 +/- 1.94% PBL) in contrast to healthy subjects, who presented V beta 8 positive PBL (n = 20, mean: 2.89 +/- 1.23% PBL) in every case. Neither primary kidney disease, nor response to vaccination for hepatitis-B, nor dialyzer membranes used, were associated with these alterations of the TCR V beta-pool. It is likely, that the well-known impairment of the cytokine network in chronic renal failure, uremic toxins or response to infectious agents, may contribute to these different and possibly independent T-cell selection mechanisms in uremia.

Cell Separation

Establishment of an osseous cell line from fetal rat calvaria using an immunocytolytic method of cell selection: characterization of the cell line and of derived clones.

Using selective media and complement-mediated lysis of primary cultures of a fetal rat calvarial cell population, we have developed a cell line (OBCK6) that exhibits osteoblastic characteristics. OBCK6 cells demonstrated enhanced parathyroid hormone (PTH)-stimulated adenylate cyclase activity relative to the primary calvarial population, production of alkaline phosphatase activity and type 1 collagen, and the capacity to form mineralized nodules in unsupplemented medium after prolonged (22-26 day) culture. Two sublines, CFK1 and CFK2, which were isolated by dilution cloning, differed morphologically and with respect to growth rate. CFK1 cells demonstrated high PTH and prostaglandin E2-stimulated adenylate cyclase activity, whereas only low PTH-stimulated activity was observed in CFK2 cells. Retinoic acid and 1,25-dihydroxyvitamin D3 [1,25(OH)2D3] each reduced PTH-stimulated adenylate cyclase activity in both the cell types. Retinoic acid and dexamethasone reduced and 1,25(OH)2D3 enhanced alkaline phosphatase activity in these cells. PTH significantly augmented alkaline phosphatase activity to a much greater extent in CFK1 than in CFK2 cells. Both CFK1 and CFK2 cells expressed type I but type III collagen, and neither expressed osteocalcin. Strong Alcian blue staining of CFK2 cells was suggestive of a cartilaginous phenotype. These three cell lines, therefore, demonstrated discrete characteristics of skeletal cell function and should provide important models for evaluation of mechanisms of mineralization and for control of skeletal cell growth and mesenchymal differentiation in vitro.

Adenylyl Cyclases

Growth and metastasis of hypermotile, hyperinvasive cancer cells selected in vitro by rapid locomotion under various conditions.

Cancer cells selected from a cultured murine fibrosarcoma by rapid migration through micropore membranes moved considerably faster through such membranes and invaded biological tissues much more efficiently than did the unselected parent cells. The present data show that populations of cells selected by unstimulated migration or by haptotaxis to laminin moved not only faster, but also in larger numbers than the parent cells. However, the selected cells were far less efficient than the parent cells in forming spontaneous lung metastases in syngeneic mice, although all cell lines were 100 per cent tumorigenic. Analysis of paired data within each group showed no relationship between the primary tumor size at any observation time and the number of lung metastases finally formed. Therefore, although the parent cell line produced primary tumors growing slightly more rapidly than did the various lines of hypermotile cells, this was probably not the main cause of the difference in spontaneous metastasis formation between the groups. Lung colonization experiments performed by intravenous injection of cells could not explain the spontaneous metastasis results. In vitro, the cells selected by rapid haptotaxis to laminin grew considerably better than the other cells in 0.1 per cent fetal bovine serum, but there were no, or only minor, differences in higher serum concentrations. Combined, these results indicate that small subpopulations of cells selected by extreme efficiency in one step of the metastasis process may be so specialized that they perform poorly in other steps. Therefore, the results do not disprove the concept that tumor cell migration plays an important part in metastasis.

Animals

Peripheral T cells select the B-cell repertoire in old mice.

These studies have shown that the alterations in the repertoire of antibody produced by old mice is not due to an intrinsic defect in the bone marrow or in the B-lymphocyte population arising from the bone marrow but rather to a selective downregulation by auto-anti-idiotypic antibody and idiotype-anti-idiotype interactions, shifting the idiotype distribution in the peripheral B-cell population. Thus, the clonal distributions of B cells generated by bone marrow of old and young mice are very comparable. The age-related differences in antibodies expressed by young and old mice are, to a great extent, determined by the activity of a peripheral regulatory immune network. This immune cellular network operates prior to exposure to antigen, presumably on the basis of an idiotype-anti-idiotype network between T and B lymphocytes. After exposure to antigen, a network of idiotype-anti-idiotype antibody interactions also contributes to differences in the immune responses of old and young mice to foreign antigens. If the expressed repertoire of antibody reflects down-regulation of auto-anti-idiotypic antibody, comparable repertoires of B-cell clones would be expected to be recovered from old and young mice if B cells from old mice were rescued from selective peripheral downregulatory influences active in old mice. Support for this hypothesis has been obtained by generating B-cell hybridomas from young and old mice immunized with TNP bovine gamme globulin (Marcenario et al. 1989). The same number of anti-TNP hybridomas and a comparable number of IgG and high-affinity antibody-producing clones were recovered from the spleens of young and old mice. Thus, the actual B-cell clonal repertoires of young and old mice appear to be similar although the expressed repertoires of antibody-producing lymphocytes from old and young mice are very different. This conclusion has considerable impact on strategies that could be employed to reverse the senescence of humoral immunity. Strategies to counter downregulatory influences which constrain the expression of the B-cell population should be more effective than attempts to reconstitute the repertoire of B lymphocytes in aged individuals. Finally, the mechanisms underlying these age-associated shifts in the expressed humoral antibody response can be attributed to life-long interactions with self and foreign antigens. The overall shift may be described as a decreased reactivity to foreign antigens and a complementary increase in reactivity with self antigens.(ABSTRACT TRUNCATED AT 400 WORDS)

Aging

High-speed photodamage cell selection using bromodeoxyuridine/Hoechst 33342 photosensitized cell killing.

One of the major drawbacks of droplet sorting in a flow cytometer is the relatively low sorting speed. Thus, we have developed an alternative, faster sorting technique: photodamage cell sorting. In a photodamage cell sorter all unwanted cells, as detected with the first, measuring laser, are killed with the second, damaging laser. Thus, the cells need to be photosensitive to the second laser. In addition, a mechanism is needed to switch this laser on and off based on the sorting criteria. In our photodamage cell sorter, the ZAPPER, we use an acousto-optic crystal to switch the laser beam. Cells are made photosensitive by vital staining with photosensitizers. With cells grown in the presence of 5-bromo-2'-deoxyuridine (BrdUrd) and stained with Hoechst 33342 (H42) at least a 5-decade cell reduction is accomplished after irradiation with 400 mW UV light. With this system, sorting rates have been achieved of 30,000 cells per second. Due to the selection based on photodynamic killing, this sorting technique is restricted to the selection of viable cells. Photodamage cell sorting seems well suited for isolating viable cells occurring in low percentages or for the sorting of large numbers of cells. Another application can be the sorting of large or fragile cells.

Animals

In vivo primed mouse T cells selectively express T cell-specific serine proteinase-1 and the proteinase-like molecules granzyme B and C.

Previous studies have shown that mouse CD8+ T lymphocyte clones (TLC) produce T cell-specific serine proteinase-1 (MTSP-1) as well as a family of six homologous molecules, termed granzymes B - G, which are structurally related to serine proteinases. Of these proteins, only MTSP-1 has been studied in detail. It has been shown to occur in the majority of CD8+ and a fraction of CD4+ T effector cells in vivo and in vitro and has demonstrable enzyme activity in these cells. The presence of the other serine proteinase-like molecules in T cells is less well defined. We have now analyzed the expression of mRNA species specific for granzymes B - G in activated T cell populations using the sensitive polymerase chain reaction which allows the detection of mRNA species from as little as 2 pg of total cytoplasmic RNA. We demonstrate that MTSP-1 and all six serine proteinase-like transcripts are expressed in a panel of four CD8+ and six CD4+ long-term-cultured TLC, though at greatly differing concentrations. In contrast, in vivo primed T cells of both phenotypes, CD4+ and CD8+, and in vitro activated T cells derived from short-term cultures only express mRNA species specific for MTSP-1 and CCP1 and little of those for CCP2, but no transcripts for granzymes D - G. These findings argue against the participation of granzymes D - G in T cell-mediated functions in vivo.

Animals

Interferon-induced increase in sensitivity of ovarian cancer targets to lysis by lymphokine-activated killer cells: selective effects on HER2/neu-overexpressing cells.

Overexpression of the HER2/neu oncogene in ovarian tumor cells is associated with relative resistance to lymphokine-activated killer (LAK) cell cytotoxicity. Treatment with gamma-interferon (IFN-gamma) (200-2000 units/ml) for 3 days markedly enhanced the sensitivity of HER2/neu-overexpressing ovarian tumor cells to LAK cells but had no effect on the sensitivity of nonexpressing ovarian targets. Increased sensitivity to lysis was associated with an increase in effector-target conjugate formation, the induction of target cell intercellular adhesion molecule 1 (ICAM-1) expression, and the down-regulation of HER2/neu expression. Anti-ICAM-1 antibody blocked the enhanced lysis, indicating that ICAM-1 is important in the increased sensitivity to LAK cells. However, induction of ICAM-1 expression did not correlate well with enhanced sensitivity to lysis; it was maximal after 24 h of exposure to IFN-gamma and still present 24 h after removing IFN-gamma. In contrast, enhanced lysis required 3 days of exposure to IFN-gamma and was reversed within 24 h after removal of IFN-gamma. These data indicate that, although ICAM-1 is necessary, it is not sufficient for the IFN-gamma-induced enhancement of sensitivity to LAK lysis.

Cell Line

The distribution of wavelength and orientation selective cells in different areas of monkey visual cortex.

The distribution of orientation and wavelength selective cells in visual areas V1, the V4 complex and V5 of macaque monkey cortex was studied by recording from regions representing equivalent eccentricities in each and characterizing cells for their orientational and wavelength preferences. The results showed: (a) that in V1 wavelength selective cells are concentrated in the region of foveal representation (central 0-2 degrees) and decline at increasing eccentricities; (b) that in the V4 complex the concentration of such cells does not vary with eccentricity; rather, there are regional variations that are not eccentricity dependent but follow other, and unknown, rules; (c) that in V5 there are virtually no wavelength selective cells even at central eccentricities; (d) that in V1 fewer than 50% of cells with receptive fields in the central 0-2 degrees are orientation selective and that the proportion of such cells increases to reach a high of about 80% at eccentricities of between 10 and 30 degrees; (e) that in the V4 complex and in V5 the concentration of orientation selective cells decreases at increasing eccentricities; (f) that very few wavelength selective cells in V1 and in the V4 complex are orientation selective. The implications of these findings for a comparison between visual areas of the monkey cortex are discussed.

Animals

A new method for comparative light and electron microscopic studies of individual cells, selected in the living state.

A method is described which permits comparative light and electronmicroscopic studies of cell cultures, cell spreads or single selected cells which have been kept in the Plastic Film Dish (PFD). The PFD is a versatile large surface tissue culture chamber which, for electron microscopy, is mounted with a transparent FEP-Teflon film bottom. Cells are observed, selected and marked on the PFD-bottom with a high power inverted light microscope. The cells are fixed and dehydrated with a semi-automatic device while they are still in situ in the PFD. During the preparation steps for electron microscopy the topographical relationship between individual cells and between cells and cell support is accurately retained. After embedding and polymerization the Teflon film is easily peeled off the polymerized Epon, leaving a replica of the mark around the selected cell. This permits relocation of the selected cells for ultrathin sectioning in a plane plan-parallel to the original cell support. To enable orientated sectioning of selected cells in a plane perpendicular to the cell support, cells are tagged with Letraset-letters after original embedding and polymerization. Subsequently the re-embedded polymerized specimens are orientated in the microtome in a position which permits controlled thin sectioning of the tagged cells in the previously selected plane.

Cells, Cultured

CD34 or S313 positive cells selection by avidin-biotin immunoadsorption.

A column immunoadsorption method, based on the high affinity between the protein Avidin and the vitamin Biotin has been used to obtain positive CD34+ or S313+ marrow cells selection. Cell suspensions from marrow samples of six healthy subjects were incubated either the monoclonal antibody S313 or HPCA 1 (My 10-like) and a biotinilated goat anti-mouse Immunoglobulins antiserum, passed over a column containing an Avidin coated Polyacrylamide matrix, at the flow rate of 1 ml/min. The phenotype and the clonogenic efficiency of the recovered adherent cell fraction were studied by cytofluorimetric analysis and haemopoietic progenitors short term cultures. The results obtained show a mean CD34+ and S313+ cells recovery greater than 50% with a lower stem cells enrichment. Although these data could not considered optimal for clinical application in haematologic neoplasias, these preliminary studies demonstrate the possible use of the method for autologous bone marrow transplantation.

Antibodies, Monoclonal

Cell selectivity to laser-induced photoacoustic injury of skin.

Cell selectivity to photoacoustic injury induced by argon-fluoride excimer laser (193 nm) was studied. Rats were irradiated through air or water and a 2.5 mm aperture. The laser was adjusted to deliver 150 mJ/cm2 at the skin surface with 12 and 24 pulses. Immediate damage was assessed by transmission electron microscopy. Cell selectivity was observed in dermis and epidermis. Fibroblasts showed alteration of nuclear chromatin and cytoplasmic organelles, while some of the migratory cells adjacent to fibroblasts did not. Similar difference of damage was observed between keratinocytes and Langerhans cells in epidermis. Considering the relationship between cells and their microenvironment in tissue, this selectivity may be due to the difference of acoustical coupling of propagation of acoustic waves rather than to differential sensitivity of the cells to damage.

Animals

Evolution of vesicular stomatitis virus in athymic nude mice: mutations associated with natural killer cell selection.

BHK-21 cells readily produce tumours in athymic nude mice, but BHK-21 cells persistently infected with wild-type vesicular stomatitis virus (VSV) do not. However, rare persistently infected virus-shedding tumours (VSV-P tumour cells) were independently derived by in vivo selection on three different occasions. Cloned viruses isolated from each of these (VSV-P virus mutants) carried mutations determining the VSV-P phenotype because they all allowed growth of virus-shedding tumours in nude mice when they were used to persistently infect normal (unselected) BHK-21 cells. Treatment of nude mice with anti-asialo-GM1 allowed BHK cells persistently infected with wild-type VSV to form tumours, and BHK cells persistently infected with VSV-P were resistant to natural killer (NK) cells in vitro; this implicates NK cells in the in vivo rejection of persistently infected tumours and in the selection of the VSV-P variant. In this paper, we have sequenced the glycoprotein (G protein), matrix (M) and non-structural (NS) proteins of three independently derived VSV-P type mutants to find mutations associated with in vivo passage of persistently infected nude mouse tumours and with resistance to NK cells. We found extensive mutation in the G protein of VSV-P but relatively few mutations in the M and NS proteins. This suggests but does not prove a role for the G protein in NK cell killing of infected cells.

Amino Acid Sequence

Polyadenylated RNA sequences from vaccinia virus-infected cells selectively inhibit translation in a cell-free system: structural properties and mechanism of inhibition.

The mechanism of vaccinia virus-induced selective inhibition of host cell protein synthesis was studied in a nonpermissive (Chinese hamster ovary, CHO) and in a permissive mouse cell line ( L cells). Small polyadenylated RNAs obtained from uninfected and infected cells were fractionated into six size classes by polyacrylamide gel electrophoresis. The RNAs from the first two largest fractions (greater than 500 nucleotide, nt) were translated into some low-molecular-weight polypeptides, whereas, the RNAs from the remaining fractions (400-500, 300-400, 200-300, and 100-200 nt) had no translational activity in reticulocyte lysates. When these nontranslating polyadenylated short sequences (POLADS) were added to the cell-free system together with HeLa cell mRNAs, translation was inhibited from 70%, by the 400- to 500-nt fraction, to about 20%, by the 100- to 200-nt fraction. The degree of inhibition of protein synthesis was clearly dependent on the size of POLADS. The translation of vaccinia virus mRNAs in the cell-free system was inhibited by about 25% with the 400- to 500-nt fraction, by 5% with the 300- to 400-nt fraction, while the smaller size POLADS had no inhibitory effect. The inhibition of HeLa cell and vaccinia virus mRNA translation by POLADS was reversed by the simultaneous addition of oligo(dT) to the cell-free system. POLADS were also obtained from uninfected cells, but they inhibited the translation of HeLa cell and vaccinia virus mRNAs to a much lesser extent. The removal of the poly(A) moiety from POLADS by treatment with ribonuclease H and oligo(dT) abolished their inhibitory effect on HeLa cell mRNA translation. The average length of the poly(A) tails of POLADS obtained from infected cells was longer than that of POLADS from normal cells. Inhibition of HeLa cell mRNA translation mediated by POLADS in the cell-free system was reversed (approximately 70%) by addition of crude initiation factors (ribosomal salt wash, RSW). Significantly, inhibition of translation of POLADS was reversed (greater than 90%) by addition of purified poly(A) binding protein (PAB). Purified initiation factor 4A (eIF-4A) also reversed this inhibition, but to a lesser extent than RSW and PAB. Our results show that the translation of vaccinia virus mRNAs is resistant to POLADS, suggesting that POLADS, by virtue of their long poly(A) tails, may sequester PAB and thus, play a role in selective inhibition.

Animals

Non-specific cell binding characteristics of para-magnetic polystyrene microspheres used for antibody-mediated cell selection.

The binding of cells to paramagnetic polystyrene microbeads in the absence of coupling antibodies was measured. Cells from normal bone marrow, from an acute lymphoblastic leukemia (ALL) cell line or from a neuroblastoma cell line, were labeled with the fluorochrome Hoechst 33342 and incubated with microbeads by rotation at 4 degrees C. Following this incubation, the microbeads with all attached cells were collected using an externally applied magnetic field and visualized by microscopic examination under ultraviolet illumination. The incubation variables included the protein content of the medium, and the period of rotation. Normal bone marrow was found to adhere sparingly to the microbeads; less than 1.0% of the total nucleated cell population was recovered with the beads, whereas greater than 5% of the ALL cells and greater than 30% of the neuroblastoma cells were found to bind non-specifically to the microspheres. Neither changes in the protein concentration of the medium or in the incubation period significantly altered the non-specific binding of the cell types examined. It is thus apparent that the use of these microspheres for positive selection of cells, such as the collection of hematopoietic stem cells for transplantation, would be compromised by a sizeable non-specific interaction. Modification of the surface of the microspheres to substantially reduce this interaction will be necessary before efforts at positive selection using the magnetic microspheres can be fruitful.

Antibodies

Signalling thresholds and negative B-cell selection in acute lymphoblastic leukaemia.

B cells are selected for an intermediate level of B-cell antigen receptor (BCR) signalling strength: attenuation below minimum (for example, non-functional BCR) or hyperactivation above maximum (for example, self-reactive BCR) thresholds of signalling strength causes negative selection. In ∼25% of cases, acute lymphoblastic leukaemia (ALL) cells carry the oncogenic BCR-ABL1 tyrosine kinase (Philadelphia chromosome positive), which mimics constitutively active pre-BCR signalling. Current therapeutic approaches are largely focused on the development of more potent tyrosine kinase inhibitors to suppress oncogenic signalling below a minimum threshold for survival. We tested the hypothesis that targeted hyperactivation--above a maximum threshold--will engage a deletional checkpoint for removal of self-reactive B cells and selectively kill ALL cells. Here we find, by testing various components of proximal pre-BCR signalling in mouse BCR-ABL1 cells, that an incremental increase of Syk tyrosine kinase activity was required and sufficient to induce cell death. Hyperactive Syk was functionally equivalent to acute activation of a self-reactive BCR on ALL cells. Despite oncogenic transformation, this basic mechanism of negative selection was still functional in ALL cells. Unlike normal pre-B cells, patient-derived ALL cells express the inhibitory receptors PECAM1, CD300A and LAIR1 at high levels. Genetic studies revealed that Pecam1, Cd300a and Lair1 are critical to calibrate oncogenic signalling strength through recruitment of the inhibitory phosphatases Ptpn6 (ref. 7) and Inpp5d (ref. 8). Using a novel small-molecule inhibitor of INPP5D (also known as SHIP1), we demonstrated that pharmacological hyperactivation of SYK and engagement of negative B-cell selection represents a promising new strategy to overcome drug resistance in human ALL.

Amino Acid Motifs