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Biomedical subjects

P D Noguchi

Publications and source records attributed to P D Noguchi.

At least 19 recordsLinked to original sources

Flow cytometric analysis of whole blood lysis, three anticoagulants, and five cell preparations.

We studied the effects of anticoagulants and cell preparation methods on lymphocyte forward-angle scatter (FSC), autofluorescence, and immunofluorescent staining for CD45, CD14, and CD13. Blood samples collected in ethylenediaminetetracetic acid (EDTA), heparin, and acid citrate dextrose (ACD) were processed by using conventional Hypaque-Ficoll (HF) separation and four whole blood (WB) lysis techniques: Immuno-lyse, Q-Prep, FACS Lyse, and Gen Trak Lysis. Lymphocytes prepared by using three of the four whole blood methods gave FCS values comparable to those isolated by HF, while one method (FACS Lyse) gave consistently lower values. Autofluorescence values were comparable by all methods except Immuno-lyse, which showed consistently higher values in blood stored for 24 h with any anticoagulant. Immunofluorescent values for CD45-stained cells were quite consistent across all methods, and among the whole blood methods, FACS Lyse and Q-Prep uniformly gave the highest purity of CD45-positive cells in the lymphocyte light scatter gates. Additionally, propidium iodide (PI) analyses of CD45-stained whole blood, and analyzed without lysis, confirmed that ACD and heparin were superior to EDTA for maintaining viable leucocytes overnight. Future studies should focus on other commonly used reagents, a wide variety of abnormal samples, and cell viability.

Antigens, CD

The Drosophila gene escargot encodes a zinc finger motif found in snail-related genes.

Two independent P-element enhancer detection lines were obtained that express lacZ in a pattern of longitudinal stripes early in germband elongation. In this paper, molecular and genetic characterization of a gene located near these transposons is presented. Sequence analysis of a cDNA clone from the region reveals that this gene has a high degree of similarity with the Drosophila snail gene (Boulay et al., 1987). The sequence similarity extends over 400 nucleotides, and includes a region encoding five tandem zinc finger motifs (72% nucleotide identity; 76% amino acid identity). This region is also conserved in the snail homologue from Xenopus laevis (76% nucleotide identity; 83% amino acid identity) (Sargent and Bennett, 1990). We have named the Drosophila snail-related gene escargot (esg), and the region of sequence conservation common to all three genes the 'snailbox'. A number of Drosophila genomic DNA fragments cross-hybridize to a probe from the snailbox region suggesting that snail and escargot are members of a multigene family. The expression pattern of escargot is dynamic and complex. Early in germband elongation, escargot RNA is expressed in a pattern of longitudinal stripes identical to the one observed in the two enhancer detection lines. Later in development, escargot is expressed in cells that will form the larval imaginal tissues, escargot is allelic with l(2)35Ce, an essential gene located near snail in the genome.

Alleles

Tumorigenicity testing: past concerns, future problems.

Tumorigenicity testing has been an integral part of cell substrate characterization. With the combination of recombinant technology and traditional cell culture, we have entered an era in which many of the principles developed with vaccine production may need to be modified and new ones developed. Models of tumorigenicity are reviewed in the light of current knowledge; the applicability and necessity of such testing in new areas such as somatic cell therapy will also be presented.

Animals

Effects of 8-chloroadenosine 3',5'-monophosphate and N6-benzyl-cyclic adenosine 5'-monophosphate on cell cycle kinetics of HL-60 leukemia cells.

Site-selective cyclic AMP (cAMP) analogues have been shown to inhibit growth and induce differentiation in several human leukemia cell lines. However, detailed studies of the effects exerted by cAMP analogues on cell cycle kinetics have been lacking. We have examined the effects of 8-Cl-cAMP and N6-benzyl-cAMP on the cell cycle kinetics of the HL-60 human promyelocytic leukemia cell line. A cell cycle study was performed by univariate DNA analysis after 24-72 h of treatment with noncytotoxic concentrations of 8-Cl-cAMP and N6-benzyl-cAMP capable of inducing 50-60% growth inhibition in these cells. HL-60 cells treated with 5 microM 8-Cl-cAMP showed no significant change in the cell distribution in the cycle as compared to the untreated control cells, whereas the treatment with 10 microM N6-benzyl-cAMP transiently increased the percentage of cells in the G0/G1 phase after 48 h, followed by a partial recovery at 72 h. Combined treatment with low doses of 8-Cl-cAMP and N6-benzyl-cAMP, each of which alone produced 20% growth inhibition, exerted a growth inhibitory effect of 65% and delayed increase of the G0/G1 phase by 72 h. To better understand the cell cycle effects induced by 8-Cl-cAMP, flow cytometric analysis of bromodeoxyuridine incorporation was also performed. 8-Cl-cAMP treatment exhibited a slowing down of the cell cycle; thus, the delayed appearance of the G0/G1 cell accumulation after combined treatment could be due to this effect of 8-Cl-cAMP on the HL-60 cell cycle. At a toxic dose, 8-Cl-cAMP brought about a G2M block, whereas N6-benzyl-cAMP brought about an increase of the G0/G1 compartment. G2M block produced by toxic doses of 8-Cl-cAMP was not related to its adenosine metabolite since 8-Cl-adenosine did not produce any specific block in the cell cycle. Our results show, for the first time, that these site-selective cAMP analogues could affect cell cycle kinetics at different points. These data may provide the basis for combination treatments involving cAMP analogues and other agents in the treatment of human leukemia.

8-Bromo Cyclic Adenosine Monophosphate

The cell cycle block and lysis of an activated T cell hybridoma are distinct processes with different Ca2+ requirements and sensitivity to cyclosporine A.

Stimulation of transformed T cells leads to both lymphokine secretion and inhibition of spontaneous growth. Studies performed with an Ag-specific T cell hybridoma demonstrated that growth inhibition is an early (within 1 h) manifestation of activation. Experiment in which extracellular Ca2+ was chelated or in which cyclosporine A was included indicated that activation-associated growth inhibition is a two-step process. The first phase is the establishment of a G1/S cell cycle block; it does not require extracellular Ca2+ and is not prevented by the addition of cyclosporine A. The second phase is cell lysis. It can be detected 4 to 6 h after activation, requires the presence of extracellular Ca2+, and is prevented when stimulation occurs in the presence of cyclosporine A. The observation that both Ca2+ depletion and cyclosporine A prevented IL-2 secretion at all time points indicates that the pathways leading to lymphokine secretion and the G1/S block diverge early in the course of the cellular response, and establish the cell cycle block as a distinct activation event with unique characteristics.

Animals

Prognostic significance of DNA ploidy in carcinoma of prostate.

Flow cytometry was used to measure the DNA content in archived paraffin-embedded human prostatic cancer tissue for 69 patients with known outcomes that presented between 1975 and 1982. Of these, 51 patients had clinically localized lesions and were surgically staged prior to radical prostatectomy, while 18 patients presented with advanced Stage D2 disease. Thirty-six of 37 (97.3%) pathologic Stage B lesions were diploid. In contrast, the majority (72.2%) of patients with metastatic disease had aneuploid tumors. The average Gleason grade for aneuploid tumors was 8.2 +/- 1.98 versus 5.5 +/- 1.89 for diploid tumors (p less than 0.01). For 51 patients with clinically localized tumors, 13.9 percent of diploid tumors with a low Gleason sum (2 to 6) had extracapsular spread of tumor or regional lymph node involvement compared with 83.3 percent of aneuploid tumors with high Gleason scores (7 to 10). The addition of DNA ploidy to degree of glandular differentiation may enhance the prognostic evaluation of prostatic tumors and eventually improve our ability to select patients who are likely to benefit from radical prostatectomy.

Aged

Inhibition of transformed T cell growth in vitro by monoclonal antibodies directed against distinct activating molecules.

Stimulatory of antigen-specific murine T cell hybridomas with the appropriate antigen has been shown to cause lymphokine secretion and inhibition of spontaneous cell growth. In this study, the effect of cellular activation on the growth of transformed T cells, of known or unknown antigen specificity, was explored with stimulatory monoclonal antibodies (mAb) that recognize nonclonally distributed T cell surface molecules. Anti-CD3 antibodies stimulated interleukin 2 (IL-2) secretion while they inhibited murine and human T cell tumor growth in vitro. Both responses required external cross-linking of the anti-CD3 antibodies. Activation via two molecules that are not physically associated with the T cell antigen receptor, Thy-1 and Ly-6, also inhibited transformed T cell growth while inducing IL-2 secretion. Notably, an anti-Thy-1 mAb that did not cause the transformed T cells to secrete lymphokines failed to affect their growth, and in fact blocked the growth inhibition induced by the stimulatory mAb. Regardless of which stimulating mAb was used, IL-2 production and cell growth were inversely proportional, manifesting similar antibody dose-response curves. Activation of a T cell hybridoma with stimulatory mAb resulted in rapid lysis, as evidenced by the release of 51Cr and lactate dehydrogenase. Cell cycle analysis demonstrated that cellular activation was accompanied by a cell cycle block between the G1 and S phases, and probably a slowing of the transit of cells already in S. These results demonstrate that the growth of a spectrum of neoplastic T cells, murine and human, can be inhibited by what are normally growth-promoting signals for non-transformed T cells.

Animals

Cell growth cycle block of T cell hybridomas upon activation with antigen.

Stimulation of antigen-specific T cell hybridomas with the appropriate antigen/MHC combination, at concentrations that resulted in the secretion of the lymphokine interleukin 2, resulted in a dose-dependent decrease in both [3H]thymidine incorporation and cell growth. Flow cytometric studies demonstrated that stimulation with antigen resulted in a cell cycle block that was most evident at the G1/S border, and mixing studies revealed that bystander T cells of different antigen specificities were not affected. For at least the large majority of T cells, the G1/S cell cycle block appeared to be irreversible after 24 h of exposure to antigen. This cell cycle block may be useful as a rapid and quantitative measure of T cell hybridoma activation, as a means of selecting T cell hybridomas that have functional alterations in the reception of stimulatory signals, and may serve as a model of the induction of tolerance in immature T cells.

Animals

Heterogeneous expression of a murine B16 melanoma-associated antigen correlates with cell cycle.

A murine monoclonal antibody (MM2-3C6) that reacts with a B16 murine melanoma-associated membrane antigen was used to study the relationship of antigen expression to the cell cycle. Dual-parameter flow cytometric measurements of membrane antigen and DNA revealed that antigen-positive cells were present throughout the cell cycle. Peak antigenic expression was noted during the late log phase of the cell growth curve with negligible antigen-negative population. The emergence of a distinct antigen-negative population (30%-40%) was noted in the late stationary phase. Cell cycle analysis indicated that the negative subpopulation was restricted to the G0/G1 phase, thus, demonstrating antigenic heterogeneity within the tumor cell population. Cell sorting was performed to analyze the origin of such heterogeneity. Following two sequential sortings, the antigen-negative cells became antigenic upon reculture. Again, at the late stationary phase, a distinct antigen-negative population (30%-40%) emerged. The sorted antigen-positive cells showed flow cytometric profiles identical to the sorted antigen-negative population upon reculture. Therefore, in this murine model, it appears that antigen expression is cell cycle dependent and such expression seems to be associated with proliferation.

Animals

The use of flow cytometry and cell sorting in a human colon carcinoma model.

We investigated the growth characteristics of a human colon carcinoma cell line, WiDr, grown in culture flasks and on chick embryonic skin (CES). WiDr cells labeled in vitro with bromodeoxyuridine (BrdU) and analyzed by combined propidium iodide/Hoechst 33258 fluorescence showed evidence of more BrdU incorporation in early S phase as compared to late S phase. When inoculated on the CES, WiDr cells multiplied and invaded the underlying skin. Morphologic examination showed that with extended culture WiDr cells on the CES undergo progressive structural organization with the development of acini and basal lamina, structures similar to those in in vivo tumors. WiDr cells were labeled with monoclonal antibody to carcinoembryonic antigen (CEA) and the brightest 2% of the population was sorted. When subsequently grown on the CES, the sorted cells formed significantly more acinar structures at 3 and 6 days of culture than an unsorted population grown for a comparable time.

Animals

Expression of a murine B16 melanoma-associated antigen analyzed by flow cytometry.

Understanding factors regulating expression of tumor antigens is vital to the design of rational immunotherapeutic strategies. A murine monoclonal antibody (MM2-3C6) that recognizes a B16 murine melanoma-associated membrane antigen was used to study antigen expression in relation to cell cycle, clonal heterogeneity, and growth density. Dual-parameter flow cytometric measurements of DNA content and membrane antigen demonstrated that antigen-positive cells were found throughout the cell cycle. However, some antigen-negative cells were observed and were restricted to the G0/G1 phase demonstrating the antigenic heterogeneity of this tumor line. Three sublines of B16, F1, F10, and F1r with variable metastatic potential, and 50 B16 F1 clones all expressed the antigen with a mean antigen density above background of 8.84 +/- 2.52 [( mean cell fluorescence/cell size] X 10(-3] ranging from 3.68 to 16.57. Further studies of three sublines and five clones showed antigen density fluctuated over an 8-day growth period in culture with daily changes of medium. During log growth from Day 1 (1.2 +/- 0.08 X 10(4) cells/cm2) to Day 4 (20.4 +/- 3.01 X 10(4) cells/cm2), antigen density increased from 4.09 +/- 0.29 to 6.86 +/- 0.29. By Day 8 (26.5 +/- 2.86 X 10(4) cells/cm2) when the cells had been confluent for 3 days, antigen density decreased to 2.54 +/- 0.26 which was significantly lower than other days measured (P less than 0.05). It is concluded that tumor cell proliferation and cell density can modulate antigen expression in this system and, therefore, this may be a useful model to study tumor cell escape from immunotherapy.

Animals

Studies of immune defective RIII/AnN mice.

The present study advances our knowledge of the newly described immunodeficient RIII/AnN mouse. This strain was found to have markedly reduced spleen size and low serum levels of IgM, IgA, IgG1, IgG2 alpha, and IgG2 beta. Studies of F2 and backcross mice demonstrated that the defective immunoglobulin production was due to multiple genes: a dominant gene for low IgA and recessive genes for the others. RIII mice, like xid-bearing mice, had a markedly reduced splenic plaque-forming cell (PFC) response to Type III pneumococcal polysaccharide; however, unlike xid-bearing mice, the RIII/AnN mice produced substantial serum antibody responses to pneumococcal polysaccharide, polyriboinosinic . polyribocytidylic acid, and trinitrophenyl--Ficoll. In addition, spleen cells from RIII/AnN mice proliferated normally when stimulated with anti-mu, whereas those from xid mice did not. Thus, RIII/AnN mice represent a model of hypogammaglobulinemia and restricted immunodeficiency. They differ from other immunodeficient mice, and should assist in the analysis of immunodeficiency, autoimmunity, and regulation of class-specific immunoglobulin production.

Agammaglobulinemia

Colony-stimulating factor (CSF) controls proliferation of CSF-dependent cells by acting during the G1 phase of the cell cycle.

Proliferation of granulocyte/macrophage (GM) progenitor cells in soft agar cultures is dependent on the continuous presence of colony-stimulating factors (CSF). To elucidate this dependency we studied the effect of deprivation and readdition of CSF on the cell cycle kinetics of a GM-CSF-dependent murine mast/basophil cell line (PT-18). Flow cytometry and [3H]thymidine incorporation have been used to analyze the complete cell cycle. Removal of CSF from the culture medium resulted in accumulation of the cells in the G1 phase. Eighteen hours after removal of CSF, 85% of the cells were arrested in G1 phase. Readdition of GM-CSF to such quiescent cells was followed by progression of the cells from G1 into S phase with a lag period of 10 hr. A similar lag period was observed when cells released from G2+M arrest progressed, in the presence of CSF, to S phase via the G1 phase. These findings indicate that deprivation of GM-CSF does not move PT-18 cells out of the cycle to a G0 phase but rather arrests them at early G1 phase. Finally, we demonstrate that, for the cells to progress through the cell cycle, the requirement for the presence of GM-CSF is limited to the first 6 hr of the 10-hr duration of the G1 phase.

Animals

Regulation of interleukin 2 receptor expression: effects of phorbol diester, phospholipase C, and reexposure to lectin or antigen.

Anti-Tac monoclonal antibody identifies the receptor for interleukin 2 (IL 2, or T cell growth factor) present on activated human T lymphocytes. By using tritiated anti-Tac, we now report a sensitive and specific binding assay to evaluate cell surface IL 2 receptor expression. IL 2 receptors on human peripheral blood lymphocytes can be detected within 6 hr after PHA stimulation. PHA-induced receptor expression is inhibited by actinomycin D and cycloheximide, but not by mitomycin C, suggesting a requirement for de novo RNA and protein synthesis, but not DNA synthesis. Scatchard analysis of [3H]-anti-Tac binding to lymphocytes stimulated with PHA for 3 days revealed from 20,000 to 60,000 molecules of antibody bound per cell, and a Kd of 1 to 3 x 10(-10) mol/l. Sequential binding studies of activated human lymphocytes maintained in long-term culture with IL 2 demonstrated a progressive decline in receptor number correlating with diminished growth rate. Restimulation with lectin or antigen increased the number of IL 2 receptors, suggesting that IL 2 dependent immune responses may be regulated, at least in part, by IL 2 receptor expression. Receptor number was also increased by PMA. Moreover, similar effects were produced by incubation with phospholipase C but not interleukin 1. Because both PMA and phospholipase C result in activation of protein kinase C, these data suggest the possibility that activation of protein kinase C may induce IL 2 receptor expression.

Antigens, Surface

Characterization of a human colonic adenocarcinoma cell line, LS123.

An epithelial cell line, LS123, was established in 1974 from the second in a series of three primary colonic tumors resected from a Caucasian female. The cell line is aneuploid, releases low concentrations of carcinoembryonic antigen (CEA), fails to grow progressively in nude mice, and forms colonies only in enriched semisolid medium developed for tumor stem cells. LS123 cells grow on confluent cell monolayers and in either low serum or serum-free medium. In the chick embryonic skin assay, LS123 cells grew as a well-differentiated abnormal colonic epithelium with little mitotic activity but with some indication of invasion. On floating collagen gels LS123 cells formed a one to three-cell-layer-thick undifferentiated epithelial sheet. The apparent low invasiveness of the cells of this line is supported by the patient's history of three primary colon tumors without systemic metastases during the past 30 yr. Therefore, although LS123 cells possess several properties associated with neoplasia, they have little invasive potential. Thus, LS123 cells may represent an important model for the study of human colon cancer.

Adenocarcinoma

Measurement of DNA synthesis by flow cytometry.

Cells were stained for DNA content with Hoechst 33258 combined with propidium iodide and analyzed on an epi-fluorescence flow cytometer. Scatterplots of red versus blue fluorescence of control cells showed a straight line indicating that both dyes were measuring proportional amounts of cellular DNA. Scatterplots of cells incubated with the thymidine analog bromodeoxyuridine, however, showed a displacement from the control straight line that increased with longer exposure time to bromodeoxyuridine. These results suggest that bromodeoxyuridine incorporation in DNA can be detected by flow cytometry.

Adenocarcinoma

Tumorigenicity of chromosomally abnormal human cultured cells in two xenogenic organ culture assays.

Organ cultures of chick and rabbit embryonic skin were used to assess the tumorigenicity of cultured human cell lines. Cell lines were from patients with (1) specific chromosomal abnormalities and an increased risk of cancer (Down's syndrome, Klinefelter's syndrome, Partial D Trisomy, Bloom's syndrome, Franconi's anemia, ataxia telangiectasia and xeroderma pigmentosum); (2) a specific chromosomal abnormality but no increased risk for cancer (Cri du chat), and (3) a biochemical defect (galactosemia). In addition, tumor cell lines and cell lines of normal origin were used as positive and negative standards. Mitotic ability was quantified by dividing the total number of mitoses in the cell inoculum seen in histologic sections by the number of sections examined to give a computed mean number of mitoses per section (MMS). Neoplastic cell lines showed MMS values greater than 1.0 while cell lines of normal origin were less than 0.25. The cell lines derived from patients with chromosomal abnormalities and the patient with a biochemical defect, whether the individuals were at an increased risk for cancer or not, gave the same range of MMS values as obtained for cells of normal origin. These results that chromosomal aberrations per se do not enhance the cell's capability for proliferation on a xenogenic substrate.

Animals

Flow cytometric analysis of normal and neoplastic human hematopoietic surface antigens.

Normal and neoplastic human hematopoietic cells were examined for surface markers by a variety of techniques including cytotoxicity assays using anti-HTLA and anti-Ia antiserum with viability measured by trypan blue exclusion and automated flow cytometry; E- and EAC-rosette binding assays and surface immunoglobulin measured by a fluorescence-activated cell sorter. In most cases there was good agreement among these assays. However, one case of CLL of T origin (92% E-rosette-positive) also showed significant amounts of Ia antigen by cytotoxicity tests; additionally, a case of CML in blast crisis demonstrated no E or EAC markers or surface immunoglobulin, but the majority of cells were lysed by both anti-HTLA and anti-Ia antiserum. Thus, Ia is not an exclusive B cell marker.

Animals