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Biologic and biochemical differences between in vitro and in vivo passaged Friend erythroleukemia cells. II. Changes in cell surface glycoproteins associated with a highly malignant phenotype.

Friend erythroleukemia cells (FLC), serially passaged in vitro or by intraperitoneal injection in DBA/2 mice, exhibit markedly different tumorigenicity and capacity to metastasize. We have attempted to determine whether the differences in tumorigenicity between these two lines of FLC were correlated with any biochemical changes in their cell membranes. Although consistent modifications of FLC membrane gangliosides were detected after FLC multiplied in the peritoneum, the pattern of FLC gangliosides was not a stable characteristic and did not correlate with tumorigenicity. In contrast, analysis of FLC membrane glycoproteins by cell surface labelling techniques (i.e., galactose-oxidase-borohydride techniques and polyacrylamide gel electrophoresis-fluorography) or by metabolic labelling of glycoproteins with 3H-galactose, revealed consistent differences in the high MW region of the gels between parental in vitro passaged FLC (either 745 or 3Cl-8 cells) and clones derived from in vivo passaged cells. No significant differences in the membrane proteins were detected between in vitro and in vivo passaged FLC when lactoperoxidase-catalyzed iodination and polyacrylamide gel electrophoresis-autoradiography were used. It is seen that repeated in vivo passages of FLC resulted in the appearance of different patterns of membrane glycoproteins and that these changes appeared to be associated consistently with the capacity of these cells to grow as tumor ascites and to metastasize to the liver and spleen.

Animals↗

Characterization of a recombinant encephalomyocarditis virus expressing the enhanced green fluorescent protein.

A recombinant encephalomyocarditis virus (rEMCV2887A-egfp) expressing the enhanced green fluorescent protein (EGFP) was produced. The EGFP gene was inserted in frame within the leader protein coding sequence of a full-length cDNA clone of EMCV. RNA transcripts derived from the recombinant full-length cDNA were synthesized in vitro and transfected into BHK-21 cells. The recombinant transcript RNA remained infectious despite the insertion of EGFP as shown by cytopathic effects on BHK-21 cells and by propagation of the rescued virus. The replication kinetics in BHK-21 cells and the pathogenicity in mice of rEMCV2887A-egfp did not differ significantly from that of the parental virus. The recombinant virus was shown to produce fluorescence in infected cells after at least five passages in BHK-21 cells. However, a decrease of EGFP expression was observed following serial passages, and this was associated with the accumulation of deletion mutations within the EGFP gene. Nevertheless, using EGFP autofluorescence, infected cells were easily detected in the brain of mice infected with the first-passage recombinant virus. These data demonstrate that rEMCV2887A-egfp could be a useful tool to study virus dissemination and pathogenicity when used at low passages.

Animals↗

Licensing veterinary biologics in the United States.

The authority for the regulation of veterinary biologics in the United States is provided in the Virus-Serum-Toxin Act, enacted in 1913 and amended in 1985. The Act authorizes the Secretary of Agriculture to prescribe regulations governing the preparation and marketing of veterinary biologics shipped into, within, or from the United States. The veterinary biologics program carries out the mandate to ensure that all veterinary biological products under the U.S. jurisdiction are pure, safe, potent, and efficacious. The program is based on licensing, inspection, and testing. Establishment licensing defines the production facilities, manufacturing practices, and the responsible person. Product licensing defines the product, the method of production, and testing requirements; it also assures product purity, safety, potency, and efficacy. Biologics production is based on the Master Seed concept, in which a master parental stock is the source of all seed materials for production. The final product may not be more than five serial passages removed from the Master Seed. Host animal immunogenicity is demonstrated by statistically valid host animal vaccination and challenge studies using the minimum level of antigen at the highest level of passage. Potency tests are correlated to host animal immunogenicity and are conducted on each serial of product prior to release for marketing to assure efficacy. Conditional licensing procedures that assure purity, safety and a reasonable expectation of efficacy are used to provide products for emergency conditions, limited markets, local situations, or other special circumstances. Licensing for further manufacturing permits two or more licensees to work together in the production of a product.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Envelope glycoprotein determinants of increased fusogenicity in a pathogenic simian-human immunodeficiency virus (SHIV-KB9) passaged in vivo.

Changes in the envelope glycoprotein ectodomains of a nonpathogenic simian-human immunodeficiency virus (SHIV-89.6) that was serially passaged in vivo have been shown to be responsible for the increased pathogenicity of the resulting virus, SHIV-KB9 (G. B. Karlsson, et al., J. Exp. Med. 188:1159-1171, 1998). The 12 amino acid changes in the envelope glycoprotein ectodomains resulted in increased chemokine receptor-binding and syncytium-forming abilities. Here we identify the envelope glycoprotein determinants of these properties. A single amino acid change in the gp120 third variable (V3) loop was both necessary and sufficient for the observed increase in the binding of the SHIV-KB9 gp120 glycoprotein to the CCR5 chemokine receptor. The increased syncytium-forming ability of SHIV-KB9 involved, in addition to the V3 loop change, changes in the second conserved (C2) region of gp120 (residue 225) and in the gp41 ectodomain (residues 564 and 567). The C2 and gp41 ectodomain changes influenced syncytium formation in a cooperative manner. Changes in the V1/V2 gp120 variable loops exerted a negative effect on syncytium formation and chemokine receptor binding, supporting a previously described role of these changes in immune evasion. The definition of the passage-associated changes that determine the efficiency of chemokine receptor binding and membrane fusogenicity will allow evaluation of the contribution of these properties to in vivo CD4-positive lymphocyte depletion.

Animals↗

Modification of Trichoplusia ni nuclear polyhedrosis virus passaged in vivo.

A designated strain of plaque-purified Trichoplusia ni nuclear polyhedrosis virus (NPV) was used to initiate a serial passage series in vivo. The virulence of polyhedra inclusion bodies (PIB) and the distribution of MP (many PIB) and FP (few PIB) strains in hemolymph were monitored. When virus was passaged per os as PIB, there was no major change in virulence after 15 passes in insects. Plaque analysis of hemolymph from the infected insects indicated that there was no selection for the FP strain of virus. There was little overall change in the infectivity of nonoccluded virus (NOV) after 16 passes by injection into T. ni larvae; however, plaque analysis of the hemolymph from the infected insects indicated progressive selection of FP virus. It is postulated that when PIB are the vehicles of virus transmission, there is no progressive accumulation of noninfectious FP PIB; however, when NOV are the vehicles of virus transmission, FP NOV production displaces MP virus synthesis. This may result from a growth advantage of the FP NOV over the MP NOV as shown in vitro and from the noninfectious nature of FP PIB.

Animals↗

Transplantation and morphological studies of primary and passaged murine radiation-induced myeloid leukaemias.

Myeloid leukaemia can be induced reproducibly in CBA/H male mice following X-irradiation. After serial passage of the leukaemic cells into syngeneic recipients, they grow faster and require fewer cells for a take. Transplantation of primary leukaemias requires high cell doses unlike passaged lines derived from them. Passaging at low cell doses retains their primary-like growth and morphological properties. It would seem that these low cell dose passages may be a more useful model which can be used for investigating the biology and therapeutic responses of myeloid leukaemia than routinely passaged cell lines.

Animals↗

Nature of leukemic stem cells in murine myelogenous leukemia.

We investigated the nature of myelogenous leukemic stem cells in mice. L-8057, a megakaryoblastic leukemia cell line used in this study, produces in vivo and in vitro colonies. By means of typical chromosomal aberrations in L-8057, one can conveniently detect the origin of the cells in each colony derived from a leukemic stem cell. Direct evidence of whether cells from each colony had leukemogenicity in recipient mice was successfully obtained by the colony transplantation assay. Both leukemic colony-forming unit-spleen (L-CFU-s) and leukemic colony-forming unit-culture (L-CFU-c) in L-8057 may have belonged to the same differentiating stage in the stem cells because of their similar radiosensitivity, although some parts of the L-CFU of L-8057 seemed to have lost their capability to regenerate L-CFU-s when the cells were plated in dishes. This leukemic stem cell preserves high self-renewal ability in vitro after 10 passages. In addition, in vitro colony formation by this leukemic cell during the above course of serial passages did not require any additional exogenous stimulators. The same sort of trials have been made on other types of leukemias. Leukemic stem cells showed remarkable variety in their response to stimulating factors and in their self-renewal activity, which suggests that they may have consisted of heterogeneous populations.

Animals↗

Relative loss of oncogenic potency of mouse leukemia virus (Gross) after prolonged propagation in tissue culture.

Since the initial development of the "passage A" mouse leukemia virus in 1957, this virus has been propagated in our laboratory by serial passage in newborn C3H(f) mice. At the present time, 10(-2)-10(-3) dilutions in physiological saline solution of this mouse-passaged virus induce lymphatic leukemia in practically all inoculated mice after a latency of 3-5 months. On the other hand, when the same virus was propagated on NIH 3T3 mouse embryo cells in tissue culture for more than 10 years, its leukemogenic potency became considerably reduced. Recent bioassay experiments carried out in our laboratory demonstrated that after such prolonged propagation in tissue culture this virus now induced leukemia in less than 15% of the inoculated suckling C3H(f) mice; only undiluted or 10% dilutions of the tissue culture fluid (very occasionally 10(-2) or 10(-3) dilutions) induced leukemia after a prolonged latency varying from 5.5 to 18 months. The passaged and the tissue-culture-grown virus strains are identical immunologically and indistinguishable in their morphology when examined by electron microscopy. The tissue-culture-grown virus, attenuated in its leukemogenic potency, does not, however, confer immunity against a challenge with the mouse-passaged virus.

AKR murine leukemia virus↗

An RNA virus can adapt to the multiplicity of infection.

RNA viruses evolve as complex distributions of mutants termed viral quasispecies. For this reason it is relevant to explore those environmental parameters that favour the selective advantage of some viral subpopulations over others. In the present study we provide direct evidence that the relative fitness of two competing viral subpopulations may depend on the multiplicity of infection (m.o.i.). Two closely related subpopulations of foot-and-mouth disease virus (FMDV) of serotype C, which differed in their history of cytolytic passages in BHK-21 cells, were subjected to growth-competition experiments in BHK-21 cells. One of the populations, termed S, was found to have a selective advantage over the other population, termed L, only when the competition passages were carried out at low m.o.i. In contrast, both populations, L and S, coexisted during serial passages carried out at high m.o.i. No differences between S and L were detected in assays of inhibition of infectivity by synthetic peptides, in cell binding-competition experiments, or in virulence for BHK-21 cells. However, FMDV S displayed increased heparin binding compared with L, and L higher virulence for Chinese hamster ovary (CHO) cells than S. These results with FMDV suggest that small differences in the interaction of the virus with the host cell may contribute to an m.o.i.-dependent selective advantage of one viral subpopulation over a closely related subpopulation. Therefore, different viral mutants from quasispecies replicating in vivo may be selected depending on the number of variant viruses relative to the number of susceptible cells.

Adaptation, Biological↗

Reversible fluconazole resistance in Candida albicans: a potential in vitro model.

To study the development and potential mechanisms of antifungal resistance in relation to antifungal exposure, reversible fluconazole resistance was examined in vitro. Candida albicans ATCC 36082 blastospores were passed in liquid yeast nitrogen base medium containing either 4, 8, 16, or 128 micrograms of fluconazole per ml, and susceptibility testing was performed after each passage. High-level fluconazole resistance (50% inhibitory concentration, > 256 micrograms/ml) developed in the isolates after serial passage in medium containing 8, 16, or 128 micrograms of fluconazole per ml, but not in isolates passed in 4 micrograms of fluconazole per ml. Reduced susceptibility was noted within four to seven passages, which was equivalent to 14 to 19 days of exposure to the drug. However, all isolates returned to the susceptible phenotype after 8 to 15 passages in medium lacking the drug; thus, fluconazole resistance was reversible in vitro. In vivo, organisms retained the resistant phenotype after a single passage in the rabbit model of infective endocarditis. Restriction digest profiles and karyotypic analysis of the parent strain and selected fluconazole-resistant and -susceptible isolates from each group were identical. Investigations into the molecular mechanisms of this reversible resistance failed to reveal increased accumulation of mRNA for 14 alpha-demethylase, the target enzyme for fluconazole, or for the candidal multidrug transporters CDR1 and BENr. This process of continuous in vitro exposure to antifungal drug may be useful as a model for studying the effects of different antifungal agents and dosing regimens on the development of resistance and for defining the mechanism(s) of reversible resistance.

Animals↗

Effect of diethylaminoethyl-dextran on the replication of a murine sarcoma (Moloney)-leukemia virus complex in mouse embryo cultures (38577).

Isolates of a sarcoma (Moloney)-leukemia virus complex prepared as cell-free extracts from mouse tumors showed no enhancement in infectivity by DEAE-D either in the sarcoma moiety measured by focus formation or in the leukemia moiety measured by XC cell assay. The sarcoma moiety was not enhanced by DEAE-D in MEM and modified McCoy's 5a media or when varying amounts of FCS and glutamine were included in the media. Progressive enhancement of viral infectivity by DEAE-D was found when the viral preparations were passaged serially in MEF cells. DEAE-D ALSO ENHANCED TUMOR FORMATION IN VIVO BY TISSUE CULTURE PASSAGED VIRUS.

Animals↗

Isolation and propagation of hepatitis A virus in hepatoma cell cultures.

Hepatitis A virus (HAV) was isolated directly from human faeces in PLC/PRF/5 cells. In the first passage cell-bound and supernatant viruses were found by immune electron microscopy and by enzymeimmunoassay. Serial passaging of HAV in PLC/PRF/5 cells resulted in its adaptation to the cell line and in reduction of the incubation time. HAV was still detectable after 10 cell passages. Cell-bound as well as supernatant HAV were employed as antigens in anti HAV IgM-enzymeimmunoassay.

Adult↗

Newcastle disease virus passage in MDBK cells as an aid in detection of a virulent subpopulation.

Newcastle disease virus strains (NDV) La Sota, Texas GB (GB), and mixtures of the two strains were serially passaged in embryonated chicken eggs or the MDBK cell line, a more restrictive culture system than eggs for NDV. The two culture systems were compared by evaluating culture harvests for pathogenicity in inoculated chickens; the harvests were identified by hemagglutination-inhibition tests against monoclonal antibodies that can differentiate La Sota and GB cultures. Both viruses, inoculated alone or as mixtures, were propagated by passage in chicken eggs. La Sota strain failed to propagate by continuous passage in MDBK cells, and only GB was identified in culture harvests propagated in MDBK cells that had been inoculated with GB or mixtures of GB and La Sota. The results indicate that the MDBK cell line is a more selective substrate than chicken eggs and suggest that passage in MDBK cells may aid in selecting for more virulent subpopulations of NDV in a mixed culture. Other reference NDV strains, pigeon NDV isolates, and recent lentogenic NDV isolates from chickens were also passaged in MDBK cells; all strains except those that are classified as lentogens like La Sota could be serially propagated in MDBK cells.

Animals↗

Modification of Junin virus neurotropism in mice by selective brain or spinal cord passaging.

The percentage of suckling mice that developed paralysis after intracerebral Junin virus (XJ-JV pathogenic strain) inoculation (13.8%) consistently increased after 5 serial passages of virus-infected brain or spinal cord obtained from paralytic animals, reaching 37.9 and 45.7%, respectively. As expected, all paralytic mice exhibited an identical spinal cord histologic picture, with widespread JV antigen in spinal cord astrocytes and neurons, particularly the large motor neurons of the anterior horn. These findings strongly support the existence of a motor neurotropic viral particle subpopulation in parental XJ-JV stock.

Animals↗

Development of a new live attenuated mumps virus vaccine in human diploid cells.

A new live attenuated mumps vaccine was developed in human diploid cells. The S-12 virus was isolated from a 10-year-old girl showing typical symptoms of mumps infection, the diagnosis was confirmed by a pediatrician. The virus was isolated in green monkey kidney cells, without passage in chick embryo cavity or chick embryo fibroblasts. Attenuation of the wild virus was performed by serial passages in human diploid cells (MRC-5). The attenuated virus was characterized by identity tests, as well as by a reduction in plaque size, as marker tests. The virus was free from adventitious agents and safe for laboratory animals as well as for monkeys. The reactogenicity and immunogenicity of the S-12 virus for man was investigated by administration of a monovalent vaccine to 20 seronegative adult male volunteers and 30 children aged 1 to 5 years without history of mumps infection or vaccination. Seroconversion was obtained in 95% of the vaccinees. The new vaccine has the advantage of not requiring specific pathogen-free eggs, and being free from avian proteins and therefore can be used in sensitized patients.

Animals↗

Liposomes replace serum for cultivation of fermenting mycoplasmas.

Cholesterol and albumin are limiting factors in the growth of Mycoplasma species. These nutrients are usually supplied in the culture medium by the addition of serum. The growth of M. pneumoniae in a serum-free medium containing an ethanolic cholesterol suspension and albumin was about one-half the level attained in serum-containing medium. M. gallisepticum and M. fermentans were not cultivable in the cholesterol suspension medium even after supplements were included. In another culture medium containing phosphatidylcholine-cholesterol liposomes and albumin as serum replacements, the growth of M. pneumoniae was approximately equal to that in serum-containing medium, and the growth of M. gallisepticum and M. fermentans was significantly greater than that in medium containing serum. M. fermentans produced even higher yields in liposome medium supplemented with arginine. These fermenting mycoplasmas readily adapted to the liposome medium and by the fifth or sixth serial passage produced thick confluent growth on the lower surface of culture bottles. To obtain maximum growth, we serially transferred the mycoplasmas at least 10 times in serum-free medium before quantitations of growth were made. This is the first report of a serum-free mycoplasma medium of high growth-promoting ability.

Blood↗

Protein-free culture of the human pancreatic cancer cell line, SUIT-2.

A human pancreatic cancer cell line (SUIT-2), usually cultured in serum-supplemented medium (DMEM/FBS), was adapted to protein-free conditions using a 1:1 mixture of DMEM and Ham's F12 medium (DMEM/F12). The cells have been maintained in DMEM/F12 for more than 2 years, with over 50 passages. The SUIT-2 cells grew in DMEM/F12 with a doubling time of 35.7 h, which was similar to that in DMEM/FBS (35.0 h). The cellular morphology was similar in both media. Type IV collagenolytic activity was detected in the conditioned media from cells grown in DMEM/F12. The secretion of CEA and CA19-9 initially decreased in DMEM/F12. CEA was not detected after passage 5 (p5) but the concentration of CA19-9 did not decrease further after the first few serial passages in protein-free medium. Xenografts of SUIT-2 cells cultured in DMEM/F12 remained tumorigenic and could form metastatic tumors in nude mice. In conclusion, SUIT-2 cells grown in protein-free media continued to produce CA19-9 and type IV collagenase in vitro and formed metastatic tumors in vivo.

Animals↗