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Human hematopoietic tumors in nude mice.

Despite the difficulty in establishing human hematopoietic tumors in nude mice, four human lymphomas were successfully heterotransplanted and passaged serially in our laboratory. Additional immunosuppression with chemotherapy, whole-body radiation or splenectomy was not required for establishment of these tumors. All four of these tumors were of the non-Hodgkin's lymphoma type. In each case the tumors in the nude mice were histologically identical to the biopsy specimens from the patient in whom they were derived. Attempts to transplant tumor from 17 patients with Hodgkin's disease or 4 patients with immunoblastic lymphadenopathy were unsuccessful. Tumors from 2 patients with chronic myelogenous leukemia and 1 with hairy cell leukemia could be grown in nude mice conditioned with whole-body radiation or cytosine arabinoside, but these tumors could not be passaged to other nude mice. Cell surface markers were determined on the four serially passaged lymphomas. These surface markers were similar to the markers on the original tumors, even after long periods of mouse-to-mouse passage. In 1 patient with fevers, night sweats and mediastinal mass in whom a diagnosis had not been made after several biopsies, examination of tumor tissue that had been transplanted from the patient to the nude mouse clearly established the diagnosis of lymphoma.

Animals↗

Effects of insulin, transferrin, cholera toxin, and epidermal growth factor on growth and morphology of human fetal normal colon epithelial cells.

Primary and serially passaged human fetal normal colon epithelial cells have been propagated and characterized with regard to their nature and origin. The cells exhibited many characteristics of colonic epithelial cells including the presence of mucopolysaccharides and carcinoembryonic antigen. Serial passaging of the cultures required supplementing the medium with insulin, transferrin, epidermal growth factor, and cholera toxin. This study also shows that these factors have specific roles in the regulation of growth and morphologic differentiation of the cell cultures. Insulin apparently is mainly associated with cell multiplication, whereas transferrin, epidermal growth factor, and cholera toxin are associated with the maintenance of morphologic differentiation status of the cell cultures.

Cell Differentiation↗

Studies on the in vivo and in vitro multiplication of the LDH virus of mice.

In vivo analysis of the virus titer in various loci, 24 hr after infection, showed that a titer similar to that in the blood plasma was found in the ascitic fluid of Erlich ascites cancer-bearing mice, and in lymph nodes, spleen, and thymus, i.e. loci which contain macrophages as a common cell type. However, only in the lymph nodes and in the ascitic fluid did the increase in virus titer precede or parallel the increase in the plasma. The LDH virus titer in the plasma of X-irradiated mice was similar to that of control mice, eliminating radiation-sensitive cells but not macrophages as target cells of the virus. Electron microscopic observation of infected lymph node cells revealed the presence of two types of particles: one consisting of small densely stained annuli, about 25 mmicro in diameter and one of similar dense annuli with a halo extending the diameter to about 50 mmicro. Such particles were repeatedly observed within single or double membraned vesicles. In vitro, the LDH virus multiplied only in cultures of mouse peritoneal macrophages, maintained in medium 199 with 10% FBS. The virus titer could be maintained for at least 33 days, during eleven serial passages, involving an overall dilution factor of 10(11). These results corroborate the findings of Evans and Salaman, who used peritoneal macrophages maintained in Eagle's medium and 5 to 10% lamb serum. However, in the serial passage experiments reported here, the virus titer could only be maintained following trypsinization of each successive inoculum. The role of macrophages as the target cell for LDH virus multiplication in vivo is discussed.

Culture Techniques↗

Feeder cell density--a key parameter in human embryonic stem cell culture.

A key issue in human embryonic stem (ES) cell culture that has largely been ignored is the high degree of variability in the murine embryonic fibroblast (MEF) feeder cell density, which has been reported by different studies and protocols. Presumably, too low a feeder cell density would result in insufficient levels of secreted factors, extracellular matrix, and cellular contacts provided by the feeder cells for the maintenance of human ES cells in the undifferentiated state. Too high a feeder cell density, on the other hand, may result in a more rapid depletion of nutrients and oxygen within the in vitro culture milieu, as well as physically hinder the attachment and growth of ES colonies during serial passaging. Preliminary investigations by our group revealed that an elevated MEF cell density of 32,000 cells/cm2, above the recommended value of 20,000 cells/cm2, appeared to be highly detrimental to the attachment and growth of serially passaged ES colonies of the H9 line (WiCell Research Institute Inc., Wilmington, MA, USA). At the edge of ES colonies that have attached to the higher density feeder layer (32,000 cells/cm2), the ES cells appear to stack up to form a "bulge." This was not observed under the recommended feeder cell density of 20,000 cells/cm2. By contrast, other established ES cell lines are routinely propagated at much higher feeder densities of 60,000 to 70,000 cells/cm2. This report briefly discusses the issue of MEF feeder cell density in relation to our preliminary observations, and the results of other studies.

Animals↗

Genetic variability of herpes simplex virus: development of a pathogenic variant during passaging of a nonpathogenic herpes simplex virus type 1 virus strain in mouse brain.

Herpes simplex virus type 1 ANG (HSV-1 ANG) is originally nonpathogenic for inbred mice upon intraperitoneal intravenous, or intravaginal inoculation. In contrast, mice died of encephalitis within 4 to 5 days after intracerebral inoculation with this strain. HSV-1 ANG was serially passaged in mouse brains. In two independent series, peripherally pathogenic virus variants had developed and accumulated in the virus progeny after 12 to 15 intracerebral passages. In mixed infections both nonpathogenic and pathogenic viruses replicated at the primary site of infection and spread to various organs. However, only the pathogenic phenotype could be recovered from the spinal cord and the brain. Comparison of the restriction enzyme cleavage patterns of pathogenic ANG and nonpathogenic ANG virus DNAs revealed distinct alterations in the S-segment (US) sequences bounded by coordinates 0.953 and 0.958 in the prototype orientation and by coordinates 0.862 to 0.867 in the IS orientation of the viral genome. However, it is not known whether these alterations are physiologically relevant to the observed changes in pathogenicity. When coinjected intraperitoneally at 50 to 100-fold excess, the nonpathogenic HSV-1 ANG protected mice against its own pathogenic variant as well as against other pathogenic HSV-1 strains. Pathogenic HSV-1 ANG proved to be genetically and phenotypically stable for at least 25 serial passages in tissue culture at either high or low multiplicity of infection.

Animals↗

Phenotypic stability of murine tumor cells in vitro and in vivo.

Murine fibrosarcoma cells that vary in their transplantability in syngeneic mice were isolated from a heterogeneous parent tumor (induced in a female C57BL/6 inbred mouse) and maintained in culture by serial passage. Several biologic properties that discriminate between the high- and low-transplantable lines (including adhesiveness, motility, and levels of chymotrypsin-like esterase activity), as well as properties that do not separate these lines (e.g., in vitro growth rates and levels of protease and glycosidase activities), were measured at periodic intervals over 2 years. Ability to induce primary tumors and to induce metastases from these tumors were evaluated at the same intervals. The high- and low-transplantable lines were also transplanted into syngeneic mice at tumorigenic doses. Isolates from primary and metastatic tumors induced in the animals were reestablished in culture and examined for the various characteristics of passages 5, 10, 20, and 30. The properties of the cells maintained continually in culture remained stable throughout the 2-year observation period. Tumor isolates showed some evidence of modulation immediately after reestablishment in culture, but by passage 10 they appeared to be identical to the prototype parent lines. These data show that the fibrosarcoma cells do not undergo continual phenotypic "drift" as has been suggested to occur with other tumor lines maintained by serial passage in animals or in culture.

Animals↗

Molecular cloning and sequencing of a human hepatitis delta (delta) virus RNA.

Human hepatitis delta (delta) virus (HDV) is a form of defective virus, which infects humans only in the presence of a co-infecting hepatitis B virus (HBV). HDV superinfection in a chronic HBV carrier often results in severe chronic hepatitis and cirrhosis, whereas acute HDV and HBV co-infection is frequently associated with fulminant hepatitis. HDV consists of a 36-nm particle, which contains an envelope with HBV surface antigen, and a nucleocapsid containing the hepatitis delta-antigen (HDAg) and an RNA genome of 1.75 kilobases (kb). Recently, the genomic RNA from an HDV serially passaged in chimpanzees has been cloned and sequenced in a study which showed that the HDV RNA is a single-stranded circular molecule with properties similar to those of viroid or virusoid. However, it is not known whether serial passages in chimpanzees had altered the properties of human HDV. Here we report the cloning and sequencing of an HDV RNA isolated directly from a patient with acute delta-hepatitis. The sequence showed considerable divergence (11%) from that of the chimpanzee-adapted HDV. Five open reading frames (ORFs) of more than 100 amino acids in both genomic and anti-genomic sense were found. The largest ORF in antigenomic sense, which can code for 214 amino acids, may correspond to the HDAg.

Amino Acid Sequence↗

Spectral karyotyping of sarcomas and fibroblasts derived from Ink4a/Arf-deficient mice reveals chromosomal instability in vitro.

The Ink4a/Arf locus is functionally linked to the Rb and p53 pathways through the action of its two gene products. Mouse models null for this locus show rapid onset of cancer with a preponderance of lymphomas and sarcomas. We report on a study of cell lines derived from sarcomas arising in Ink4a/Arf null mice. The cytogenetics of these lines was monitored over the course of serial passage. Results indicate that early passage cells are relatively normal. However, after multiple passages chromosomal instability becomes apparent as evidenced by increasing tetraploidy and aneuploidy, and the concomitant loss of clonality. To further evaluate the effect of Ink4a/Arf-deficiency on chromosomal stability in vitro, we isolated Ink4a/Arf deficient primary murine embryonic fibroblasts (MEFs), serially passaged them, and analyzed their chromosomal stability by spectral karyotyping (a 24-color chromosome paint-FISH technique). We found that chromosomal instability in Ink4a/Arf deficient MEFs developed with the same timing as seen in cell lines derived from Ink4a/Arf deficient sarcomas. Thus, chromosomal instability seen in Ink4a/Arf deficient tumors in vitro may be unrelated to the original phenotype of the tumor in vivo. Therefore, interpretation of cytogenetic data from cell lines derived from Ink4a/Arf deficient tumors should be done on early passage cells.

Animals↗

Identification of viral membrane proteins required for cell fusion and viral dissemination that are modified during vaccinia virus persistence.

Wild-type vaccinia virus WR strain forms non-fusogenic (F-) large plaques and is hemagglutinin positive (HA+) under normal conditions of virus infection. We have analyzed a collection of spontaneous, highly attenuated mutants of vaccinia virus isolated from persistently infected Friend erythroleukemia cells (E. Paez, S. Dallo, and M. Esteban, J. Virol. 61, 2642-2647, 1987) for the ability to express HA during virus infection. After 14 cell passages, all the mutants isolated were hemadsorption negative (HAD-) and did not synthesize a HA that could be recognized by anti-HA monoclonal antibodies. All these HA- mutants induced extensive cell-cell fusion (F+), with the exception of two mutants (65-16 and 101-14) isolated from late cell passages. Nucleotide sequence analysis of the HA gene in these two mutants confirmed the HA- phenotype. A frameshift mutation very close to the initiation codon resulted in premature translational termination. The truncated gene now only encodes the first 25 amino acids. Analysis of progeny from "wild-type," like early serial passage virus (5-3) X mutant back crosses, shows that for one late passage non-fusogenic small-plaque mutant (101-14) among large plaque progeny there is good correspondence between the ability to fuse and the absence of a viral HA and that each large plaque mutant contains a normal 14 kDa membrane protein. However, with a second serial passage mutant 65-16, which, like 101-14, is a nonfusogenic small-plaque variant, there is again an excellent correlation between the inability to synthesize HA and the ability to fuse, but there is no correlation of plaque size with a normal 14 kDa viral membrane protein, as most large plaque mutants encode a larger, i.e., 17 kDa protein. Rescue experiments of 65-16 with bona fide cloned 14 kDa protein gene confirm that the ability to regulate plaque size and cell fusion in this mutant is due to a protein other than the 14 kDa protein. Marker rescue experiments indicated that the map position of the additional mutation coincided with a small deletion occurring in the HindIII F fragment. This deletion affected the 5'-end and promoter sequences of the 37 kDa envelope protein gene and produced a lack of expression of this protein, shown by others to be involved in the formation of extracellular enveloped virus in infected cells. These results shown that viruses with mutations of viral membrane proteins required for cell fusion and viral dissemination are selected during vaccinia virus persistence in cell culture.

Amino Acid Sequence↗

The use of an exchange guide wire in coronary angioplasty.

Of 84 consecutive patients referred for coronary angioplasty, an exchange length (260 cm) guide wire was used in 17 (20%) to allow serial passage of different sized dilatation catheters. Exchanges were performed for the following reasons: 1) inability to cross the stenotic segment with a full-sized dilatation catheter, with exchange for a smaller catheter to permit initial dilatation followed by a second exchange to reintroduce the full-sized balloon catheter; 2) premeditated initial use of a low-profile balloon catheter in severe stenosis, with subsequent exchange to a full-sized balloon catheter; 3) inability to achieve a satisfactory reduction of the transstenotic gradient or angiographic stenosis with the initial dilation catheter, requiring subsequent passage of a larger balloon catheter into the partially dilated segment. Eighteen of 19 attempted exchanges and 18 of 19 angioplasty procedures were completed successfully. The use of exchange guide wires permits multiple recrossings of a dilated segment, allows safe serial passage of different sized balloon catheters, and obviates the need for renegotiating difficult proximal coronary anatomy. The exchange guide wire techique can be applied safely and effectively to coronary angioplasty and provides an additional option in the successful completion of movable guide wire angioplasty procedures.

Adult↗

Parasite-host specificity: experimental studies on the basis of parasite adaptation.

Specificity in parasitic interactions can be defined by host genotypes that are resistant to only a subset of parasite genotypes and parasite genotypes that are infective on a subset of host genotypes. It is not always clear if specificity is determined by the genotypes of the interactors, or if phenotypic plasticity (sometimes called acclimation) plays a larger role. Coevolutionary outcomes critically depend on the pervasiveness of genetic interactions. We studied specificity using the bacterial parasite Pasteuria ramosa and its crustacean host Daphnia magna. First, we tested for short-term adaptation of P. ramosa lines that had been rapidly shifted among different host genotypes. Adaptation at this time-scale would demonstrate the contribution of phenotypic plasticity to specificity. We found that infectivity was stable across lines irrespective of recent passage history, indicating that in the short term infection outcomes are fixed by genetic backgrounds. Second, we studied longer-term evolution with two host clones and two parasite lines. In this experiment, P. ramosa lines had the possibility to evolve adaptations to the host genotype (clone) in which they were serially passaged, which allowed us to test for a genetic component to specificity. Substantial differences arose in the two passaged lines: one parasite line gained infectivity on the host clone it was grown on, but it lost infectivity on the other host genotype (this line evolved specificity), while the other parasite line evolved higher infectivity on both host clones. We crossed the two host genotypes used in the serial passage experiment and found evidence that the number of host genes that underlies resistance variation is small. In sum, our results show that P. ramosa specificity is a stably inherited trait, it can evolve rapidly, and it is controlled by few genes in the host. These findings are consistent with the idea of a rapid, ongoing arms race between the bacterium and its host.

Adaptation, Physiological↗

Development and mechanism of fluoroquinolone resistance in Legionella pneumophila.

The potential for selection in vitro of Legionella pneumophila mutants resistant to fluoroquinolones was investigated. Six distinct clinical isolates of L. pneumophila were subcultured in subinhibitory concentrations of ciprofloxacin, levofloxacin, clinafloxacin, trovafloxacin and moxifloxacin until MICs increased at least eight-fold. The numbers of serial passages required in microbroth dilution series were determined. The gyrA gene of the six parental strains, and 12 selected mutant strains, was sequenced. The five quinolones differed markedly in their ability to select mutants with decreased susceptibility. The average number of serial passages required was low in the cases of clinafloxacin (n = 10.6), ciprofloxacin and levofloxacin (both n = 13), but notably higher for trovafloxacin (n = 26.6) and moxifloxacin (n = 22.5). Five mutants treated with ciprofloxacin and three treated with moxifloxacin showed Thr83-->Lys or Thr83-->Ile amino acid changes in the gyrA gene. In conclusion, different quinolones lose their antimicrobial effect after a varying number of passages. This study demonstrated, for the first time to our knowledge, that gyrA in L. pneumophila is a possible target of fluoroquinolones.

Amino Acid Substitution↗

Adaptation studies with Ross River virus: laboratory mice and cell cultures.

Ross River virus, an Australian group A arbovirus, was adapted by serial passage to cell cultures and to day old mice. The results of titrations in mice of different ages allowed the comparison of virulence between different stocks. Passage in cell cultures depressed the virulence of virus while passage in mice raised the level of virulence. Clones of original virus populations revealed heterogeneity with respect to virulence but none of the 41 clones was as highly virulent as virus passed 10 times in mice. Clones selected in sequence during serial passage in mice indicated that adaptation proceeded by the overgrowth of variants of increasingly higher virulence, and that clones from relatively hhighly passaged s strains were still heterogeneous in virulence.

Adaptation, Biological↗

De novo infection and serial transmission of Kaposi's sarcoma-associated herpesvirus in cultured endothelial cells.

Infection by Kaposi's sarcoma-associated herpesvirus (KSHV) is central to the pathogenesis of the endothelial neoplasm Kaposi's sarcoma (KS) and is also linked to the rare B-cell tumor known as primary effusion lymphoma (PEL). Latently infected PEL cell lines can be induced to enter the lytic cycle and produce KSHV virions. However, such cells do not support de novo infection or serial propagation of KSHV. These limitations have prevented the development of systems for the genetic analysis of KSHV and have impeded a deeper understanding of KS pathogenesis. Here we show that human dermal microvascular endothelial cells immortalized by expression of telomerase can be readily infected by KSHV virions produced by PEL cells. Infection is predominantly latent, but a small subpopulation enters the lytic cycle spontaneously. Phorbol ester (tetradecanoyl phorbol acetate [TPA]) treatment of latently infected cells leads to enhanced induction of lytic KSHV replication, resulting in foci of cytopathic effect. There is no cytopathic effect or viral DNA expansion when infected TIME cells (telomerase-immortalized microvascular endothelial cells) are TPA induced in the presence of phosphonoacetic acid (PAA), an inhibitor of herpesvirus replication. Supernatants from phorbol-induced cultures transfer latent KSHV infection to uninfected cells, which can likewise be induced to undergo lytic replication by TPA treatment, and the virus can be further serially transmitted. Serial passage of the virus in TIME cells is completely inhibited when TPA treatment is done in the presence of PAA. Latently infected endothelial cells do not undergo major morphological changes or growth transformation, and infection is lost from the culture upon serial passage. This behavior faithfully recapitulates the behavior of spindle cells explanted from primary KS biopsies, strongly supporting the biological relevance of this culture system. These findings suggest that either the stability or the growth-deregulatory potential of the KSHV latency program in endothelial cells is more limited than might be predicted by analogy with other oncogenic viruses.

Caenorhabditis elegans Proteins↗

Eimeria tenella: experimental development of resistance to monensin in the chicken.

The development of resistance by the Houghton strain of Eimeria tenella (H) to monensin has been studied by serially passaging the strain in groups of 30 birds, each inoculated with 10(6) oocysts and given 100 p.p.m. of drug in the food. After 16 passages a line partially resistant to this concentration of monensin was produced. Passage of the line in birds medicated with 200 or 300 p.p.m. of monensin did not result in the acquisition of a greater degree of resistance. A further reduction in sensitivity to 100 p.p.m. monensin was obtained, however, when the line was serially passaged in 15 groups of 6 birds each given 3 X 10(6) oocysts. Five passages in the absence of monensin resulted in restoration of sensitivity, suggesting that the resistance developed was not stable. The pathogenic effects of the line that had been passaged in chickens given 300 p.p.m. of monensin were less than those of the parent line.

Animals↗

[Reversibility of IUdR resistance to sensitivity to an HSV1 strain in experimental keratitis in rabbits].

During 7 serial passages of Herpes Simplex Virus (HSV1) in rabbit cornea treated with idoxuridine (IUdR) (P1 to P7), the emergence of resistance had been obtained from P3. The reversion towards IUdR sensitivity has been investigated from either viral population P3 or P6 by 6 serial passages in rabbit cornea treated by Vaseline (V1 to V6). From viral population P3, the reversion to IUdR sensitivity has been obtained at V4. In contrast, from viral population P6, the IUdR resistance was conserved from V1 to V6. In vitro, on Vero cells, the effective doses 50% (ED50) and 90% (ED90), determined by dye uptake assay and plaque reduction assay, confirmed the reversibility towards IUdR sensitivity obtained from P3 and the stability of IUdR resistance from P6.

Animals↗

Continual cultivation of Toxoplasma gondii on HeLa cells.

Continual cultivation of Toxoplasma gondii in monolayers of HeLa cells has been performed for 6 years. The toxoplasmas were then used for serial cultivation experiments. While searching for optimal conditions for toxoplasma inoculation it was found that infected HeLa cells which were scraped off the glass were a more suitable inoculum than those released by trypsinization. The optimal dose was one zoite per 12 host cells, medium level height at adsorption 2 mm and adsorption time 90 min at 37 degrees C. The concentration of sodium bicarbonate ranging from 8.7 to 26.1 mM had no effect on the multiplication of toxoplasmas. In serial passages in Roux bottles, when the medium was changed every 2-3 days, the average yield of toxoplasmas was 6.2 X 10(6) per ml of medium (after the second change of medium, i.e., 7 days after inoculation). The toxoplasmas obtained in serial passages were suitable for purification studies, for preparation of small amounts of antigens and as an inoculum for suspension cultures.

Animals↗

Type 1 fimbriation and its phase switching in diarrheagenic Escherichia coli strains.

Type 1 fimbriae can be expressed by most Escherichia coli strains and mediate mannose-sensitive (MS) adherence to mammalian epithelial cells. However, the role of type 1 fimbriae in enteric pathogenesis has been unclear. Expression of type 1 fimbriae in E. coli is phase variable and is associated with the inversion of a short DNA element (fim switch). Forty-six strains of diarrheagenic E. coli were examined for the expression of type 1 fimbriae. Only four of these strains were originally type 1 fimbriated. Seventeen strains, originally nonfimbriated, expressed type 1 fimbriae in association with off-to-on inversion of the fim switch, after serial passages in static culture. The switching frequencies of these strains, from fimbriate to nonfimbriate, were greater than that of the laboratory strain E. coli K-12. None of the 16 strains of serovar O157:H7 or O157:H(-) expressed type 1 fimbriae after serial passages in static culture. The nucleotide sequence analysis of the fim switch region revealed that all of the O157:H7 and O157:H(-) strains had a 16-bp deletion in the invertible element, and the fim switch was locked in the "off" orientation. The results suggest that expression of type 1 fimbriae may be regulated differently in different E. coli pathogens causing enteric infections.

Bacterial Adhesion↗