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Adverse effects of mouse hepatitis virus on ascites myeloma passage in the BALB/eJ mouse.

During experimental serial passage of ascites myelomas through BALB/cJ mice, unexpected illness and premature deaths occurred. Postmortem examination of affected mice revealed focal or diffuse discolored depressed areas in the liver and, in some cases, splenomegaly. Histopathologic findings consisted of focal to diffuse areas of necrosis with minimal leukocytic infiltration. Aerobic and anaerobic bacterial cultures of livers and spleens from affected mice were negative. Mouse hepatitis virus (MHV) was isolated from livers of clinically ill mice and from the ascites myeloma lines. An MHV contaminated ascites myeloma line, when passed into nude (nu/nu) mice, killed the animals in 6 days; the virus was isolated from livers of inoculated mice. Attempts to determine the source of the infection were unsuccessful. Serologic survey of newly acquired mice indicated no evidence of antibodies to MHV while mice in holding rooms had titers that ranged from 1:10 to 1:40. Two solid myeloma lines (being maintained by subcutaneous passage) were negative for MHV when tested by virus isolation techniques, and nine lines were negative to 11 murine viruses when tested by mouse antibody production assay. Attempts to demonstrate Eperythrozoon coccoides in control BALB/cJ mice were unsuccessful. Because of the outbreak, changes were made in animal handling procedures. A colony of BALB/cAn mice negative to MHV antibodies was established to provide animals for experimental passage of tumors, and animals in both the breeding and transfer room were placed under filter tops. The results were encouraging. In the four newly established tumor lines, one having been passed 46 times, no illness or unexplained deaths were observed.

Animals↗

Leishmania mexicana: serial cultivation of intracellular stages in a cell-free medium.

A cell-free liquid medium has been devised for serial cultivation of Leishmania mexicana pifanoi amastigotes at 33 and 35 C. It consists of tissue culture Medium 199 fortified primarily with a high concentration of water-soluble vitamins, nucleotides, and inactivated fetal bovine serum. The initial pH of the medium is 7.2. Starting with a population of promastigotes as inoculum and serially cultured at 33 or 35 C at 4- to 10-day intervals, the proportion of amastigotes steadily increased and that of promastigotes gradually decreased during the first subculture. By the end of the incubation period in the second subculture, practically all (99%) of the organisms are amastigotes. The amastigotes thus obtained can be cultured indefinitely by serial transfers. In this medium, amastigotes may reach a density of 8 X 10(7)/ml after 10 days of incubation at 33 C, and 5 X 10(7)/ml at 35 C. The medium was modified to have an initial pH of 8.0 by Hepes [4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid] buffer and higher concentrations of sodium bicarbonate. When amastigotes cultured in the original medium at 33 or 35 C are transferred into the modified medium and incubated at 26 C, the amastigotes entirely transformed into promastigotes after three serial passages. These promastigotes could be serially subcultured indefinitely in the modified medium at 4- to 12-day intervals. The promastigotes cultured at 26 C may reach a population density of 7 X 10(7)/ml after 12 days of incubation.

Animals↗

Spontaneous transformation to anchorage-independent growth of a xeroderma pigmentosum fibroblast cell strain.

A skin fibroblast cell strain (GM2995) derived from a patient with xeroderma pigmentosum was received at low passage. As the cells were serially passaged (1:4 dilution), their size and growth characteristics changed. By passage 13, approximately 90% of the colonies produced by cells seeded at low density were composed of small, densely packed cells. Cells capable of anchorage-independent growth were observed after passage 7; they formed round, smooth-edged colonies in soft agar. The frequency of cells exhibiting anchorage-independent growth increased rapidly at subsequent passages, reaching 35-50% of the population by passage 20. This phenomenon was accompanied by the appearance of aneuploidy. These cells are still proliferating actively at passage 35. These late-passage GM2995 cells retain the extreme hypersensitivity to the cytotoxic effect of UV radiation characteristic of early-passage GM2995 cells.

Cell Division↗

Trypanosoma cruzi: metacyclogenesis in vitro--I. Changes in the properties of metacyclic trypomastigotes maintained in the laboratory by different methods.

In this work we have studied the modifications in the biological properties of Trypanosoma cruzi when the parasite is maintained for a long time in axenic culture. The studies were done with a clone from an avirulent strain (Dm30L) and a non-cloned virulent strain (EP) of T. cruzi. Both parasites were maintained, for at least three years, by successive triatomine/mouse alternate passage (control condition), or by serial passage in axenic medium (culture condition), or only in the mouse (mouse condition). The comparison between parasites of culture and control condition showed that metacyclogenesis capacity was reduced in the former and that the resulting metacyclics displayed an attenuated virulence. In order to compare the virulence of metacyclics from the urine of the insect vector, Rhodnius prolixus were infected by artificial feeding with parasites of the control or culture condition. After three triatomine/triatomine passages, there was observed an almost identical biological behavior for these parasites, hence indicating that the maintenance of T. cruzi for a long time in axenic culture affects the differentiation capacity and the virulence of the parasite. Additionally, it was demonstrated that it is possible to maintain T. cruzi exclusively through passages in the invertebrate host.

Animals↗

Serial cyclic transmission of bluetongue virus in sheep and Culicoides variipennis.

Bluetongue virus (strain 62-45S) was transmitted from sheep to sheep throughout a year by vector bites. A colonized population (SONORA strain, 000 line) of the biological vector Culicoides variipennis (Coquilllett) was used. Fifteen serial cyclic transmissions covered a period of 13 months from October through November of the following year. The mean infection rate of the biting gnats was 37 percent. The clinical response to bluetongue virus was significantly more severe in sheep infected by vector bites than in those inoculated with the virus at the same sheep-serial passage level. A second corroborative serial transmission was conducted for 7 months from June through December. The mean infection rate of the vector was 27%.

Animals↗

Selection kinetics during serial cell culture passage of mixtures of wild-type Autographa californica nuclear polyhedrosis virus and its recombinant Ac360-beta-gal.

Detailed analysis of the selection process in serial co-infections of cell cultures by wild-type Autographa californica nuclear polyhedrosis virus (AcNPV) strain E2 (AcNPV/E2) and Ac360-beta-gal, a genetically engineered strain, shows that the unaltered strain was clearly dominant even when it initially constituted the minority component in the inoculum. A method of calculating a selection coefficient that quantifies the relative advantage of one strain of virus over the other under specific culture conditions is described. Calculated selection coefficients were relatively homogeneous and almost exclusively favoured the progenitor. Selection pressure was not influenced by the relative proportions of the two strains in the population. Selection coefficients, as determined in the present study, may be useful for evaluating the effect of a genetic alteration on viral fitness under specified conditions. Unexpected high frequencies of mixed phenotype plaques were observed during infectivity titrations of media from early serial passages of co-infected cultures. Statistical evaluation implicates some non-heritable combinational phenomenon. Virus plated from mixed phenotype plaques show high segregation of phenotypes implying that genetic recombination does not contribute in a major way to the high mixed phenotype frequencies. Electron microscopic examination of virion pellets from infected 72 h cell culture media similarly argue against co-envelopment as a major contributory factor to the high frequency of mixed phenotype plaques. The cause remains undetermined.

Baculoviridae↗

Melanocytes in cultured epithelial grafts are depleted with serial subcultivation and cryopreservation: implications for clinical outcome.

Patchy hypopigmentation often occurs unpredictably in the skin regenerated from cultured epidermal autografts, especially when that skin is grown from frozen cells, serially passaged, or both. The impact of serial subcultivation and cryopreservation on melanocyte viability in the cultured epidermal autograft culture system was investigated. Serial subcultivation of human keratinocytes through as many as eight passages was performed, and melanocyte densities in confluent cultures at each passage were determined after specific labeling of melanocytes. The experimental cells were frozen before cultivation and between passages to determine the effect of standard cryopreservation on melanocyte survival. Freshly passaged cells that had not been frozen served as controls. Melanocytes were gradually depleted during fresh passage of epidermal cells but persisted through as many as seven passages. Freezing before or after the first passage or between subsequent passages resulted in a complete loss of melanocytes by the third or fourth passage. The findings suggest that cryopreservation should be avoided during cultured epidermal autograft production to optimize melanocyte survival and minimize pigmentation abnormalities that may occur after grafting.

Adult↗

Strain fidelity of chronic wasting disease upon murine adaptation.

Chronic wasting disease (CWD), a prion disease of deer and elk, is highly prevalent in some regions of North America. The establishment of mouse-adapted CWD prions has proven difficult due to the strong species barrier between mice and deer. Here we report the efficient transmission of CWD to transgenic mice overexpressing murine PrP. All mice developed disease 500 +/- 62 days after intracerebral CWD challenge. The incubation period decreased to 228 +/- 103 days on secondary passage and to 162 +/- 6 days on tertiary passage. Mice developed very large, radially structured cerebral amyloid plaques similar to those of CWD-infected deer and elk. PrP(Sc) was detected in spleen, indicating that murine CWD was lymphotropic. PrP(Sc) glycoform profiles maintained a predominantly diglycosylated PrP pattern, as seen with CWD in deer and elk, across all passages. Therefore, all pathological, biochemical, and histological strain characteristics of CWD appear to persist upon repetitive serial passage through mice. These findings indicate that the salient strain-specific properties of CWD are encoded by agent-intrinsic components rather than by host factors.

Amino Acid Sequence↗

Retention of low copy number human papillomavirus DNA in cultured cutaneous and mucosal wart keratinocytes.

Cultured wart keratinocytes have previously been described as having a limited proclivity to maintain episomal human papillomavirus (HPV) DNA. To investigate the nature of episome loss, and to determine keratinocyte-specific factors involved in it, we have examined a large series of anogenital and oral wart keratinocyte cultures, tracing episomal copy number with culture passage. We report that a higher proportion of oral wart keratinocytes maintain episomal HPV DNA to first passage (70% compared with 37% of anogenital wart cultures) when screened by slot blot hybridization. Furthermore, oral wart keratinocytes maintain episomal HPV copy through a greater number of passages (60% positive at passage 2 compared with 2% of anogenital wart cultures) with this technique. When anogenital cultures were examined at first passage for HPV infection by PCR with Southern blot hybridization of the product, a further 34% were found to be HPV-positive. To determine the mechanism of loss of episomal DNA from these cultures we examined the relative HPV copy number in cells which adhered to the culture vessel following passage and in those which did not adhere. Those which remained floating contained episomal HPV at high copy number whereas those which adhered were negative by slot blotting. The adherent cells, however, remained positive by PCR at subsequent passages until senescence. We conclude that a subpopulation of HPV-positive keratinocytes may be maintained in culture through serial passage until senescence.

Blotting, Southern↗

Effect of in vitro adaptation of Marek's disease virus on pock induction on the chorioallantoic membrane of embryonated chicken eggs.

Cell-associated preparations of several isolates of Marek's disease virus produced more pocks on the chorioallantoic membrane of embryonated chicken eggs than plaques in duck embryo fibroblasts, thus indicating that lesion response in eggs was more sensitive than cytopathic response in duck embryo fibroblasts for assaying low-passage Marek's disease virus. Adaptation of the virus to cell cultures by serial passages, however, substantially reduced its pock response so that the titer ratio (plaque-forming units in duck embryo fibroblasts/pock-forming units in eggs) of cell culture-adapted Marek's disease virus was 1 or higher. The decreased pock response could not be attributed to selection of preexisting virus variant(s) with low affinity for chorioallantoic membrane because cloned Marek's disease virus had a good pock response at low cell culture passage levels, but this response decreased as the virus was attenuated by serial cell culture passage.

Animals↗

[Effectiveness of live influenza vaccines obtained by strain recombination and passages].

A comparative study of the immunizing activity of strain variants derived from one epidemic influenza virus A/USSR/77 (H1N1) by using different attenuation methods was carried out. Serial passages in chick embryos preserved the biological activity of the virus better than genetic recombination which was manifested by a significant superiority of the passaged virus over the reassortant in the capacity of replicating in the upper respiratory tracts of the vaccinees, of inducing immune responses and creating the protection of the portals of entry of infection. The problem of optimal preservation of biological potentials of influenza virus in the process of attenuation is discussed.

Adult↗

Rescue of synthetic analogs of genomic RNA and replicative-intermediate RNA of human parainfluenza virus type 3.

The genome of human parainfluenza virus type 3 (PIV3) is a single negative-sense RNA strand (vRNA) that is 15,463 nucleotides in length. A cDNA was constructed to encode an 898-nucleotide, internally deleted version of PIV3 vRNA, PIV3-CAT vRNA, in which the viral genes were replaced with the bacterial chloramphenicol acetyltransferase (CAT) reporter gene. The CAT gene was flanked in turn by sequences representing (i) nontranslated sequences of the first and last genes in the PIV3 genome, (ii) PIV3 gene-start and gene-end sequences, which are presumed to be transcription signals, and (iii) 3' extracistronic (leader) and 5' extracistronic (trailer) terminal regions of PIV3 vRNA. A second cDNA was constructed to encode the exact complement of PIV3-CAT vRNA; this positive-sense RNA, PIV3-CAT vcRNA, would correspond to the predicted replicative intermediate of PIV3-CAT vRNA. When synthesized in vitro by runoff transcription with T7 RNA polymerase and transfected separately into PIV3-infected cells, both PIV3-CAT vRNA and vcRNA were rescued with similar efficiencies; that is, they were expressed to yield CAT and were packaged into particles that could be used to infect fresh cells. Rescue of PIV3-CAT vRNA was strictly dependent on complementation by PIV3; PIV3 could not be replaced by respiratory syncytial virus or, unexpectedly, by a bovine strain of PIV3. Passage was blocked by prior incubation with neutralizing monoclonal antibodies specific to the PIV3 attachment protein. Also, during nine serial passages, the expression of CAT by PIV3-CAT vRNA increased more than 3,000-fold. These results indicated that the 3'-terminal 111 nucleotides and the 5'-terminal 115 nucleotides of PIV3 vRNA, which are present in PIV3-CAT vRNA, contained all of the cis-acting RNA sequences required for replication, gene expression, and transmission.

Base Sequence↗

Replication of two porcine parvovirus isolates at non-permissive temperatures.

Previous studies have shown that replication in vitro of the porcine parvovirus (PPV) isolate, KBSH, was restricted at 39 degrees C but not at 37 degrees C. In contrast, replication of the Kresse isolate was restricted at 37 degrees C but not at 39 degrees C. In this study, Kresse and KBSH isolates were passaged up to ten times in swine testicle (ST) cells at non-permissive temperatures, and at subsequent passage viral protein synthesis, viral DNA synthesis, and progeny virus were evaluated. KBSH became adapted for replication at 39 degrees C upon serial passages, displaying an appreciable increase in viral progeny, viral polypeptides, and viral DNA concentration. This finding was also observed with Kresse virus isolate continuously passaged at 37 degrees C. Neither isolate became adapted for replication at 32 degrees C. In an attempt to examine the effect of in vitro passage at non-permissive temperatures on pathogenicity in swine, KBSH passaged 10 times either at 37 degrees C or 39 degrees C was inoculated into swine fetuses. Two of four fetuses inoculated with 39 degrees C-passaged KBSH were dead and hemorrhagic or mummified. All four fetuses inoculated with 39 degrees C-KBSH contained viral antigen and viral DNA. In contrast, fetuses inoculated with 37 degrees C-passaged KBSH, or with cell culture fluid were normal in appearance. Viral antigen and viral DNA were not demonstrated in fetuses inoculated with 37 degrees C-KBSH or cell culture fluids. These findings suggest the possibility that the ability to replicate at 39 degrees C is associated with virulence in swine fetuses.

Animals↗

Plasmodium vinckei: selection of a strain exhibiting stable resistance to arteether.

A strain of rodent malaria parasite Plasmodium vinckei showing >12-fold resistance to arteether has been selected after exposure to sub-curative doses of drug in 44 sequential passages over a period of 700 days. Experimentally induced resistance was found to be stable after drug free maintenance of parasites for 11 serial passages over a period of 100 days. Cross-sensitivity studies have shown that apart form resistance to related derivatives like artemether and artesunic acid, the derived parasites also show resistance to quinine and mefloquine.

Animals↗

Biologic and biochemical differences between in vitro and in vivo passaged Friend erythroleukemia cells. I. Tumorigenicity and capacity to metastasize.

Cloned interferon-sensitive (745) and interferon-resistant (3Cl-8) Friend erythroleukemia cells (FLC) passaged in vitro, are not very tumorigenic when first injected intraperitoneally (i.p.) into syngeneic DBA/2 mice although they do form solid tumors when injected subcutaneously (s.c.). By serially passaging FLC (either 745 or 3Cl-8 cells) i.p. in DBA/2 mice, we obtained two different FLC lines capable of growing i.p. and inducing tumor ascites. The s.c. injection of DBA/2 mice with these in vivo passaged FLC resulted in tumor metastases in the liver and spleen, whereas metastases were not observed in mice inoculated s.c. with in vitro passaged FLC. The capacity of in vivo passaged FLC to metastasize was acquired after several i.p. passages. This highly malignant behavior was a stable characteristic of these cells. All the clones derived from in vivo passaged FLC and passaged more than 14 times in vitro induced hemorrhagic ascites when injected i.p., and metastasized to the liver and spleen when injected s.c. The phenotype of sensitivity or resistance to the inhibitory effect of alpha/beta mouse interferon on virus replication and cell multiplication was conserved during serial i.p. passages and maintained in the clones derived from in vivo passaged cells. These FLC showed a decreased capacity to differentiate in vitro upon treatment with dimethylsulfoxide (DMSO) and a reduced production of Friend leukemia virus with respect to the original clones passaged in vitro.

Animals↗

Isolation and molecular characterization of a new Muscovy duck parvovirus from Muscovy ducks in the USA.

Between 1997 and 1999 several cases of a new disease in Muscovy ducks were reported in Pennsylvania, USA. The cases were characterized by locomotor dysfunction, weakness, recumbency, 40 to 60% morbidity and 10 to 40% mortality. The most characteristic microscopic lesions were moderate to severe degenerative rhabodomyopathy. In order to characterize the aetiological agent, virus isolation was attempted from the spleen, liver, heart, skeletal muscle and intestine by inoculation of 14-day-old Muscovy duck embryos with tissue homogenates. Deaths occurred on the second egg passage and parvoviruses were isolated by serial passage of allantoic fluid from dead embryos and then in Muscovy duck embryo fibroblast (MDEF) cultures. Parvovirus particles were observed in allantoic fluids and supernatants of MDEF cultures by transmission electron microscopy. Two genomic fragments, comprising 1108 nucleotides of the right open reading frame that codes for the structural viral proteins 1, 2 and 3, were amplified by polymerase chain reaction from one of the isolates, Muscovy duck parvovirus (MDPV)/PSU-31010. Comparison of this fragment with available sequences of other MDPV and related goose parvovirus (GPV) isolates showed that it had only 84.5% sequence identity with other MDPV isolates and 84.6% identity with the GPV isolates. This region shares over 99% identity among previously sequenced MDPV isolates and 95% identity among the related GPV isolates. This suggests that MDPV/PSU-31010 is divergent from all other sequenced MDPV and GPV isolates, and may represent a new group of avian parvoviruses.

Amino Acid Sequence↗

Reduced maximal inhibition in phenotypic susceptibility assays indicates that viral strains resistant to the CCR5 antagonist maraviroc utilize inhibitor-bound receptor for entry.

Maraviroc is a CCR5 antagonist in clinical development as one of a new class of antiretrovirals targeting human immunodeficiency virus type 1 (HIV-1) coreceptor binding. We investigated the mechanism of HIV resistance to maraviroc by using in vitro sequential passage and site-directed mutagenesis. Serial passage through increasing maraviroc concentrations failed to select maraviroc-resistant variants from some laboratory-adapted and clinical isolates of HIV-1. However, high-level resistance to maraviroc was selected from three of six primary isolates passaged in peripheral blood lymphocytes (PBL). The SF162 strain acquired resistance to maraviroc in both treated and control cultures; all resistant variants were able to use CXCR4 as a coreceptor. In contrast, maraviroc-resistant virus derived from isolates CC1/85 and RU570 remained CCR5 tropic, as evidenced by susceptibility to the CCR5 antagonist SCH-C, resistance to the CXCR4 antagonist AMD3100, and an inability to replicate in CCR5 Delta32/Delta32 PBL. Strain-specific mutations were identified in the V3 loop of maraviroc-resistant CC1/85 and RU570. The envelope-encoding region of maraviroc-resistant CC1/85 was inserted into an NL4-3 background. This recombinant virus was completely resistant to maraviroc but retained susceptibility to aplaviroc. Reverse mutation of gp120 residues 316 and 323 in the V3 loop (numbering from HXB2) to their original sequence restored wild-type susceptibility to maraviroc, while reversion of either mutation resulted in a partially sensitive virus with reduced maximal inhibition (plateau). The plateaus are consistent with the virus having acquired the ability to utilize maraviroc-bound receptor for entry. This hypothesis was further corroborated by the observation that a high concentration of maraviroc blocks the activity of aplaviroc against maraviroc-resistant virus.

Amino Acid Sequence↗

Trypanosoma cruzi: maintenance in culture modify gene and antigenic expression of metacyclic trypomastigotes.

In this study we examined whether the maintenance of Trypanosoma cruzi by long-time in axenic culture produces changes in gene expression and antigenic profiles. The studies were made with a Dm30L-clone from a low-virulent strain and a non-cloned virulent EP-strain of T. cruzi. Both parasites were maintained, for at least seven years, by successive alternate passage triatomine/mouse (triatomine condition), or by serial passage in axenic medium (culture condition). The comparison of the [35S]methionine metabolic labeling products of virulent and non-virulent parasites by 2D-SDS-PAGE, clearly indicates that the expression of metacyclic trypomastigotes (but not of epimastigotes) proteins have been altered by laboratory maintenance conditions. Western blot analysis of EP and Dm30L-epimastigotes using a serum anti-epimastigotes revealed that although most of antigens are conserved, four antigens are characteristics of triatomine condition parasites and three other are characteristics of culture condition parasites. Anti-metacyclics serum revealed significative differences in EP- and Dm30L-metacyclic trypomastigotes from triatomine condition. However, avirulent metacyclic forms were antigenically very similar. These results suggest that besides a possible selection of avirulent subpopulation from T. cruzi strains genetically heterogeneous when maintained by long time in axenic culture, changes in virulence might be due to post-translational modifications of the antigens induced by the absence of the natural alternability (vertebrate-invertebrate) in the life-cycle of T. cruzi.

Animals↗