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Constancy of ribosomal RNA genes during aging of mouse heart cells and during serial passage of WI-38 cells.

The DNA content and ribosomal RNA gene copy number in heart of the inbred mouse strain C57BL/6 were determined at different ages. The DNA content of mouse heart remained constant, at about 150 micrograms DNA per heart, from 1 to 30 mth of age. The number of rRNA genes, as estimated by 28S rRNA . DNA hybridization, was not found to change significantly as a function of age. Likewise, the extent of rRNA hybridization to DNA from cultured human WI-38 cells at early and late passage levels was the same. These data support the notion that genomic rDNA sequences are not lost during in vivo and in vitro aging. However, the rDNA sequences are quite large and numerous small deletions or base pair substitutions would not have been detected in these studies.

Animals↗

Ultrastructural characteristics of hybrids derived from normal and hand wart keratinocytes after serial passages.

Somatic hybrids realized between mouse fibroblasts 3T3.4E and normal human keratinocytes or hand wart keratinocytes were examined from the 6th to the 30th passages by scanning and transmission electron microscopy. Whatever the passage, hybrid cells showed a fibroblastic morphology but, as keratinocytes, they had the capability to stratify. Branched mitochrondria were observed in hybrids whereas normal mitochondria were present in mouse fibroblasts. In human keratinocytes, most of the mitochondria were normal but sometimes few of them were branched. In wart hybrids heterogeneous nucleoli were detected instead of normal nucleoli in normal keratinocyte hybrids, 3T3.4E cells and human keratinocytes.

Animals↗

Cartilage formation by serial passaged cultured chondrocytes in a new scaffold: hybrid 75:25 poly(L-lactide-epsilon-caprolactone) sponge.

PURPOSE: This study was designed to determine whether multipled chondrocytes immersed in a new scaffold, 75:25 poly(L-lactide-epsilon-caprolactone) sponge coated with type I collagen (75-PLC scaffold), could be used to generate cartilage tissue in vivo and to evaluate the correlation between cartilage generation and the phenotype of the proliferated chondrocytes. MATERIALS AND METHODS: Rat chondrocytes were suspended in 75-PLC scaffold at a density of 1 x 10 7 cells/mL after proliferation in a monolayer for 1 (P1) to 4 passages (P4) and implanted in nude mice for 4 weeks. Cells were characterized by the expression of genes encoding type II collagen, aggrecan, and type I collagen by Northern hybridization, and consequently, the newly formed tissue was evaluated histologically. RESULTS: The expression of aggrecan messenger RNA gradually decreased with the passaged cultures; however, the expression of type I collagen messenger RNA increased with time. The cartilage formations in all specimens were found not only in P1 chondrocytes but also in P2 chondrocytes, although when P3 chondrocytes were grafted, approximately 50% of cartilage formation was still observed up to but not beyond P4. CONCLUSION: It is suggested that cartilage tissue is generated with cultured chondrocytes up to P2 but not beyond P4. Northern blot analysis is useful for the assessment of whether the cells are capable of regeneration.

Absorbable Implants↗

Does MMP-2 expression and secretion change with increasing serial passage of keratocytes in culture?

The effects of ageing on matrix metalloprotease degradation of the extracellular matrix during corneal wound healing are largely unknown. The following study used an in vitro model of ageing to assess changes in MMP-2 RNA expression and protein secretion. Early passage (EP) EK1.BR keratocyte cultures from 14 to 18 cumulative population doublings (cpds) and late passage (LP) cultures from 40 to 47 cpds were used to isolate protein and mRNA samples. Total protein from EP and LP cultures was measured using the Bradford protein assay. Zymographic analysis of EP and LP samples was carried out to compare MMP-2 activity. Northern blot analysis was used to assess changes in MMP-2 mRNA expression by EP and LP cultures, using a digoxigenin (DIG) based chemiluminescent detection system. LP cultures secreted more total protein per cell. MMP-2 but not MMP-9 activity was detected in keratocyte cultures. Densitometric analysis of zymograms and calculation of MMP-2 activity indicated a significant increase in MMP-2 activity per cell (P<0.05, n=11). No difference was observed in the levels of MMP-2 mRNA expressed by EP and LP cultures. An increase in MMP-2 activity per cell by LP cultures suggests that senescent keratocytes increase their degradative capacity. Similar changes in the keratocyte phenotype within the ageing cornea may alter the balanced response necessary for adequate wound healing and may have implications for the therapeutic use of MMP inhibitors in the eye.

Cell Division↗

Genetic characterization of Sabin types 1 and 3 poliovaccine virus following serial passage in the human intestinal tract.

Poliovirus isolates types 1 and 3 were obtained from five and seven successive passages respectively, in infants who had been fed monovalent OPV in two separate clinical trials conducted in 1960. The purpose of these trials was to answer the question how much the vaccine virus would revert to its original neurovirulent phenotype following multiplication in the intestinal tract. Human passages were performed either by contact exposure or by feeding the excreted virus while the infants were maintained in isolation. Several virus isolates were obtained at each passage level. Infants participating in both studies showed no symptoms of disease. Antigenic studies (McBride, van Wezel) and protein analysis (PAGE) of the isolates, reported earlier from this laboratory, had shown that the isolates remained vaccine-like, although isolates from the later passages revealed some differences. Monkey neurovirulence test results showed that for both types 1 and 3 viruses the loss of attenuation of the vaccine strain upon passage was gradual, although the loss was faster for type 3. Examination of the oligonucleotide maps demonstrated that the oligonucleotide configuration of the isolates remained the same as for the vaccine strain but there was an increase of individual spot differences with increasing passage. The nucleotide sequence analysis of selected regions of the virus genomes revealed that there was no change from a G to A in nucleotide 480 of type 1 isolates; however, nucleotide 476 changed from a U to an A in type 1 passages 3, 4 and 5. Conversely, for type 3 the change of nucleotide 472 from a U to a C changed at the early first passage (4 days following administration of OPV), and remained a C in the six following passages; type 3 nucleotide 2034 did not change in the first passage from a U to a C, but it became a C in all further passages tested. The nucleotide changes mentioned for both virus types remained stable in successive passages. However, there was another nucleotide change for type 3 from a U to a C at position 1973 only for passages 5 and 6 which reverted to a U for passages 7L and 7LL. Study of selected human passage virus strains could further contribute to the identification of the critical nucleotides that are responsible for the attenuation of these two polio types of vaccine viruses.

Base Sequence↗

Variability of DNA methylation patterns during serial passage of human diploid fibroblasts.

We have examined DNA methylation in diploid human fibroblasts, early and late in their replicative life-span. The extent of methylation of -C-C-G-G- was measured by comparison of fragment sizes after digestion with methylation-specific restriction enzyme Hpa II or Msp I, or both. Methylation of -C-C-G-G- sites in total DNA, occurring predominantly at internal (3') cytosines, increased from 59% to 64% of sites in one cell strain at late passage, remained constant in another, and decreased in four other strains (54% to 48%, 58.5% to 48%, 55% to 51.5%, and 52% to 44.5%). Base composition analysis confirmed a substantial loss of total DNA 5-methylcytosine (mC) in one strain. Seven clonal isolates, examined at middle to late passage, ranged from 33% to 51% methylation of 3' cytosines in -C-C-G-G- sites. Three discrete classes of highly repetitive DNA were found which contained Msp I sites at intervals of 45, 110, and 175 base pairs. These repeat families consistently had 70-80% of sites methylated at 3' cytosines, in all clones and in all strains examined both at early and at late passage. Thus, altered methylation of repetitive sequences is unlikely to account for the variable -C-C-G-G- methylation observed in total DNA. When DNA from one fibroblast strain and from eight pure clones isolated from that parental culture was digested with Msp I or Hpa II followed by EcoRI and probed for gamma-globin gene sequences, considerable interclonal and intraclonal heterogeneity was observed for methylation at four -C-C-G-G- sites in the gamma-globin coding region of DNA. Therefore, the pattern of methylation in endogenous gene regions appears to undergo random drift during replication of diploid fibroblasts.

Adult↗

Enterically transmitted non-A, non-B hepatitis: serial passage of disease in cynomolgus macaques and tamarins and recovery of disease-associated 27- to 34-nm viruslike particles.

An experimental model of enterically transmitted non-A, non-B hepatitis (ET-NANBH) was established in tamarins (Saguinus mystax mystax) and cynomolgus macaques (Macaca fascicularis). First-passage animals were inoculated with two different stool suspensions obtained from human patients with well-defined ET-NANBH that originated from Burma and Pakistan, where epidemics of ET-NANBH occur. Both inocula contained 27- ato 34-nm-diameter viruslike particles (VLPs) that were specifically aggregated by acute-phase ET-NANBH sera. ET-NANBH was subpassaged in both tamarins and cynomolgus macaques by using pools of stool suspensions from first-passage animals. One additional passage of disease in cynomolgus macaques resulted in a significantly shortened incubation period and increased severity of disease. VLPs similar to those found in the human inocula were observed in stool specimens of first-, second-, and third-passage cynomolgus macaques and in first- and second-passage tamarins. Our findings indicate that cynomolgus macaques are particularly suitable experimental models for studies of human ET-NANBH. The 27- to 34-nm VLPs found in infected human and primate stools appear to be etiologically linked to disease.

Animals↗

Sensitivity of transformation to small differences in population density during serial passage of NIH 3T3 cells.

Early passages of the NIH 3T3 mouse cell line undergo spontaneous neoplastic transformation leading to the development of transformed foci if grown to confluence in 2% (vol/vol) calf serum (CS) and left there for more than a week. Transfer of the postconfluent cultures results in the appearance of large numbers of transformed foci; many of them are larger and denser than those in the original culture. If the cells are continually kept at low population densities by frequent passages in 10% CS, they lose the capacity to undergo spontaneous transformation. If however the low-density passages are made in 2% CS or in 10% (vol/vol) fetal bovine serum, both of which support lower growth rates and saturation densities than does 10% CS, they gain the capacities to grow to high saturation densities and produce more foci when grown to confluence in 2% CS. These increases are proportional to the population densities used in the frequent passages, although the densities are all kept well below confluence. We conclude that the combined constraints of submaximal serum plus those of the limited cell contacts of the low cell densities used here elicit an adaptive response that endows the entire population with increased growth capacity. The increased growth capacity of the heterogeneous population in turn increases the capacity of a fraction of the population to initiate distinctive transformed foci. Similar studies have indicated that the capacity of cells to produce tumors and metastases in mice and rats is enhanced by prior maintenance at high density in culture. We propose the concept of progressive state selection to account for the general increase in the growth capacity of cells that is elicited by moderate constraints on their growth and metabolism.

3T3 Cells↗

Childhood all blasts retain phenotypic and genotypic characteristics upon long-term serial passage in NOD/SCID mice.

For children with an early bone marrow relapse or relapsed T-cell acute lymphoblastic leukemia (ALL), allogeneic bone marrow transplantation (BMT) is currently the only therapeutic option with a curative approach. Here, the graft versus leukemia (GvL) effect seems to play an important role for long-term immunological control of leukemia. If a bone marrow donor is not available, autologous stem cell transplantation after high-dose chemotherapy has been used as an alternative option. The objective of this work was the induction of tumor specific cytotoxic T-lymphocytes (CTL) against autologous leukemic cells in order to generate the missing GvL effect after autoBMT. The first step was the establishment of an optimized and reliable mouse model. The second step was the induction of a GvL effect in an allogeneic approach to serve as a basis for further GvL experiments in an autologous approach in this mouse model. Leukemic cells from 11 out of 16 different pediatric patients were successfully established in mice and in one case passaged over 19 generations without changes of genotype or phenotype. The antileukemic activity of allogeneic human MNC as a GvL reaction and an accompanying GvHD in the mouse model was shown. Xenotransplanted ALL can be considered a clinically relevant model mimicking the human conditions and as a useful preclinical tool for the evaluation of novel immuno- or genetherapeutic approaches.

Adolescent↗

Air-liquid interface culture of serially passaged human nasal epithelial cell monolayer for in vitro drug transport studies.

The objective of this study was to establish a drug transport study using human nasal epithelial (HNE) cell monolayers cultured by the air-liquid interface (ALI) method using serum-free medium (BEGM:DME/F12, 50:50). The cells were developed and characterized in comparison to those that have been previously cultured by the liquid-covered culture (LCC) method. The epithelial cell monolayer cultured by the ALI method resulted in a significantly higher transepithelial electrical resistance value (3,453 +/- 302 ohm x cm(2)) that was maintained (>1,000 ohm x cm(2)) for up to 20 days compared with that cultured by the LCC method. Observation by scanning electron microscopy revealed mature cilia after 2 weeks in the ALI culture, while flatten unhealthy ciliated cells were observed in the LCC method. After 21 days, higher level of MUC5AC and 8 mRNA were expressed in ALI culture which confirmed the secretory differentiation of HNE monolayers in vitro. No significant difference in the permeability coefficients of a model hydrophilic marker ((14)C-mannitol) and a lipophilic drug (budesonide) was observed between the two conditions on day 7. The passage 2-3 of the HNE monolayer using ALI condition retained the morphology and differentiated features of normal epithelium. Thus it would be a suitable model for in vitro nasal drug delivery studies.

Biological Transport↗

Somatic sequence variation at the Friedreich ataxia locus includes complete contraction of the expanded GAA triplet repeat, significant length variation in serially passaged lymphoblasts and enhanced mutagenesis in the flanking sequence.

The vast majority of Friedreich ataxia patients are homozygous for large GAA triplet repeat expansions in intron 1 of the X25 gene. Instability of the expanded GAA repeat was examined in 23 chromosomes bearing 97-1250 triplets in lymphoblastoid cell lines passaged 20-39 times. Southern analyses revealed 18 events of significant changes in length ranging from 69 to 633 triplets, wherein the de novo allele gradually replaced the original over 1-6 passages. Contractions and expansions occurred with equal frequency and magnitude. This behavior is unique in comparison with other large, non-coding triplet repeat expansions [(CGG)(n)and (CTG)(n)] which remain relatively stable under similar conditions. We also report a rare patient who, having inherited two expanded alleles, showed evidence of contracted GAA repeats ranging from nine to 29 triplets in DNA from two independent peripheral blood samples. The GAA triplet repeat is known to adopt a triplex structure, and triplexes in transcribed templates cause enhanced mutagenesis. The poly(A) tract and a 135 bp sequence, both situated immediately upstream of the GAA triplet repeat, were therefore examined for somatic mutations. The poly(A) tract showed enhanced instability when in cis with the GAA expansion. The 135 bp upstream sequence was found to harbor a 3-fold excess of point mutations in DNA derived from individuals homozygous for the GAA triplet repeat expansion compared with normal controls. These data are likely to have important mechanistic and clinical implications.

Base Sequence↗

Serial passage of Chlamydia spp. in sub-inhibitory fluoroquinolone concentrations.

We investigated the in vitro development of fluoroquinolone resistance in Chlamydia trachomatis and Chlamydia (Chlamydophila) pneumoniae grown in McCoy cell monolayers in supplemented Eagle's minimum essential medium. With C. trachomatis, initial passages at sub-inhibitory fluoroquinolone concentrations did not affect fluoroquinolone susceptibility. However, after an initial lag of 10-24 passages (depending upon the fluoroquinolone used), fluoroquinolone resistance developed rapidly. The final fluoroquinolone MIC after a total of 30 passages was >256 times the MIC of the original wild-type strain with ofloxacin or ciprofloxacin passage. Analysis of the quinolone-resistance determining regions of two quinolone-resistant C. trachomatis mutants obtained after 30 passages showed that both isolates had a single serine to isoleucine substitution at amino acid position 83 in GyrA. In stark contrast, with C. pneumoniae no reduced fluoroquinolone susceptibility could be sustained, even after 30 passages with moxifloxacin or ofloxacin. With sparfloxacin passage, some indication of resistance was observed but no viable organisms could be isolated for further investigation. It is possible that fluoroquinolone-resistant C. pneumoniae are less able to survive than wild type, which may explain why resistance does not develop readily.

Anti-Infective Agents↗

Expression of mRNA for transforming growth factor-beta 1 is reduced in hypertrophic scar and normal dermal fibroblasts following serial passage in vitro.

We have recently demonstrated a synchronous elevation in the expression of mRNA for type I, type III procollagen and transforming growth factor-beta 1 in post-burn hypertrophic scar tissue compared to normal skin obtained from the same patient. In an attempt to examine whether these effects are phenotypically persistent, we compared the expression of mRNA for transforming growth factor-beta 1 in cultured fibroblasts from post-burn hypertrophic scar and normal dermis established from the same patients at passages 3, 5, 7, and 10. When a cDNA probe specific for transforming growth factor-beta 1 was used, a transcript with an apparent size of 2.5 kb was detected in both hypertrophic and normal fibroblasts at various passages. This cDNA also hybridized with a transcript with an apparent size of 4.9 kb. The abundance of the 2.5-kb transcript was decreased to 64% and 33% in hypertrophic scar and normal fibroblasts respectively, between passage 3 and 7, whereas the intensity of the 4.9-kb message was not significantly altered. This change seems to be selective because no significant alteration in the expression of mRNA for the heat-shock-like protein (Nb29) was observed. These findings suggest that the effect of passage on the expression of transforming growth factor-beta 1 in hypertrophic scar tissue fibroblasts is more pronounced than in normal cells derived from the same patient.

Adolescent↗