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Complex cytokine modulation of a continuous line of mink lung epithelial cells (Mv1Lu).

The continuous mink lung epithelial cell line Mv1Lu has proven to be a sensitive reporter line in the bioassay for purified TGF-beta, exhibiting a sigmoid-shaped concentration-response relationship with an EC50 of 12 pM (0.3 ng/mL). Maximal inhibition of Mv1Lu cells generates a 75-95% decrement in the number of adherent cells. However, this bioassay is not specific for TGF-beta as originally claimed. Mv1Lu cells are sensitive to other cytokines and substances found in complex biological fluids. In this study the effects of other biological response modifiers in this assay were tested and several were found to have important growth modulatory capacities that confound the quantitation of TGF-beta. EGF, TGF-alpha, fibronectin, and IGF-I all induce Mv1Lu cell proliferation. In contrast, neither PDGF (-AA, -AB, -BB) nor endotoxin (< or = 10 micrograms/mL) affect Mv1Lu cell number. TGF-beta and TNF-alpha at high concentrations (> or = 10 ng/mL) are the only cytokines examined that inhibit Mv1Lu proliferation. TGF-beta decreases final cell number both by preventing mitosis and by inhibition of adherence of cells to the uncoated dish. Several strategies are suggested to assure the specificity of this otherwise convenient bioassay for TGF-beta.

Animals↗

The Drosophila brain revisited by enhancer detection.

The patterns of gene expression in the Drosophila brain were studied by using the lacZ reporter gene carried on an enhancer detector element. From the analysis of serial sections of the heads of 6000 enhancer detector lines, reporter gene expression in some lines was found to generally follow boundaries established by cell type or anatomy, revealing distinct patterns of lacZ expression restricted to the lamina, the medulla, mushroom bodies, antennal lobes, or other anatomical subdivisions. About 15% of the lines showed ubiquitous expression in most or all head tissues and 25% of the lines showed expression throughout the CNS. Another quarter of the lines showed widespread expression in the CNS, with large regions of the brain showing expression. This suggests that the majority of detected genes are expressed with little spatial specificity. The expression patterns produced by 12 different insertions at the rutabaga locus were found to be extremely similar in the brain and offer strong evidence that the enhancer detector elements generally report the activity of an adjacent gene. Only 15% of the lines were judged to have relatively specific expression in one brain region, including those with preferential or specific expression in the mushroom bodies, antennal lobes, lamina, medulla, etc. The cytological insertion sites for elements showing preferential mushroom body expression were found to be dispersed in the genome at approximately 50 different chromosomal regions. In addition to providing a broad picture of the transcriptional activity in the Drosophila brain, these enhancer detector lines offer access to interesting new genes and form a novel collection of lines in which identifiable brain cells are marked in a reproducible way.

Animals↗

Transforming growth factor-beta 1 differentially regulates proliferation, morphology, and extracellular matrix expression by three neural crest-derived neuroblastoma cell lines.

We reported previously (S. L. Rogers, P. J. Gegick, S. M. Alexander, and P. G. McGuire, Dev. Biol. 151, 191-203, 1992) that transforming growth factor-beta 1 (TGF beta 1) inhibited proliferation, up-regulated fibronectin synthesis, and suppressed melanogenesis in a population of quail neural crest cells in vitro. Here, we report that cell lines derived from the parent SK-N-SH neuroblastoma line (R. A. Ross, B. A. Spengler, and J. L. Biedler, J. Natl. Cancer Inst. 71, 741-747, 1983) respond differentially to TGF beta 1, and their responses provide further insights into the actions of this growth factor on neural crest subpopulations. The SH-EP cell line exhibits primarily nonneuronal traits and responded to TGF beta 1 with increased thymidine uptake after 6 days of culture, increased expression of fibronectin mRNA and protein, and decreased laminin synthesis. Many SH-EP cells also acquired a dramatically elongated morphology, reminiscent of Schwann cells in culture. Thymidine uptake by the neuronal SY5Y cell line was not substantially altered. Neither fibronectin mRNA nor protein was detectable in either TGF beta 1-treated or untreated cultures, although laminin synthesis was upregulated by the growth factor. In TGF beta 1-treated cultures of the intermediate SH-IN cell line, which has been reported to display both neuronal and nonneuronal characteristics, there was marked flattening of many cells, a steady decrease in thymidine uptake, and increased expression of both fibronectin and laminin. The observed responses of SH-IN cells mimic those observed in primary neural crest cultures and appear to represent similar differentiation toward a mesenchymal phenotype. These results substantiate the idea that closely related but diverging neural crest-derived cell types respond selectively to TGF beta 1 and demonstrate that these SK-N-SH-derived cell lines will be useful in experimental approaches that will allow us to infer mechanisms underlying regulation of neural crest differentiation.

Cell Differentiation↗

Radiobiological characterization of 53 human tumor cell lines.

We investigated the in vitro radiobiological survival parameters of 53 human tumor cell lines studied in exponential growth. Epithelial cell lines derived from 24 patients with head and neck carcinoma, 15 patients with ovarian carcinoma, and mesenchymal tumor cell lines derived from 14 patients with bone and soft tissue sarcomas were studied. Survival data are analyzed using the multi-target and linear quadratic models. The head and neck and ovarian carcinoma tumor cell lines were more radioresistant as measured by D0, D, and alpha parameters, compared with the bone and soft-tissue sarcoma lines. The radiobiological parameters of tumor cell lines reported herein are similar to parameters of tumor cell lines derived from head and neck and soft tissue sarcoma patients presently being followed for clinical outcome following radiotherapy in our clinic.

Cell Line↗

Use of the tetracycline system for inducible protein synthesis in the kidney.

The great advantage of the tetracycline-inducible system lies in its ability to address a large variety of biological questions in a time-dependent and tissue-specific manner. This study describes a transgenic mouse line, rTA(LAP)-1, which produces the reverse tetracycline transactivator under control of the liver activator protein (LAP) promoter. Two reporter lines with luciferase and LacZ reporter genes were used to demonstrate predominant expression in the kidney and liver when doxycycline was added to the drinking water. In the kidney, transgene expression was found primarily in cortical proximal tubules. No luciferase and beta-galactosidase activity was detected in mice without doxycycline in the drinking water, which attests to the tight control of this system. One of the advantages of the tet system lies in its reversibility, and indeed, a virtually complete remission of transgene activity in both the kidney and liver was observed when doxycycline was withdrawn. Also examined was transactivator activity during development by exposing the mothers producing the reverse transactivator to doxycycline before mating. Transgene activity was detected in newborn kidneys and liver, indicating that sufficient amounts of doxycycline had crossed the placental barrier. During nephron development, the LAP promoter appeared to be only active in the more mature proximal tubules. Finally, the rTA(LAP)-1 line was used to inducibly express the human PKD2 cDNA in proximal tubules of transgenic mice, but no cystic changes were detected, even after 6 mo of induction.

Alkaline Phosphatase↗

Alexander disease-associated glial fibrillary acidic protein mutations in mice induce Rosenthal fiber formation and a white matter stress response.

Mutations in the gene for the astrocyte specific intermediate filament, glial fibrillary acidic protein (GFAP), cause the rare leukodystrophy Alexander disease (AxD). To study the pathology of this primary astrocyte defect, we have generated knock-in mice with missense mutations homologous to those found in humans. In this report, we show that mice with GFAP-R76H and -R236H mutations develop Rosenthal fibers, the hallmark protein aggregates observed in astrocytes in AxD, in the hippocampus, corpus callosum, olfactory bulbs, subpial, and periventricular regions. Astrocytes in these areas appear reactive and total GFAP expression is elevated. Although general white matter architecture and myelination appear normal, when crossed with an antioxidant response element reporter line, the mutant mice show a distinct pattern of reporter-gene induction that is especially prominent in the corpus callosum, and histochemical staining reveals accumulation of iron in the same region. The mutant mice have a normal lifespan and show no overt behavioral defects, but are more susceptible to kainate-induced seizures. Although these mice demonstrate increased GFAP expression by themselves, further elevation of GFAP via crosses to GFAP transgenic animals leads to a shift in GFAP solubility, an increased stress response, and ultimately death. The mice do not display the full spectrum of pathology observed in human infantile AxD, but may more closely resemble the adult form of the disease. These studies provide formal proof linking GFAP mutations with Rosenthal fibers and oxidative stress, and correlate gliosis and GFAP protein levels to the severity of the disease.

Alexander Disease↗

Stepwise metastatic human hepatocellular carcinoma cell model system with multiple metastatic potentials established through consecutive in vivo selection and studies on metastatic characteristics.

PURPOSE: To establish a "stepwise metastatic human hepatocellular carcinoma (HCC) cell model system" for in-depth study of the underlying mechanisms of HCC metastasis. METHODS: Using MHCC97- a metastatic human hepatocellular carcinoma (HCC) cell line reported in 1999-as the parent cells, we subsequently established three cell lines (MHCC97-L, HMCC97-H, and HCCLM3) with increasing spontaneous metastatic potential. Now, the fourth cell line with unique multiple metastatic characteristics has been established by six rounds of in vivo selection. RESULTS: This cell line, designated as HCCLM6, is a polygonal epithelial cell with hypotriploid karyotype, the modal chromosomes are 55-58, and marker chromosomal abnormalities include i(1) (q10), i(8)(q10), der (4) t(4;8)(q31;q22), i(X)(q10). The cell population doubling time was 32 h. Fluorescent PCR showed HBV DNA integration in the cellular genome. Thirty-five days after HCCLM6 was injected subcutaneously into BALB/c nude mice, prominent lung metastases occurred in 100% of the recipient animals. When tumor tissue was orthotopically implanted into the liver of nude mouse, widespread loco-regional and pulmonary metastases occurred. Inoculation of this cell into the footpad of nude mice also produced 75% regional lymph node metastasis. Compared with MHCC97-L which was not metastastatic via subcutaneous or footpad inoculation and 40% metastatic via orthotopic inoculation, HCCLM6 had increased expression of matrix metalloproteinase (MMP-2 and MMP-9) and cytokeratin 19 (CK19), and decreased expression of Rb2/p130. The establishment of this new cell line has completed our stepwise metastatic HCC cell mode system, which was characterized by a similar genetic background but with significant differences in spontaneous metastasis behavior. CONCLUSIONS: The study supports the theory that cancer metastasis is a highly selective dynamic process and the cell model system could be a useful platform for the study of HCC metastasis.

Animals↗

The lytic transition of Epstein-Barr virus is imitated by recombinant B-cells.

Lytic transition of Epstein-Barr virus (EBV) is initiated by distinct immediate early regulators of the viral cycle, in synchronization to temporary, permissive conditions during host cell differentiation. We developed eukaryotic vectors suitable to imitate the processes involved in lytic transition in cell culture systems. Two stable B cell lines were established: R59Z activator cells were used to induce lytic EBV expression in a constitutive manner by the production of the BZLF 1 trans-activator (Zta). R7-57 reporter cells, on the other hand, signaled induced activity of the lytic origin of EBV replication (ori Lyt). Different modes, like chemical induction, lytic superinfection with EBV and single gene trans-activation converted the recombinant ori Lyt element in R7-57 reporter cells. BZLF 1, transiently expressed in R7-57 reporter cells, was the only EBV trans-activator found, sufficient in inducing the viral lytic cycle. Basing on these experiments, trans-cellular activation of EBV was tested by cocultivation of BZLF 1-expressing R59Z activator cells with the R7-57 reporter line. No lytic effect on the reporter cells could be measured, neither by cocultivation of activator cells nor by coincubation of BZLF 1-containing cell lysates. Latency breaking activity, however, was transferred from activator to reporter cells when active, exogenous virus was added. The cell system described in these experiments provides a tool for the detection of EBV reactivation and demonstrates the potential of the lytic regulatory gene BZLF 1.

Animals↗

A conditional tissue-specific transgene expression system using inducible GAL4.

In Drosophila, the most widely used system for generating spatially restricted transgene expression is based on the yeast GAL4 protein and its target upstream activating sequence (UAS). To permit temporal as well as spatial control over UAS-transgene expression, we have explored the use of a conditional RU486-dependent GAL4 protein (GeneSwitch) in Drosophila. By using cloned promoter fragments of the embryonic lethal abnormal vision gene or the myosin heavy chain gene, we have expressed GeneSwitch specifically in neurons or muscles and show that its transcriptional activity within the target tissues depends on the presence of the activator RU486 (mifepristone). We used available UAS-reporter lines to demonstrate RU486-dependent tissue-specific transgene expression in larvae. Reporter protein expression could be detected 5 h after systemic application of RU486 by either feeding or "larval bathing." Transgene expression levels were dose-dependent on RU486 concentration in larval food, with low background expression in the absence of RU486. By using genetically altered ion channels as reporters, we were able to change the physiological properties of larval bodywall muscles in an RU486-dependent fashion. We demonstrate here the applicability of GeneSwitch for conditional tissue-specific expression in Drosophila, and we provide tools to control pre- and postsynaptic expression of transgenes at the larval neuromuscular junction during postembryonic life.

Animals↗

Isolation and characterization of broad-spectrum disease-resistant Arabidopsis mutants.

To identify Arabidopsis mutants that constitutively express systemic acquired resistance (SAR), we constructed reporter lines expressing the firefly luciferase gene under the control of the SAR-inducible PR-1 promoter (PR-1/luc). After EMS mutagenesis of a well-characterized transgenic line, we screened 250,000 M(2) plants for constitutive expression of the reporter gene in vivo. From a mutant collection containing several hundred putative mutants, we concentrated on 16 mutants lacking spontaneous hypersensitive response (HR) cell death. We mapped 4 of these constitutive immunity (cim) mutants to chromosome arms. Constitutive expression of disease resistance was established by analyzing responses to virulent Peronospora parasitica and Pseudomonas syringae strains, by RNA blot analysis for endogenous marker genes, and by determination of salicylic acid levels in the mutants. The variety of the cim phenotypes allowed us to define distinct steps in both the canonical SAR signaling pathway and a separate pathway for resistance to Erysiphe cichoracearum, active in only a subset of the mutants.

Arabidopsis↗

Detection of genes that are differentially expressed during mouse embryogenesis by genetic trapping strategies.

OBJECTIVE: Our objective was to identify novel genes that are expressed in temporally and spatially restricted patterns during mouse embryonic development and organogenesis. STUDY DESIGN: Two genetic trapping reporter constructs that lack transcriptional regulatory sequences were introduced independently into transcriptionally active gene loci by electroporation into mouse embryonic stem cells. Patterns of host gene-reporter construct expression were investigated in differentiated embryonic stem cells, embryoid bodies, and chimeric embryos at various stages of development. RESULTS: Three patterns of host gene-reporter construct expression were observed from the developmental analysis of four vector-integrated cell lines. Reporter expression patterns reflecting developmental regulation, constitutive activity, and developmental inactivation of the host genes were observed. CONCLUSIONS: Two vector-integrated gene loci from cell lines CCE-1C1 and D3-B44 have expression patterns not previously described by genetic trapping. Molecular characterization of these interrupted genes will shed light on their developmental function.

Animals↗

Lower extremity injuries in in-line skaters: a report of two cases.

In-line skating has become a very popular sport over the past several years. Previous studies examining the injuries associated with this sport have emphasized the incidence upper extremity injuries. Two cases are described in which patients suffered severe lower extremity injuries while in-line skating: one had a femoral shaft spiral fracture and the other bilateral anterior cruciate ligament and medial collateral ligament injuries. Although a predominance of upper extremity injuries associated with this sport has been widely noted, increased numbers of participants, higher speeds and changing skate designs may further predispose skaters to leg, knee and ankle injuries.

Adult↗

Development of standard reference materials for diagnosis of p53 mutations: analysis by slab gel single strand conformation polymorphism.

We have amplified by polymerase chain reaction (PCR) a 2.0 kbp region of the p53 gene containing exons 5--9 from seven cell lines reported in the literature to contain the majority of mutations reported for this gene. Sequence analysis of these products show that all seven cell lines contain mutations within the mutational hot spots of the p53 gene. Six of the seven clones have single base substitutions and the seventh has a single base deletion. We have analyzed the seven p53 single point mutations by single strand conformation polymorphism (SSCP) analysis using fluorescence slab gel electrophoresis (SG-SSCP). Fluorescent-labeled PCR primers were used for amplification of specific exons for mutation detection. SG-SSCP was conducted using Model 373 and Model 377 DNA sequencers with GeneScan Software (Perkin Elmer, Applied Biosystem Division). Nine different gel systems were first tested for their ability to resolve the p53 mutations using the Model 373 instrument. Two gel systems were capable of resolving all of the mutations that were screened. Optimal results were obtained with 12% w/v acrylamide 50:1 plus 10% v/v glycerol. This gel system was used to evaluate the effect of temperature on the ability to resolve the mutations. The separation with respect to wild type varied for each mutation examined. Subambient temperature (20 degrees C) was preferable overall for discrimination of these mutations as a group. We intend to use this system to examine a much larger panel of p53 mutation standards that are now under development.

DNA Mutational Analysis↗

Research note: Efficient preservation of genome-edited chicken germplasm via N-methylacetamide-based semen cryopreservation.

The rapid development of genome-edited chicken lines for agricultural and biomedical use requires effective methods for long-term preservation. In birds, cryopreservation of oocytes and embryos is challenging due to the structure of the egg. This makes semen cryopreservation one of the most practical alternatives, however, this method has not been validated in genome-edited chickens. This study evaluated the feasibility of cryopreserving semen from genome-edited chickens using an N-methylacetamide (N-MA)-based protocol. Two genome-edited chicken lines were used in this study which are a DAZL-GFP germ cell reporter line and a RAG1 knockout line. Semen was stored for either one week or one month prior to assessing fertility and hatchability. The results demonstrated that cryopreserved semen from both genome-edited chicken lines maintained their fertilizing capacity, with no significant differences in fertility or hatchability compared to cryopreserved wild-type groups at either storage duration. Hatchability remained above 80% across all groups, indicating that semen cryopreservation did not significantly affect embryo development after successful fertilization. Furthermore, SYBR-14/PI staining revealed no significant differences in sperm viability between genome-edited and control groups, although both showed a significant decrease in viability compared to fresh semen. These findings demonstrate that N-MA-based semen cryopreservation provides a reliable and practical method for the preservation of genome-edited chicken lines.

Chicken↗

Insertion of long lines in the pediatric emergency department.

OBJECTIVE: The purpose of this study was: 1) to evaluate the role of the pediatric emergency department (PED) in placing peripherally inserted midline or central catheters (long lines), and 2) to review indications and complications to use this technology to reduce the number and duration of admissions and provide an alternative method for administering intravenous therapy. METHODS: Retrospective chart review of all patients taken from a procedure log who had long lines placed in the emergency department of a children's hospital. RESULTS: Twenty-eight patients had 30 long line insertions over a 36-month period. Fourteen were female; age ranged from 1 to 36 years with a median of 9 and a mean of 11.1 +/- 8.4. The indication for insertion was for parenteral antibiotics in 27 of 28 (96%) patients and for parenteral nutrition in 1 (4%) patient. The catheters varied in length from 8 to 60 cm. Twelve of 30 (40%) catheters terminated centrally in the subclavian or superior vena cava, while 18 (60%) were in the peripheral cephalic, basilic, or axillary veins. Chest radiography confirmed positioning in 12 of 12 inserted centrally and in 15 of 18 (83%) in the peripheral circulation. Half of the patients received no premedication for the procedure; 10 (33%) received topical anesthetic cream; 2 (7%) local infiltration of anesthetic, and 2 (7%) parenteral sedation. Twenty-one of 30 (70%) patients were discharged directly from the emergency department; 3 (10%) were discharged after admission to the hospital to complete treatment at home with their long lines, and 6 (20%) used their long lines for in-hospital therapy only. Eight of 30 (27%) placements were for patients specifically referred to the PED for placement or replacement of a long line. Twelve of 30 (40%) lines were placed in children presenting for intravenous therapy for cellulitis. These patients received a long line with home i.v. therapy instead of the traditional admission. The duration of intravenous treatment documented for all patients ranged from 1 to 62 days with a median of 10.5, and a mean of 16.2 +/- 17.8, compared with the duration of the line ranging from 1 to 28 days with a median of 4, and a mean of 7.3 +/- 8.0. Ten of 30 (33%) had their line for 3 days or less. The short duration was due to problems with line function in 5 of 10, and intentional removal secondary to improved cellulitis in 5. There were no significant complications with the lines reported during placement or while in use; however, 8 of 30 (27%) of the lines placed developed problems with function, requiring repair or replacement. CONCLUSIONS: 1) Long lines can be inserted in the pediatric emergency department by physicians with different levels of training with minor complications and no adverse clinical effects; 2) the placement of long lines can eliminate the need for hospitalization in some cases, reduce the duration of hospitalization in others, and lessen the need for repeated venipunctures for routine peripheral catheter replacement in patients requiring i.v. therapy; 3) the planned duration of therapy as well as other factors not analyzed in this study should be considered when selecting patients for long line placement in the emergency department.

Adolescent↗

Reactivation of antibody genes in Epstein-Barr virus transformed human B cell lines. A preliminary report.

Three immortalised human B cell lines, which had either last their capacity to secrete specific antibody or secreted low levels of antibody were studied in an attempt to reactivate or enhance antibody synthesis. A variety of different stimuli known to cause activation, proliferation and differentiation of normal B cells were used including polyclonal activators and recombinant interferon. Four of them, (namely LPS, anti-IgM, IL2 and IL6) effectively increased specific antibody synthesis after three days of culture. These preliminary experiments show that the loss or decline in immunoglobulin production by immortalised human B cells is, at least in some cases, reversible.

Antibody Formation↗

[Establishment and usage of human multiple myeloma cell line].

It was known that malignancies of plasma cell (MPC) consists of three categories, one is multiple myeloma (MM), second is plasmacytoma, third is plasma cell leukemia. One of the aim of our review is that we listed MPC cell lines reported. It became clear from the list that the success of establishment of cell lines may expected only when trials are done concerning MM cells shown extra-medullary invasion cells from patients. In contrast, IL-6 dependent cell lines may established by chance and it may not depend on cell origin. The second aim of the article is to review the usage of cell lines of MPC. We chose 7 issues; one is the correlation between the proliferation and IL-6, second is the contribution of other cytokines to MPC lines, third is how to make human MM model in SCID mouse, fourth is the chromosomal abnormalities and oncogenesis, fifth is the contribution of fibronectin and MPC lines, sixth is the issue of osteoblast activating factor (OAF), finally, we discussed the tumour aberration of MPC lines. We expect that the accumulation of these acknowledges concerning MPC cell lines would contribute to the development of plasmacytology in the future.

Cell Line↗

Transgenic mice that express Cre recombinase in hypertrophic chondrocytes.

In order to investigate the physiological control of hypertrophic chondrocytes which present the terminally differentiated form of chondrocytes, we generated a mouse line expressing the Cre recombinase under the control of the mouse type X collagen (Col10a1) promoter. In situ hybridization analysis demonstrated the expression of Col10a1-Cre transgene in hypertrophic chondrocytes of femur at postnatal day 2 (P2). In order to test the excision activity of the Cre recombinase, the Col10a1-Cre transgenic line was crossed with the mouse strain carrying the Smad4 conditional alleles (Smad4co/co) and the reporter line ROSA26. Multiple tissue PCR of Col10a1-Cre;Smad4co/+ mice revealed the restricted Cre activity in tissues containing hypertrophic chondrocytes. LacZ staining revealed that the Cre activity was observed in the cartilage primordia of ribs at E14.5 and only detected in the lower hypertrophic region of ribs at P1. These data suggest that the Col10a1-Cre mouse line described here could be used to achieve conditional gene targeting in hypertrophic chondrocytes.

Animals↗