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At least 19 recordsLinked to original sources

Comparison of standard tissue culture, tissue culture plus staining, and direct staining for detection of genital herpes simplex virus infection.

Genital herpes simplex virus infection in women was studied by using conventional tissue culture (TC) virus isolation compared with short-term (24-h) TC on Lab-Tek chamber slides followed by fluorescent-antibody (FA) staining. Three different staining techniques were used after TC: (i) staining with biotin-avidin (TC-BA/FA), (ii) direct FA (TC-FA), and (iii) indirect FA. The TC-BA/FA method showed complete correlation with the TC method. The TC-FA method showed no false-positive results but 31.5% false-negative results compared with the TC method. In contrast, the TC-indirect FA method showed 11.9% false-positive results and 11.7% false-negative results. The direct staining of specimens by the biotin-avidin technique (direct BA/FA) without prior tissue culture showed 37.7% false-positive results and 11.1% false-negative results. The TC-BA/FA technique thus was as sensitive as, but more rapid than, the TC method. The quality of fluorescence was far superior in TC-BA/FA staining as compared with TC-FA or TC-indirect FA procedures. The TC-BA/FA appears to be a valuable technique in laboratory diagnosis of genital herpes infections, especially in clinical situations requiring rapid detection of the virus.

Cells, Cultured↗

Human dermal microvascular endothelial cells: an improved method for tissue culture and a description of some singular properties in culture.

Tissue culture of human large vessel endothelium is now routine in many laboratories but tissue culture of human microvascular endothelium remains a difficult procedure, preventing study of features of endothelial function that may be peculiar to the microvasculature. This report describes an improved method for tissue culture of human dermal microvascular endothelium derived from foreskin. The method is rapid, reproducible, avoids contamination with nonendothelial cells, and does not require the use of a tumor-conditioned medium. The major modifications over existing techniques are the use of a Percoll density gradient to remove the majority of nonendothelial cells followed by a simplified weeding procedure that removes residual nonendothelial cells and leaves large numbers of endothelial cells to grow rapidly to confluence. The cells are identified as endothelial by their morphology and by positive immunofluorescence for Factor VIII. Proliferation experiments demonstrate their requirement for an exogenous matrix and for a high concentration of human serum. Whole serum was required as platelet-poor plasma serum had poor growth stimulatory activity. Proliferation could be enhanced by dibutyryl cyclic AMP or endothelial cell growth substance and was maximal with the combination of endothelial cell growth substance and heparin. However, the use of these agents did not remove the requirement for an exogenous matrix. Fibroblast growth factor, platelet-derived growth factor, epidermal growth factor, nerve growth factor, and thrombin did not increase proliferation.

Animals↗

Changes in the fine structure and function of a hormone-secreting adrenocortical tumour investigated in tissue culture.

Tissue cultures of a surgically removed adrenocortical tumour causing Cushing's syndrome, and tissue cultures from the attached, tumour-free adrenal were studied. There were two cell types characteristic of tumour tissue. The cell type occurring most frequently had pronounced hypertrophied agranular endoplasmic reticulum. A fewer number of lipid-rich cells containing many electron-dense granules could also be found. The ratio of cells changed during cultivation. In the 17 days tumour culture, a higher percentage of lipid-rich cells could be observed. In spite of continuous ACTH treatment, the initially high hydrocortisone level decreased, gradually. It may be assumed that the lipid-rich cells are of reduced ability as regards hydrocortisone production.

Adrenal Gland Neoplasms↗

Transcription analysis of peloric mutants of Phalaenopsis orchids derived from tissue culture.

Tissue culture has been widely used for mass propagation of Phalaenopsis. However, somaclonal variation occurred during micropropagation process posed a severe problem by affecting product quality. In this study, wild type and peloric flower buds of Phalaenopsis hybrids derived from flower stalk nodal culture were used for cDNA-RAPD and cDNA suppression subtractive hybridization analyses in order to study their genetic difference in terms of expressed sequence tags. A total of 209 ESTs from normal flower buds and 230 from mutants were sequenced. These ESTs sequences can be grouped into several functional categories involved in different cellular processes including metabolism, signal transduction, transcription, cell growth and division, protein synthesis, and protein localization, and into a subcategory of proteins with unknown function. Cymbidium mosaic virus transcript was surprisingly found expressed frequently in the peloric mutant of P. Little Mary. Real-time RT-PCR analysis on selected ESTs showed that in mutant flower buds, a bZIP transcription factor (TGA1a-like protein) was down-regulated, while up-regulated genes include auxin-regulated protein kinase, cyclophilin, and TCP-like genes. A retroelement clone was also preferentially expressed in the peloric mutant flowers. On the other hand, ESTs involved in DNA methylation, chromatin remodeling and post-transcriptional regulation, such as DNA methyltransferase, histone acetyltransferase, ERECTA, and DEAD/DEAH RNA helicase, were enriched in normal flower buds than the mutants. The enriched transcripts in the wild type indicate the down regulation of these transcripts in the mutants, and vice versa. The potential roles of the analyzed transcripts in the development of Phalaenopsis flowers are discussed.

DNA, Complementary↗

A scanning electron microscopic examination of retinoblastoma in tissue culture.

Tissue cultures were established from 6 retinoblastomas and the cultured cells examined by scanning electron microscopy. Cells from cultures of normal fetal retinal and glial tissue were also examined by SEM. Though a number of different cell types were found to coexist in the retinoblastoma cultures, most had the features of cells of either glial or neuronal origin. Evidence of further differentiation of cells in each series was seen. These findings indicate that the cell of origin in retinoblastoma is a multipotential stem cell which, though neoplastic, is still capable of differentiation into both glial and neuronal series.

Brain↗

Monophasic mesenchymal synovial sarcoma: its identification by tissue culture.

Tissue cultures from a series of spindle cell soft tissue sarcomas allowed th identification of five cases in which the neoplastic cells grew as polygonal elements, forming plaques in the same way as epithelial tumors. The similarity of this behavior in vitro to that of normal pleura and synovium, and to monophasic malignant pleural mesothelioma, allowed these tumors to be classified as monophasic synovial sarcomas. None of the five tumors showed specific light-optical features, being composed of fusiform cells with a tendency to form slits in two cases. No true epithelial differentiation was found. The topographic distribution and the response to therapy of the neoplasms were also similar to that found in the usual biphasic tumors.

Adolescent↗

A method for the collection of defined areas from the embryonic rat brain for cell and tissue culture.

Tissue for the culture of cerebral neurons has frequently been taken from brains of the embryonic rats. In many cases it was impossible to obtain regularly and reproducibly small, defined pieces of tissue, e.g. diencephalic nuclei, of the extremely soft embryonic cerebral tissue. On the other hand, as a basis for tissue cultures, well defined samples are more and more considered essential. Therefore a method for collecting samples of defined small regions from the di- and mesencephalic rat brain, 17 days of gestation, was developed. It is applicable to cell and tissue culture. Embryonic brains are prepared aseptically and embedded in congealing Agarose. Stabilized in this gel they are cut into 225 micron slices using a tissue chopper. Tissue samples desired for culture are then punched out from the respective brain slice, which previously had been compared with corresponding reference micrographs. The correct localization of the tissue punch within the fresh brain slice is controlled histologically. The embedding procedure for performing the histology of the brain slices of 225 micron width is described. For application of the introduced method, coordinates for slicing and histological reference micrographs are given for di- and mesencephalic areas.

Animals↗

Synaptogenesis and amino acid release from long term embryonic rat spinal cord neuronal culture using tissue culture inserts.

In the present study, using tissue culture inserts (TCI) coupled with a primary spinal cord neuronal culture, we characterize a new perfusion system, which permits continuous perfusate collection from cultured neurons. Primary spinal cord neurons were isolated from the lumbar portion of E14 spinal cords of Sprague-Dawley rats, plated on TCI and fed with DMEM/B27/10% FBS. At 1-4 weeks after isolation the development of synapses and neurotransmitter phenotype in cultured neurons was verified using immunofluorescence. A time-dependent development of synapses (Syn) was seen with a dense Syn-positive network identified at 3-4 weeks after plating. A sub-population of plated neurons (35-40%) showed GABA immunoreactivity and expressed NMDAR1 receptor. To measure neurotransmitter release, a chamber accommodating TCI was constructed permitting perfusion of the insert across the membrane. To evoke amino acid release from cultured neurons, NMDA (10 mmol/l) was added into the perfusion buffer. Stimulation with NMDA evoked a significant GABA (4050 +/- 950%) and glutamate release (130 +/- 42%) during first 10 min after exposure. In control non-stimulated cells no significant changes were measured. These data show that by using TCI it is possible to maintain embryonic spinal cord neurons for an extended period and that this system may represent a simple tool to identify neurotransmitter and/or peptides associated with a specific population of cultured brain and/or spinal cord neurons.

Animals↗

ASSAY OF VITAMINS AND AMINO ACIDS WITH CULTURED TISSUE CELLS AND ANTIMETABOLITES.

A survey of growth responses of tissue-culture cells to vitamins and amino acids was undertaken to explore the potentialities of tissue culture in the assay of growth factors. An antagonist of the nutrient was included in each test system to improve its sensitivity. Addition of an antimetabolite was advantageous in the thiamine and phenylalanine assays. Tissue-culture assays of tryptophan and of phenylalanine supplemented with beta-2-thienylalanine compared favorably with microbial assays, and may serve as confirmatory or supplementary test systems. The sensitivity of cultured tissue cells to minute amounts of a variety of physiologically active substances suggests their employment in hormone and toxic compound assays.

Amino Acids↗

[New method of studying the release of fibrinolysis activators in tissue cultures].

Tissue cultivation in the presence of standardized fibrin clot containing plasminogen permitted to reveal and to study quantitatively the relase of the fibrinolysis activators into the medium (by the amount of the fibrin-fibrinogen degradation products). A possibility of in vitro study of the regulation of fibrinolysis activators release by the tissues was offered by the method described.

Culture Techniques↗

Cytogenetic studies of a male with sporadic intestinal lymphangiectasia: 45,X/46,XY mosaicism with pseudo- and hyperdiploid subpopulations in cultured tissues.

45,X/46,XY mosaicism was found in peripheral blood, bone marrow, and tissue cultures of an adult male with intestinal lymphangiectasia (IL). Turner phenotype was not present; his meiotic metaphase analysis was normak, and his dermatoglyphics resembled those of his family. Ten separate tissue culture lines from three biopsies of skin and thyroid gland contained 45,X cells (14.8 to 78.3%). Autosomal aneuploidy, resulting in pseudo- or hyperdiploidy, was also present in 4.3 to 41.6% of the cells. A hyperdiploid clone with a 47,X,+10,+18 karyotype was found in 22.6% of cells in one line. A second hyperdiploid clone with a 48,X,+2,+18,+18 karyotype occurred in 7.6% of cells from another line containing a total of 41.6% pseudo- and hyperdiploid cells. Such clonal abnormalities were not typical of tissue cultures from other patients done in our laboratory. Growth of our patient's tissue cultures was subnormal, and none proliferated beyond the fourth subculture. The significance of this observation remains to be determined. Our results do not allow us to conclude whether our patient's mosaicism of somatic tissues arose during embryogenesis, or whether it originated post-natally. The secondary immunodeficiency which occurs in IL may explain persistence of cells with unusual combinations of autosomal aneuploidy in our patient's tissues.

Adult↗