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1 effects were exacerbated for fused hMSC-hCM hybrid cells.
2 tion and in situ hybridization with those of hybrid cells.
3 inactive human X chromosomes in mouse/ human hybrid cells.
4 ted with the nontumorigenic phenotype of the hybrid cells.
5 somatic nucleus in the EG-thymic lymphocyte hybrid cells.
6 have examined the function of the resulting hybrid cells.
7 The ectopic neurons are hybrid cells.
8 chondrial respiratory chain in complementing hybrid cells.
9 pecies of recombinant mtDNA molecules in the hybrid cells.
10 from human cells as well as monochromosomal hybrid cells.
11 t dorsal root ganglion x mouse neuroblastoma hybrid cells.
12 but rather through spontaneous generation of hybrid cells.
13 were identified as surface components of the hybrid cells.
14 ly impacted by the known instability of such hybrid cells.
15 human fetal liver and mouse erythroleukemia hybrid cell (A181gamma cell) that contains a single copy
18 l-specific replication program in the fusion hybrid cells and independent regulation of the nuclear l
22 M on the upper surface of ND-7 neuroblastoma hybrid cells as an indication of receptor-cytoskeleton i
23 the observed pluripotency of the EG-somatic hybrid cells as they differentiated into a variety of ti
24 f hsp90 required to bind eNOS, using yeast 2-hybrid, cell-based coprecipitation experiments, and GST-
27 mic specialization (ES) is a testis-specific hybrid cell/cell actin-based adherens junction and cell/
28 cell-mediated chromosome transfer to isolate hybrid cell clones that retain chromosome 3 homologues w
29 on, with intermediate points represented by "hybrid" cells coexpressing phenotypic markers of more th
31 A triboelectric-pyroelectric-piezoelectric hybrid cell, consisting of a triboelectric nanogenerator
33 he human HPRT gene, we treated human/hamster hybrid cells containing an inactive human X chromosome w
37 n the microcell-mediated chromosome transfer hybrid cells containing whole human chromosome 16 were i
38 my was quantitated in individual cytoplasmic hybrid cells (cybrids), containing a large mtDNA deletio
40 phenomenon whereby medium from human-hamster hybrid cells displaying radiation-induced chromosomal in
42 ons performed with human chromosome 2/rodent hybrid cell DNA as template sublocalized SULT1C1 to a re
44 lls to evade phagocytosis, and the resultant hybrid cells exhibited increased migration, tumorigenesi
55 phosphate (cAMP)-differentiated motor neuron hybrid cells in vitro, and anti-oxidants prevented this
56 pon cell fusion, respiration is recovered in hybrids cells, indicating that mitochondria fuse and exc
57 m approximately 8q22 to 8q24 and includes 10 hybrid cell intervals, 89 polymorphic STSs, 118 ESTs, an
63 ed previously that in a neuroblastoma-glioma hybrid cell line (NG108-15), the heterotrimeric G-protei
64 vely nonchimeric clones from a human-hamster hybrid cell line as well as clones isolated from total g
66 tructed with DNA isolated from a mouse/human hybrid cell line designated A15, which was previously ch
67 cation product from both total human DNA and hybrid cell line DNA containing only human chromosome 5.
71 transcription in the neuroblastoma X glioma hybrid cell line NG108-15, a cell line expressing the en
72 screening of the G3 human-hamster radiation hybrid cell line panel and confirmed the localization by
73 solateral uptake of [3H]TC in WIF-B cells, a hybrid cell line stably exhibiting in vitro the structur
76 ND7/23-Nav1.8 rat DRG x mouse neuroblastoma hybrid cell line which showed constitutive expression of
82 However, further studies with other somatic hybrid cell lines (Bios Laboratory) localized the TnTf g
83 sing the G3 panel of human/hamster radiation hybrid cell lines and >15,000 unique human genetic marke
85 to human chromosome 1 on a panel of somatic hybrid cell lines and to 1p31.3-p31.2 by fluorescence in
87 cted a collection of canine-rodent microcell hybrid cell lines by fusion of canine fibroblast microce
88 with psoriasin cDNA, as did genomic DNA from hybrid cell lines containing all or part of chromosome 1
89 es of genomic DNAs from rodent/human somatic hybrid cell lines containing human chromosome 1 or the p
90 ial chromosomes (YACs) from two rodent/human hybrid cell lines containing human chromosomes 5 and 16.
94 pothesis, we developed hamster-human somatic hybrid cell lines from VCFS/DGS patients with all three
97 ion on DNA from several of the sheep-hamster hybrid cell lines suggests that loci containing multiple
99 have used phenotypic screening of radiation hybrid cell lines to identify the candidate lung cancer
100 We assayed the susceptibility of each of the hybrid cell lines to transduction by retroviral vectors
103 A dominant proteomic feature of aggressive hybrid cell lines was upregulation of cytoskeletal and a
105 was restored by transfection or creation of hybrid cell lines with complementing deficiencies in exp
106 is issue we have fused two human cytoplasmic hybrid cell lines, each containing a distinct pathogenic
107 In addition, a panel of 30 sheep-hamster hybrid cell lines, each of which carries one or more she
108 ation (FISH) studies and analysis of somatic hybrid cell lines, the chromosomal location of p40-phox
121 NA in YACs from monochromosomal human/rodent hybrid cells lines and radiation hybrids can be accompli
123 nd cholinergic neurons, gliomaxneuroblastoma hybrid cells (NG108-15) were used to create nerve-muscle
126 , whereas B16 melanoma cells and the somatic hybrid cells of B16 x K-1735 melanoma cells produce meta
127 ilver-impregnated collagen cuff material and hybrid cells or human fibroblasts showed a marked local
129 pectively, by using a cattle-hamster somatic hybrid cell panel and a 5,000 rad whole-genome radiation
131 A whole genome cattle-hamster radiation hybrid cell panel was used to construct a map of 54 mark
132 alized by breakpoint analysis using a set of hybrid cell panels consisting of natural deletions or tr
136 receptor in NG108-15 neuroblastoma X glioma hybrid cells results in a transient increase at the intr
137 ing of the FHIT/FRA3B locus in the resultant hybrid cells revealed a complex pattern of instability w
138 ltiple types of energies using an integrated hybrid cell so that the energy resources can be effectiv
139 rigenic and nontumorigenic HeLa x fibroblast hybrid cells, subtractive suppression hybridization (SSH
140 dization was performed between GBM cells and hybrid cells suppressed for tumorigenicity following mic
142 e fused with human fibroblasts, resulting in hybrid cells that maintain a stable tetraploid DNA conte
144 by exposing human-mouse chromosome 3 somatic hybrid cells to aphidicolin-mediated replication stress.
145 cell growth in vitro, and the ability of the hybrid cells to form tumors in animals was suppressed.
146 lasts and in NG108-15 neuroblastoma x glioma hybrid cells treated with BMP-7, an inducer of L1 and ne
147 coincides with the appearance of a nonfused, hybrid cell type that shares the morphology, antigenicit
148 erivascular resident macrophages (PVM/Ms), a hybrid cell type with characteristics of both macrophage
149 D-line was fused to an A-line, the resulting hybrid cells underwent apoptosis in response to p53, ind
150 ieved the power conversion efficiency of the hybrid cells up to 2 %; and demonstrated that most of th
151 report, we describe a new method to generate hybrid cell vaccines, based on gene transfer of a viral
152 human ALS, and in differentiated motoneuron hybrid cells [ventral spinal cord (VSC 4.1 cells)] that
156 puts of these complex cells and existing two-hybrid cells, we can make inferences about the topology
157 egulation of human globin genes in the LxMEL hybrid cells, we transfected the YAC into L-cells by lip
161 a species-specific monoclonal antibody, the hybrid cells were shown to synthesize human neurofilamen
162 These studies used GM10115 human-hamster hybrid cells, which contain one copy of human chromosome
163 in NG108-15 mouse neuroblastoma x rat glioma hybrid cells, which express predominantly LVA currents w
165 wed by RT-PCR analysis using monochromosomal hybrid cells with a human chromosome 6 of defined parent
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