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Biomedical subjects

C Richardson

Publications and source records attributed to C Richardson.

At least 19 recordsLinked to original sources

Transfer and expression of the human multidrug resistance gene in mouse erythroleukemia cells.

Gene therapy in humans requires the transplantation of genetically modified cells, and it is important to select only those cells capable of expressing high levels of protein from the transferred gene. Expression of the human multiple drug resistance (MDR) gene confers resistance to a variety of compounds in vitro and in vivo. To determine the feasibility of conferring recipient erythroid cells with the MDR phenotype, we have transduced mouse erythroleukemia cells (MELC) with the MDR gene in a retroviral vector. We show here that MELC clones resistant to exposure to colchicine (an MDR-responsive agent) can be isolated, and demonstrate high levels of MDR RNA and protein expression. Increasing doses of colchicine increase the level of MDR RNA and protein expression significantly. These results indicate that it is possible to transfer and express the human MDR phenotype in mouse erythroid cells by retrovirally mediated gene transfer, and that drug selection can be used to enrich or purify populations of cells containing and expressing this gene.

3T3 Cells

Transfer and expression of the human multiple drug resistance gene into live mice.

The human multiple drug resistance (MDR) gene has been used as a selectable marker to increase the proportion of bone marrow cells that contain and express this gene by drug selection. By constructing retroviral vectors containing and expressing the MDR gene and a nonselectable gene such as the beta-globin gene, enrichment for cells containing both of these genes can be achieved. A retroviral construct containing MDR cDNA in a Harvey virus-based vector has been used to transfect our ecotropic 3T3 retroviral packaging line GP+E86. Clones have been isolated by exposure of the retrovirally transfected cells (MDR producer cells) to colchicine (60 ng/ml), a selective agent that kills MDR-negative cells. Flow cytometry analysis (fluorescence-activated cell sorting) with an antibody to MDR demonstrates expression of human MDR protein on the surface of these colchicine-resistant producer clones. Untransfected GP+E86 cells are negative. Colchicine-resistant clones were titered using clone supernatants and the highest titer clone (4 x 10(4) viral particles per ml) was cocultured with 10(6) donor mouse bone marrow cells for 24-48 hr. The donor cells were then injected into congenic irradiated mice, and the presence of the MDR gene was assayed by the polymerase chain reaction (PCR) analysis using MDR-specific primers. In one experiment eight of nine transduced mice were positive for MDR by PCR of peripheral blood 14 and 50 days posttransplantation; after 240 days three of nine transduced mice were positive. Bone marrow obtained from one of these positive animals was stained with the MDR monoclonal antibody and the granulocyte population was analyzed by FACS. Approximately 14% of the total granulocyte pool contain increased levels of MDR protein. In addition, the bone marrow cells of several mice initially positive for MDR gene by PCR, and subsequently negative, were exposed to taxol, a drug whose detoxification depends on MDR gene expression; a positive signal was obtained in all of these mice, indicating drug selection of MDR-positive marrow cells. Cell sorting studies of these mice also show an increased number of high-MDR-expressing marrow cells, selected after exposure to taxol. Thus, in this live animal model MDR transduction is effective in selecting a human MDR-expressing population of marrow cells resistant to taxol chemotherapy. This strategy may, thus, be useful in humans to prevent the marrow toxicity induced by anticancer agents such as taxol and as a selectable marker to enrich for cells simultaneously transduced with a nonselectable gene.

ATP Binding Cassette Transporter, Subfamily B, Mem

Peripheral control of the antagonist muscle during unexpectedly loaded arm movements.

Ten subjects completed a series of goal-directed arm flexion movements unexpectedly perturbed by three different types of mechanical load. Examination of electromyograph (EMG) waveforms and kinematic information collected during randomly distributed test trials facilitated investigation into the interaction between loading conditions and the response-associated EMG innervation patterns. Results of the EMG waveform analysis revealed that inertial and spring loads produced cocontraction and triphasic activation patterns, respectively. Unexpected application of a stretched-spring load, which produced a change in initial torque values without changing the rate of loading, also resulted in the use of a triphasic activation pattern. These different EMG patterns were observed while movement displacement for all three loads fell within the limits of the target area.

Arm

Feedback control of limb stiffness and scaled phase invariance properties of skilled high-speed arm flexion movements of a loaded manipulator.

In this and a previous experiment it has been observed that subjects produce innervation patterns (EMG) that are load specific, i.e., they produce concentration patterns for movements made with inertial loads and triphasic patterns for movements made with elastic loads. The protocol of these experiments prevented any adaptive responses to the load changes, therefore, it was assumed that pattern matching to load type was a real time updating response of the peripheral feedback systems. This updating response was assumed to be a mechanism for fine tuning the muscle torque by regulation of the mechanical impedance (stiffness) of the limb. Using a standard equation of motion, it was shown that the velocity is equal to the ratio of the muscle torque to the mechanical impedance. Substitution of this ratio for the ordinate of the scaled phase diagrams was then suggested as a real time updating mechanism to account for the scaled phase invariance recorded in this experiment and in the experiment reported by Ruitenbeek, J.C., Biol. Cybernetics 51 (1984) 11-20.

Biomechanical Phenomena

Nonreplicating viral vectors as potential vaccines: recombinant canarypox virus expressing measles virus fusion (F) and hemagglutinin (HA) glycoproteins.

The development of canarypox virus (CPV) recombinants expressing the hemagglutinin (HA) and fusion (F) glycoproteins of measles virus (MV) is described. Inoculation of the CPV-MV recombinants into avian or nonavian tissue culture substrates led to the expression of authentic MVF and MVHA as determined by radioimmunoprecipitation and surface immunofluorescence. In contrast to avian-derived tissue culture, no productive replication of the CPV recombinant was evident in tissue culture cells derived from nonavian origin. On inoculation of dogs, a species restricted for avipoxvirus replication, the recombinants elicited a protective immune response against a lethal canine distemper virus (CDV) challenge. The level of MV neutralizing antibodies and the level of protection induced against CDV challenge achieved by the host-restricted CPV vector were equivalent to that obtained by vaccinia virus vectors expressing the same MV antigens.

Animals

Comparison of the thymidine kinase genes from three entomopoxviruses.

The entomopoxviruses (insect poxviruses) of eastern spruce budworm (Choristoneura fumiferana), two year cycle spruce budworm (C. biennis) and the Indian red army worm (Amsacta moorei) are being studied in our laboratory for their potential as biological insecticides and expression vectors. These viruses characteristically replicate in the cytoplasm of insect cells and produce occlusion bodies that serve to protect the virion from the environment. By analogy to mammalian poxviruses, they should also contain a viral thymidine kinase (TK) that functions in viral DNA synthesis. The replication of the A. moorei entomopoxvirus was inhibited by bromodeoxyuridine whereas the baculovirus of Autographa californica was insensitive to this drug. This result was a biochemical indication that entomopoxviruses contained a kinase that phosphorylated this nucleoside analogue and thus viral DNA synthesis was inhibited. TK genes from the three different insect poxviruses were identified, cloned and sequenced. The sequences of the TK genes of the entomopoxviruses were closely related and exhibited 63.2% identity and 9.9% similarity at the protein level. However, there was only 36.7% identity and 13.6% similarity when these enzymes were compared to their mammalian poxvirus counterpart in vaccinia virus. Finally, one entomopoxvirus TK gene was expressed in Escherichia coli mutants lacking the enzyme. These bacteria were converted to a phenotype that could incorporate radioactive thymidine into their chromosomal DNA. The results presented in this paper provide impetus for the design of a recombinant entomopoxvirus expression system in which foreign genes could be introduced into the viral TK locus under selective pressure from bromodeoxyuridine.

Amino Acid Sequence

The predicted amino acid sequence of the spheroidin protein from Amsacta moorei entomopoxvirus: lack of homology between major occlusion body proteins of different poxviruses.

Entomopoxviruses replicate in the cytoplasm of insect cells and characteristically produce occlusion bodies which serve to protect the virion from the environment; the major component of these bodies is a protein called spheroidin. We have previously identified and sequenced the gene encoding the major occlusion body protein of eastern spruce budworm (Choristoneura biennis) entomopoxvirus (CbEPV) and found it to encode a 47K polypeptide which aggregates due to the formation of intermolecular disulphide bonds. In this publication we demonstrate that the insect poxvirus of Amsacta moorei produces spheroidin with a unit Mr of 114.8K. The gene for this protein was cloned and sequenced, and the predicted polypeptide was demonstrated to contain 38 cysteine residues, a leucine zipper for possible protein-protein interactions and 14 potential Asn-linked glycosylation sites. Other than possessing a large number of sulphydryl groups, this protein showed no homology to its analogue found in cells infected with CbEPV. Antibodies directed against occlusion body proteins of the two viruses also failed to cross-react significantly on Western blots. In addition, nucleic acid probes prepared from the two different genes did not cross-hybridize on Southern blots of genomic DNA prepared from the viruses. Finally, the occlusion body proteins from the two insect viruses were compared with the A-type inclusion body protein of cowpox virus. Again, little homology between these proteins was evident, with the exception of a generally high cysteine content and a similarity between their late gene promoters. We conclude that the major occlusion body proteins of different poxviruses possess diverse primary structures, but all are capable of yielding large aggregates through the formation of disulphide bonds.

Amino Acid Sequence

Somatostatin analogue treatment inhibits post-resectional adaptation of the small bowel in rats.

Post-resectional hyperplasia is the phenomenon in which residual small bowel increases in size and absorptive capacity after segmental enterectomy. This experiment studied the effect of somatostatin analogue therapy on the development of two structural parameters of post-resectional hyperplasia in rats subjected to 40% proximal small bowel resection. Octreotide acetate-treated rats failed to develop increased villus height (902 +/- 50 microns) relative to saline-treated rats (1,103 +/- 98 microns). Augmentation of residual intestinal weight was also significantly impaired in analogue-treated rats (92 +/- 3 versus 118 +/- 5 mg/cm). We conclude that somatostatin analogue treatment during the early postoperative period does impair the growth of residual bowel in rats. These findings raise concern regarding the use of this drug for postoperative patients who have undergone massive small bowel resection in whom the process of post-resectional adaptation may be critical to allow sustenance with enteral nutrition.

Adaptation, Physiological

The 5' noncoding region sequence of the Choristoneura biennis entomopoxvirus spheroidin gene functions as an efficient late promoter in the mammalian vaccinia expression system.

About 100 nucleotides of DNA sequence at the 5' noncoding region of the Choristoneura biennis entomopoxvirus spheroidin gene was chemically synthesized and inserted into a vaccinia expression vector, interrupting the vaccinia thymidine kinase gene. When the bacterial beta-galactosidase gene was introduced downstream of this sequence and a recombinant vaccinia virus containing these inserts was obtained by homologous recombination, beta-galactosidase was shown to be expressed at a high level late in the vaccinia infection cycle. The level of beta-galactosidase expression was four- to fivefold higher with this spheroidin-vaccinia recombinant virus than with a similar recombinant in which the beta-galactosidase gene was under the control of the vaccinia 7.5-kDa promoter. Primer extension and S1 mapping of the 5' terminus of the beta-galactosidase transcript located the transcription initiation site within the spheroidin DNA sequence, confirming the promoter nature of this DNA sequence in the vaccinia system. Dot blot analysis indicated that the difference in beta-galactosidase expression with these two recombinant viruses can be attributed to the difference in their transcript levels. We also demonstrated that full promoter activity encoded in the spheroidin 5' noncoding sequence was contained within a 38-nucleotide DNA fragment.

Animals

Long-term complete remission in bladder carcinoma in situ with intravesical TICE bacillus Calmette Guerin. Overview analysis of six phase II clinical trials.

Carcinoma in situ is a form of superficial transitional cell carcinoma, which is characterized by a lateral spread along the bladder epithelium, with high-grade malignancy and poor prognosis. Early radical cystectomy is considered the definitive treatment even in the absence of associated invasive cancer. In six prospective phase II studies, 123 carcinoma in situ patients were administered intravesical TICE bacillus Calmette-Guerin (BCG). Treatment consisted of at least six weekly instillations (induction) followed by twelve monthly instillations (maintenance) of BCG (50 mg: 1 to 8 x 10(8) colony-forming units). Of 119 evaluable patients, 90 (76%) achieved complete remission including 45 of 63 (71%) patients who received prior intravesical chemotherapy. Forty-five responders (50%) remain in complete remission with negative urine cytology with a median duration of response projected to be greater than or equal to forty-eight months. There is no difference in survival between BCG responders and nonresponders, but there is a significant difference in cystectomy rates: 10 of 90 (11%) responders vs. 16 of 29 (55%) nonresponders (P less than 0.0001, Fisher's exact test) and time to cystectomy (31 vs. 74 mos.) (P less than 0.001, log-rank test). Delaying cystectomy does not seem to affect survival and improves quality of life. Treatment was well tolerated with some major adverse effects. Intravesical TICE BCG is an effective treatment for bladder carcinoma in situ patients with or without prior chemotherapy.

Administration, Intravesical

Public knowledge of thalassemia in Greece and current concepts of the social status of the thalassemic patients.

Current concepts with regard to the social integration of the thalassemia patient worldwide require further evaluation. In this work we have investigated the concepts of the average citizen of continental Greece and Crete about the problem of thalassemia, his awareness of the basic characteristics of the disease and his attitudes towards some 'life-style' parameters of the thalassemic sufferer. We used the method of stratified random sampling and interviewed 3500 people aged 15-65 years. We carried out multivariate statistical analysis of responses to the items on thalassemia in relation to sex, age, educational level, place of residence and marital status. The results of this survey show that education was the factor with the greatest influence on the likelihood of being aware of thalassemia and of having accurate knowledge of the basic features of the disease. There was also a general effect of age with the highest awareness and the best knowledge being found in those aged 21-44 years, while place of residence was a significant factor for two items. The features known best were that thalassemia is non-infectious, that it calls for blood transfusion, and is inherited. Education had the strongest influence on the probability that a person holds the attitude that the sufferer from thalassemia can play a normal role in society as regards working and having a family, as well as generally living a normal life and, in the case of thalassemic children, playing and going to school. The attitude that thalassemics should work instead of receiving a state benefit depended on education, age and place of residence.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Vaccinia virus recombinants expressing either the measles virus fusion or hemagglutinin glycoprotein protect dogs against canine distemper virus challenge.

cDNA clones of the genes encoding either the hemagglutinin (HA) or fusion (F) proteins of the Edmonston strain of measles virus (MV) were expressed in vaccinia virus recombinants. Immunofluorescence analysis detected both proteins on the plasma membranes of unfixed cells as well as internally in fixed cells. Immunoprecipitation of metabolically radiolabeled infected-cell extracts by using specific sera demonstrated a 76-kDa HA polypeptide and gene products of 60, 44, and 23 kDa which correspond to a MV F precursor and cleavage products F0, F1, and F2, respectively. Neither recombinant induced cell fusion of Vero cells when inoculated individually, but efficient cell fusion was readily observed upon coinfection of cells with both recombinants. Inoculation of dogs with the vaccinia virus-MV F recombinant (VV-MVF) did not give rise to detectable MV-neutralizing antibody. Inoculation of dogs with the vaccinia virus-MV HA recombinant (VV-MVHA) or coinoculation with both recombinants (VV-MVF and VV-MVHA) induced significant MV-neutralizing titers that were increased following a booster inoculation. Inoculation of dogs with the vaccinia virus recombinants or with MV failed to induce canine distemper virus (CDV)-neutralizing antibodies. Upon challenge with a lethal dose of virulent CDV, signs of infection were observed in dogs inoculated with (VV-MVF). No symptoms of disease were observed in dogs that had been vaccinated with VV-MVHA or with VV-MVHA and VV-MVF and then challenged with CDV. All dogs vaccinated with the recombinant viruses as well as those inoculated with MV or a vaccine strain of CDV survived CDV challenge.

Animals

Secretion of functional papain precursor from insect cells. Requirement for N-glycosylation of the pro-region.

The synthetic gene coding for the precursor of the cysteine protease papain (EC 3.4.22.2) has been expressed using the baculovirus/insect cell system. The prepropapain gene was cloned into the transfer vector IpDC125 behind the polyhedrin promoter. The recombinant construct was then incorporated by homologous recombination into the Autographa californiaca nuclear polyhedrosis virus genome. The host Spodoptera frugiperda Sf9 cells infected with the recombinant baculovirus secrete an enzymatically inactive N-glycosylated papain precursor. This zymogen could be activated in vitro to yield about 400 nmol of active papain per liter of culture. The recombinant active mature papain was enzymatically indistinguishable from natural papain but the precursor was not processed to the same amino acid residue. The insect cells also accumulated prepropapain and glycosylated propapain intracellularly. This accumulation was an indication that there are rate-limiting steps in the secretion of proteins from insect cells in this expression system. Characterization of mutants of the precursor has shown that entry into the secretory pathway and addition of carbohydrate are prerequisite conditions for the production and secretion of functional propapain.

Amino Acid Sequence

Frameshifting at the internal stop codon within the mRNA for bacterial release factor-2 on eukaryotic ribosomes.

A translational frameshift is necessary in the synthesis of Escherichia coli release factor 2 (RF-2) to bypass an in-frame termination codon within the coding sequence. High-efficiency frameshifting around this codon can occur on eukaryotic ribosomes as well as prokaryotic ribosomes. This was determined from the relative efficiency of translation of RF-2 RNA compared with that for the other release factor RF-1, which lacks the in-frame premature stop codon. Since the termination product is unstable an absolute measure of the efficiency of frameshifting has not been possible. A gene fusion between trpE and RF-2 was carried out to give a stable termination product as well as the frameshift product, thereby allowing a direct determination of frameshifting efficiency. The extension of RF-2 RNA near its start codon with a fragment of the trpE gene, while still allowing high efficiency frameshifting on prokaryotic ribosomes, surprisingly gives a different estimate of frameshifting on the eukaryotic ribosomes than that obtained with RF-2 RNA alone. This paradox may be explained by long distance context effects on translation rates in the frameshift region created by the trpE sequences in the gene fusion, and may reflect that pausing and translation rate are fundamental factors in determining the efficiency of frameshifting.

Base Sequence

Effects of indomethacin on cerebral haemodynamics in very preterm infants.

Near infrared spectroscopy was used to investigate the effects of intravenously administered indomethacin (0.1-0.2 mg/kg) on cerebral haemodynamics and oxygen delivery in 13 very preterm infants treated for patent ductus arteriosus. 7 infants received indomethacin by rapid injection (30 s) and 6 by slow infusion (20-30 min). In all the infants cerebral blood flow, oxygen delivery, blood volume, and the reactivity of blood volume to changes in arterial carbon dioxide tension fell sharply after indomethacin. There were no differences in the effects of rapid and slow infusion. These falls in cerebral oxygen delivery and the disruption of cerebrovascular control might compromise cellular oxygen availability, particularly in regions of the brain where the arterial supply is precarious. Care should be taken to ensure that oxygen delivery is optimum before the administration of indomethacin to preterm infants.

Blood Gas Monitoring, Transcutaneous

Estimation of the developmental age of the bovine fetus and newborn calf.

Jersey cows from several herds provided 97 fetuses and 24 calves at fixed gestational intervals between 80 and 290 days after conception. The fetuses and calves were killed, weighed and measured and, after dissection, the sizes and weights of a range of skeletal and soft tissues were recorded. Six morphological measurements emerged as most suitable for the determination of developmental age in the normal fetus. By plotting their mean values and 95 per cent tolerance limits, the rates of growth and the variability of each measurement were defined. Long bone length was the most useful single measurement for predicting the developmental age of the fetus. Brain weight, bodyweight, crown-anus length and long bone length showed curvilinear growth patterns; age prediction equations derived from these measurements are complicated to use and additional simplified formulae have been derived. The number of appendicular ossification centres also had predictive value, but it could not be used to determine fetal developmental age between 100 and 160 days gestation.

Animals

Intracellular processing, glycosylation, and cell-surface expression of the measles virus fusion protein (F) encoded by a recombinant adenovirus.

The membrane fusion protein of measles virus (MVF) is a surface glycoprotein which is essential for initiation of viral infection. The F protein mediates penetration of the host cell through a process of membrane fusion between the viral envelope and the host cell plasma membrane. To study the structure-function relationship of the MVF protein, a recombinant adenovirus, Ad5MVF, was constructed which expressed the F protein in mammalian cells. The MVF gene was inserted into the Ad5 genome by homologous recombination, which resulted in replacement of most of the E1 region. This recombinant virus was stable and replicated efficiently in the 293 cell line which complemented the deleted E1 functions. Human 293 cells infected with Ad5MVF synthesized an authentic MVF protein precursor (F0) which appeared to be cleaved efficiently to the F1 and F2 polypeptides. This recombinant F protein was glycosylated, transported to the cell surface, and found to be capable of inducing syncytia formation and hemolysis of monkey erythrocytes. The hemagglutinin protein (HA), provided by a coinfecting adenovirus, was not able to increase the biological activity of the F protein. Treatment of MV or Ad5MVF-infected cells with tunicamycin, an inhibitor of N-linked glycosylation, abolished processing of the F protein. This observation suggests that glycosylation might play an important role in cleavage-dependent activation of the precursor F0 protein or in its transport to the subcellular region where proteolytic cleavage occurs.

Adenoviruses, Human