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At least 613 records · Page 34Linked to original sources

Production of herbicide-tolerant zoysiagrass by Agrobacterium-mediated transformation.

Herbicide-resistant zoysiagrass (Zoysia japonica Steud.) has been developed by Agrobacterium-mediated transformation. A callus-type transformation system was established by optimizing several factors that affect the rate of transformation, including co-cultivation period and concentrations of 2,4-dichlorophenoxyacetic acid (2,4-D), CaCl2 and acetosyringone. Maximal GUS expression was observed when a Type 3 callus was co-cultivated on 2,4-D-free co-cultivation medium for 9 d. In addition, removal of calcium and addition of 50-100 mg/L acetosyringone during co-cultivation enhanced GUS expression. When this optimized protocol was applied to the transformation of the bialaphos resistance gene (bar), four plants per 700 mg of infected calluses survived on the selective medium. DNA gel-blot analysis showed that two copies of the transgene had been integrated. After application of 2 g/L bialaphos for a week the transgenic plants survived herbicide spraying, while untransformed zoysiagrasses and invading weeds died. The herbicide-tolerant zoysiagrass will permit more efficient weed control in this widely cultivated turf grass.

2,4-Dichlorophenoxyacetic Acid↗

Sequences and techniques in spinal MR imaging.

The optimal protocol in spinal MR imaging is not evident. Sagittal T2 weighted FSE, sagittal T1 weighted SE and axial T2 weighted FSE sequences are widely accepted for imaging patients with sciatica and/or lumbar pain. Because of the limited amount of CSF compared to the lumbar spine, the choice of sequences is much more complex in the study of the cervical spine. Sagittal T2 FSE, sagittal T1 SE and axial 2D GE images are suggested in routine cervical spine imaging. To assess the bone marrow, a STIR sequence can be added to this protocol on both lumbar and cervical spine examinations. The 2D GE produces an acceptable image quality to differentiate between the disc and bony protrusions. The use of FLAIR for imaging spinal cord lesions remains controversial in the literature.

Cervical Vertebrae↗

[Manual microdissection of defined cells and RNA extraction for gene expression analysis of esophageal carcinoma progress].

OBJECTIVES: To isolate cells of interest from heterogeneous tissue blocks to obtain accurate representations of molecular alterations acquired by neoplastic cells so as to meet the demands of further study on gene expression patterns of the esophageal carcinoma (EC) evolution. METHODS: Blocks of EC were stored at -70 degrees C as close as possible to the time of surgical resection. The tissue block was embedded in OCT and frozen sections of 35 microns in thickness were cut in a cryostat under strict RNAse-free conditions. Individual frozen sections were mounted on plain glass slides and 30-gauge needle attached to a 1 ml syringe was used to microdissect defined cells in the sections. The procured cells were used for total RNA extraction. RESULTS: An optimized protocol of manual microdissection was developed successfully whereby regions with an area as small as 1/25 mm2 could be accurately dissected. The RNA recovered from procured cells was of high quality suitable for subsequent applications of molecular analysis as assessed of 18S and 28S rRNAs by electrophoresis on agarose gel. CONCLUSIONS: It is believed that manual microdissection is capable to procure defined cell populations from complex primary tissues, thus allowing investigation of tissue-, cell-, and function-specific gene expression patterns. The technique is simple, easy to perform, versatile, and of particular usefulness when laser capture microdissection (LCM) is practically unavailable.

Cell Separation↗

Drug delivery optimization through Bayesian networks.

This paper describes how Bayesian Networks can be used in combination with compartmental models to plan Recombinant Human Erythropoietin (r-HuEPO) delivery in the treatment of anemia of chronic uremic patients. Past measurements of hematocrit or hemoglobin concentration in a patient during the therapy can be exploited to adjust the parameters of a compartmental model of the erythropoiesis. This adaptive process allows more accurate patient-specific predictions, and hence a more rational dosage planning. We describe a drug delivery optimization protocol, based on our approach. Some results obtained on real data are presented.

Anemia↗

[Genetic diagnosis of hepatitis B and C].

INTRODUCTION: Viral DNS and/or RNS contain the genetic information necessary for its own reproduction and the synthesis of viral proteins. During this decade the new molecular biological methods made it possible to identify the nucleotide sequences of virus undetectable with traditional methods and to investigate the genetic background of their highly variable viral pathogenecities. AIMS: In the present study the author introduces the gene diagnostic methods based on polymerase chain reaction, nucleotide sequence analysis and hybridization, which have been carried out to the adequate diagnosis, to the monitoring of the antiviral therapy of chronic viral hepatitis B and C. METHODS: Active infections are confirmed with full certainty by the positivity of hepatitis B virus or hepatitis C virus nucleic acid tests using polymerase chain reaction technique and also the successful antiviral therapy proved by their negative results. Monitoring of the nucleic acid levels in time can rationalize the type and dosage of antiviral therapy and the length of treatment. Investigations of the nucleotide structure of viral genome, their variants and mutants, the origin of virus infection and the predictive marker of the therapy (interferon, ribavirin, lamivudine) can be determined. CONCLUSION: The results of these examinations have greatly contributed to determining the epidemiology of viral hepatitis infections in Hungary, and today they provide indispensable help for the clinician so as to make antiviral therapy protocols optimal.

Antiviral Agents↗

Mathematical modeling and optimization of drug delivery from intratumorally injected microspheres.

PURPOSE: Paclitaxel is a highly promising phase-sensitive antitumor drug that could conceivably be improved by extended lower dosing as opposed to intermittent higher dosing. Although intratumoral delivery of paclitaxel to the whole tumor at different loads and rates has already been achieved, determining an optimal release mode of paclitaxel for tumor eradication remains difficult. This study set out to rationally design such an optimal microsphere release mode based on mathematical modeling. EXPERIMENTAL DESIGN: A computational reaction-diffusion framework was used to model drug release from intratumorally injected microspheres, drug transport and binding in tumor interstitum, and drug clearance by microvasculature and intracellular uptake and binding. RESULTS: Numerical simulations suggest that interstitial drug concentration is characterized by a fast spatially inhomogeneous rise phase, during which interstitial and intracellular binding sites are saturated, followed by a slow spatially homogeneous phase that is governed by the rate of drug release from microspheres. For zero-order drug release, the slow phase corresponds to a plateau drug concentration that is proportional to the ratio of the rate of blood clearance of drug to the rate of drug release from microspheres. Consequently, increasing the duration of intratumoral drug release extends the duration of cell exposure to the drug but lowers the plateau drug concentration. This tradeoff implies that intratumoral drug release can be designed to optimize tumor cell kill. Synthesizing our modeling predictions with published dose-response data, we propose an optimal protocol for the delivery of paclitaxel-loaded microspheres to small solid tumors.

Animals↗

[Application of methods of heat retrieval of antigens in paraffin sections of rat brain].

The aim of this study was to develop an optimal protocol of processing of rat brain sections permitting to minimize the shortcomings of the method of heat retrieval of antigens and preserving its high efficiency. The research was conducted using the methods of heat antigen retrieval, immunohistochemistry and light microscopy. It was shown that prolonged incubation in blocking solution, containing normal serum of an animal--source of secondary antibodies, eliminated false-positive reaction, demonstrated after heat antigen retrieval in paraffin sections of rat brain.

Animals↗

[Construction of a full-length cDNA library of Aegilops speltoides Tausch with optimized cap-trapper method].

To discover new genes in a throughput manner,the cap-trapper method published previously was optimized for raising the efficiency in the construction of full-length cDNA library. Using the optimized protocol,we successfully constructed a full-length cDNA library of Aegilops speltoides,which contained 3.0 x 10(6) clones and more than 99% of plaques were recombinant phages. Sequence analysis results indicated that more than 89% of the clones were full-length.

Base Sequence↗

Effect of centrifuge-induced artificial gravity and ergometric exercise on cardiovascular deconditioning, myatrophy, and osteoporosis induced by a -6 degrees head-down bedrest.

We have reported that centrifuge-induced artificial gravity with ergometric exercise could reduce developing cardiovascular deconditioning in humans. In the present study, we examined this load could prevent the myatrophy and osteoporosis induced by head-down bedrest for 20 days. Subjects were ten healthy male volunteers with informed consent. They were requested to lie down at -6 degrees for 20 days, and evaluation for cardiovascular deconditioning, myatrophy, and osteoporosis. As the result, high G-load with low intensity exercise suppressed the orthostatic intolerance and increase in serum osteoporotic marker, whereas low G-load with high intensity ergometric exercise maintained the maximal oxygen intake, heart dimension, and prevented myatrophy. The combination of high/low G-load with low/high intensity exercise will determine the optimal protocol for prevention of cardiovascular deconditioning, myatrophy, and osteoporosis.

Adult↗

Selective isolation of glycoproteins and glycopeptides for MALDI-TOF MS detection supported by magnetic particles.

Glycosylation is the most common form of posttranslational modification of proteins (50-80%). The isolation, discovery, and subsequent identification of glycosylated peptides and proteins is becoming more and more important in glycoproteomics and diagnosis. MALDI-TOF mass spectrometry is an ideal technique for identifying peptides and proteins and their corresponding modifications. The enrichment of glycosylated peptides and proteins from different sources can be attained by affinity chromatography supported by functionalized magnetic particles. Covalent coating of magnetic beads with Concanavalin A (ConA) and diboronic acid was performed by carbodiimide and poly-glutaraldehyde methods, respectively. The functionalized beads were employed to establish and optimize protocols for the binding and detection of glycosylated peptides and proteins with respect to an automated workflow and the subsequent detection and identification by MALDI-TOF mass spectrometry. For several model proteins, the capture and identification could be demonstrated by SDS-PAGE and MALDI-TOF mass spectrometry. According to the type of glycosylation (high man-nose, hybrid, or complex type) the different proteins were enriched by ConA or boronic acid-functionalized beads.

Animals↗

[Individualization of immunosuppressive treatment in patients with HCV infection after transplantation].

The number of patients with HCV infection is increasing in Georgia. High number of infection is noticeable in patients on hemodialysis. 60-70% of them needs renal transplantation. This makes the problem more acute especially among the organ recipients with HCV infection, who are receiving immunosuppressive treatment. The aim of the survey was to work out optimal protocol of immunosuppressive treatment for patients after renal transplantation. There were clinically observed 39 patients after renal transplantation. They were divided into four groups according to the clinical data (serology, replication of HCV and different schemes of immunosuppressive treatment). It was shown that immunosuppressive treatment carried out among patients with HCV infection after transplantation is effective and safe. Consideration of the data leads us to the statement that there is no risk of losing transplanted organ in case of individualization and minimization of immunosuppressive treatment. Periodic control of blood HCV RNA is reasonable during the pre and post operation period.

Adult↗

[Immunocytochemical demonstration of brain neurons using NeuN as a selective marker].

The aim of the present study was to find optimal protocol of immunocytochemical reaction to NeuN nuclear protein for light and laser confocal microscopy, which would exclude the antigen heat unmasking procedure that results in deteriorating the state of the tissue and requires expensive adhesive-coated slides. Best preservation of the antigen was found to be provided by fixation in zinc-formalin and Bouin's fixative (for a period of less than 24 hrs). Two protocols allowing to avoid antigen heat unmasking procedure during demonstration of the NeuN neuronal label in paraffin sections by the light and confocal microscopy are presented.

Animals↗

Expression and sequences of genes encoding glutamate receptors and transporters in primate retina determined using 3'-end amplification polymerase chain reaction.

PURPOSE: Our long-term goal is to compare how expression of glutamate receptor and non-vesicular transporter subunits differs between single neurons in the primate retina. Here we set out to ascertain general expression in the retina of Macaca fascicularis using a robust technique suitable for both levels of analysis. We constructed full-complement cDNAs from whole retina RNA using a protocol optimized for detection of even low-abundance transcripts and for transcripts of various lengths. We probed these libraries for expression of genes encoding the AMPA- (GluR1-4) and kainate-sensitive (GluR5-7, KA1-2) ionotropic glutamate receptors, the metabotropic glutamate receptors (mGluR1-8), and five non-vesicular glutamate transporters (EAAT1-5) in the macaque retina and brain and determined large portions of coding sequences for each. We also asked whether each gene can be detected in cDNA generated from a limited amount of RNA extracted from an aldehyde-fixed retinal slice, a technique useful for probing gene expression in tissue used for histological studies. METHODS: We constructed full-length cDNA from RNA harvested from the macaque retina using a modified version of the 3'-end amplification (TPEA) technique of Dixon et al. With this technique, the 3' region is amplified arbitrarily using multiple primers to produce amplified cDNA containing as diverse and complete sample of genes as possible. We probed the cDNA for expression of glutamate receptors and non-vesicular transporters using gene-specific RT-PCR and assembled sequences from the reaction products using a series of overlapping primer pairs. We also used TPEA to compare expression in a small amount of RNA extracted from a fixed retinal slice. RESULTS: Macaque retinal cDNA created using TPEA contains a high abundance of transcripts of various lengths. Gene-specific PCR using primers designed against human sequences indicates expression for all GluR, mGluR, and non-vesicular transporter subunits for which we probed. Expression patterns were similar between two different macaque retinas, but different in brain. Several differences also exist between macaque and human brain. For some subunits, this is the first demonstration of expression in the macaque retina. The expression pattern obtained probing cDNA libraries generated from fixed tissue RNA with a different primer set was similar to that for fresh tissue. We sequenced between 1865 (mGluR8a) and 3697 (mGluR1) total nucleotides for each macaque gene and obtained complete coding sequences for GluR1-7, mGluR3 and mGluR4. A comparison with the corresponding human sequences reveal that the coding region of macaque GluR6 demonstrates the highest homology with only 26 nucleotide substitutions (99% homology), while mGluR4 demonstrates the lowest with 68 substitutions (97.5%). CONCLUSIONS: Neural tissue cDNA created using TPEA contains diverse transcripts of varying size, abundance, and homology. We established using TPEA the expression of all nine AMPA- and kainate-sensitive GluRs, all eight mGluRs and all five non-vesicular glutamate transporters and found that expression differs between macaque retina, macaque brain and human brain. The nucleotide sequences for the coding regions differed moderately between the human and macaque genes. We also found a similar expression pattern in a smaller amount of RNA extracted from a fixed retinal slice. Thus, this technique could be useful for comparing gene expression in cells extracted from fixed tissue pre-labeled using specific markers.

3' Flanking Region↗

Psoralen plus ultraviolet A in the prophylactic treatment of benign summer light eruption.

We report the results of a French multicentre study to evaluate the efficiency of psoralen plus ultraviolet A (PUVA) therapy in the prophylactic treatment of benign summer light eruption (BSLE) and to establish the optimal protocol of radiation. Nine photobiology centres took part in this study; 83 patients (76 of them women) were evaluated. The radiation protocols were as follows: oral psoralen (8-methoxypsoralen; 0.6 mg/kg) was taken at each session; the starting dose of UVA radiation was determined according to skin type, with increments of 0.5 J/cm2 every 2 sessions. The subjects were randomized to receive 10-20 sessions 3 times per week. PUVA therapy was very effective: 68 patients (82%) reported total protection from BSLE. Four patients (5%) showed progress. Only 13% showed no improvement. The satisfactory results were not correlated with either the number of sessions or the J/cm2 of UVA. The intensity of tanning after the PUVA sessions did not appear to predict cure. Thirty-six percent of the patients had adverse reactions to treatment, including erythema, pruritus and triggering of BSLE. However, these effects only required the treatment to be stopped in 2% of the cases (for severe pruritus). The results in the various centres were similar.

Adolescent↗

Gene transfer into normal human hematopoietic cells using in vitro and in vivo assays.

The ability to transfer new genetic material into human hematopoietic cells provides the foundation for characterizing the organization and developmental program of human hematopoietic stem cells. It also provides a valuable model in which to test gene transfer and long-term expression in human hematopoietic cells as a prelude to human gene therapy. At the present time such studies are limited by the absence of in vivo assays for human stem cells, although recent descriptions of the engraftment of human hematopoietic cells in immune-deficient mice may provide the basis for such an assay. This study focuses on the establishment of conditions required for high efficiency retrovirus-mediated gene transfer into human hematopoietic progenitors that can be assayed in vitro in short-term colony assays and in vivo in immune-deficient mice. Here we report that a 24-hour preincubation of human bone marrow in 5637-conditioned medium, before infection, increases gene transfer efficiency into in vitro colony-forming cells by sixfold; interleukin-6 (IL-6) and leukemia inhibitory factor (LIF) provide the same magnitude increase as 5637-conditioned medium. In contrast, incubation in recombinant growth factors IL-1, IL-3, and granulocyte-macrophage colony-stimulating factor increases gene transfer efficiency by 1.5- to 3-fold. Furthermore, preselection in high concentrations of G418 results in a population of cells significantly enriched for G418-resistant progenitors (up to 100%). These results, obtained using detailed survival curves based on colony formation in G418, have been substantiated by directly detecting the neo gene in individual colonies using the polymerase chain reaction. Using these optimized protocols, human bone marrow cells were genetically manipulated with a neo retrovirus vector and transplanted into immune-deficient bg/nu/xid mice. At 1 month and 4 months after the transplant, the hematopoietic tissues of these animals remained engrafted with genetically manipulated human cells. More importantly, G418-resistant progenitors that contained the neo gene were recovered from the bone marrow and spleen of engrafted animals after 4 months. These experiments establish the feasibility of characterizing human stem cells using the unique retrovirus integration site as a clonal marker, similar to techniques developed to elucidate the murine stem cell hierarchy.

Adult↗

The value of multiple preparations in the diagnosis of malignant pleural effusions. A cost-benefit analysis.

A cost-benefit analysis of five techniques employed in processing 108 malignant pleural effusions for cytopathologic examination was performed. Ethanol-fixed, Papanicolaou-stained smears were positive in 68% of the effusions, air-dried Diff-Quik-stained smears in 66%, Cytospins in 83%, cell blocks in 85% and Millipore filters in 85%. Examination of one air-dried smear and one ethanol-fixed smear yielded a diagnostic sensitivity of 82%. Using a combination of two smears and one of three concentrating techniques (Cytospin, cell block or MIllipore filter) would have provided a diagnosis in over 90% of the effusions. The use of four or more preparations provided more sensitivity than did three preparations and decreased the likelihood that a malignant diagnosis would be based on the findings in only one preparation. The costs related to disposable materials and the College of American Pathologists (CAP) work load estimates for specimen preparation, staining and screening were compared. These data may be useful in developing optimal protocols for pleural effusion preparation in laboratories with specific work load requirements and limited resources.

Cost-Benefit Analysis↗

A statistical analysis of the third UKEMS collaborative trial.

In the third UKEMS collaborative trial, nine laboratories optimized protocols for a variety of mammalian cell mutagenicity assays and used these protocols to test three reference mutagens. Data from the trial have been deposited with Mutagenesis under the scheme of the journal for a database of results of extensive mutagenicity testing programmes. A preliminary examination of the data using procedures advocated by the UKEMS guidelines on statistical evaluation of mutagenicity test data confirms that the assays are capable of giving clear, convincing data, in a form amenable to statistical analysis. The utility of the methods of analysis proposed by both the plate and fluctuation test statistical working groups was confirmed. In almost all cases variation between plates or trays from the same replicate treatment was little greater than Poisson or binomial, whereas variation between replicate treatments was substantially larger, confirming the recommendation of both groups for true independent replicates of each treatment. In six out of nine laboratories part of this variation between replicates was consistent for both viability and mutation, which might cause the guide-lines procedure for fluctuation test data to underestimate significance. In about half the cases examined, variation between experiments was significantly greater than variation between replicates within an experiment, which may create problems of interpretation. Supplementary tests, using the statistical package GLIM, suggested that although factors such as choice of expression time, level of S9, zero dose cloning efficiency or spontaneous mutation frequency might have an effect, they would not have been likely to interfere with detection of a mutagenic effect in the present data set.

Analysis of Variance↗

OKT3 monoclonal antibody given for ten versus fourteen days as immunosuppressive prophylaxis in heart transplantation.

We have previously reported that murine antihuman monoclonal antibody OKT3 (Orthoclone OKT3) given for 14 days after heart transplantation is effective as immunosuppressive prophylaxis. The optimal protocol for OKT3 prophylaxis in heart transplantation is unknown, particularly the duration of OKT3 therapy. We conducted a consecutively allocated overlapping 6-month study with 68 heart transplant patients, comparing 14-day OKT3 (n = 34) to 10-day OKT3 treatment (n = 34). Both protocols included OKT3 given beginning 24 to 48 hours after operation, cyclosporine beginning on postoperative day 3, low-dosage steroids and azathioprine to prevent antibody production to OKT3, and a steroid pulse plus randomization to plus or minus vincristine after stopping OKT3. Pretransplant characteristics including age, sex, cause of congestive heart failure, and absence of positive pretransplant crossmatch were similar between the two groups. Although the infection rate was not significantly different between the two groups and mortality (one patient in each group) did not differ, 14-day prophylaxis decreased the number of treated rejection episodes per patient for the 6-month study (1.59 +/- 0.18 versus 2.24 +/- 0.19, p = 0.016). A 14-day course of OKT3 also decreased the risk of rejection during the 6-month follow-up period (p less than 0.05). In addition to having a decreased number of rejection episodes, patients in the 14-day protocol were also more likely to be withdrawn from maintenance steroids (79% versus 53%, p = 0.02). In conclusion, a measurable dose response efficacy can be demonstrated for 14-day versus 10-day OKT3 prophylaxis.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗