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At least 91 records · Page 5Linked to original sources

Isolation of RNA from tumor samples: single-step guanidinium acid-phenol method.

The guanidinium acid-phenol method of RNA extraction is relatively fast (4 h) and is useful for the processing of large numbers of samples, without the need for ultracentrifugation. This protocol produces total RNA that includes ribosomal, transfer, and messenger RNA. This high-quality RNA is suitable for Northern blot analysis, dot-blot hybridization, poly (A) RNA selection, in vitro translation, cDNA library construction, reverse transcriptase-polymerase chain reaction, ribonuclease protection assay, and primer extension experiments.

Guanidine↗

Development and validation of a method for using breast core needle biopsies for gene expression microarray analyses.

PURPOSE: Gene expression microarray technologies have the potential to define molecular profiles that may identify specific phenotypes(diagnosis), establish a patient's expected clinical outcome (prognosis), and indicate the likelihood of a beneficial effect of a specific therapy (prediction). We wished to develop optimal tissue acquisition, processing, and analysis procedures for exploring the gene expression profiles of breast core needle biopsies representing cancer and noncancer tissues. EXPERIMENTAL DESIGN: Human breast cancer xenografts were used to evaluate several processing methods for prospectively collecting adequate amounts of high-quality RNA for gene expression microarray studies. Samples were assessed for the preservation of tissue architecture and the quality and quantity of RNA recovered. An optimized protocol was applied to a small study of core needle breast biopsies from patients, in which we compared the molecular profiles from cancer with those from noncancer biopsies. Gene expression data were obtained using Research Genetics, Inc. Named Genes cDNA microarrays. Data were visualized using simple hierarchical clustering and a novel principal component analysis-based multidimensional scaling. Data dimensionality was reduced by simple statistical approaches. Predictive neural networks were built using a multilayer perceptron and evaluated in an independent data set from snap-frozen mastectomy specimens. RESULTS: Processing tissue through RNALater preserves tissue architecture when biopsies are washed for 5 min on ice with ice-cold PBS before histopathological analysis. Cell margins are clear, tissue folding and fragmentation are not observed, and integrity of the cores is maintained, allowing optimal pathological interpretation and preservation of important diagnostic information. Adequate concentrations of high-quality RNA are recovered; 51 of 55 biopsies produced a median of 1.34 microg of total RNA (range, 100 ng to 12.60 microg). Snap-freezing or the use of RNALater does not affect RNA recovery or the molecular profiles obtained from biopsies. The neural network predictors accurately discriminate between predominantly cancer and noncancer breast biopsies. CONCLUSIONS: The approaches generated in these studies provide a simple, safe, and effective method for prospectively acquiring and processing breast core needle biopsies for gene expression studies. Gene expression data from these studies can be used to build accurate predictive models that separate different molecular profiles. The data establish the use and effectiveness of these approaches for future prospective studies.

Animals↗

Utility of lab-on-a-chip technology for high-throughput nucleic acid and protein analysis.

On-chip electrophoresis can provide size separations of nucleic acids and proteins similar to more traditional slab gel electrophoresis. Lab-on-a-chip (LoaC) systems utilize on-chip electrophoresis in conjunction with sizing calibration, sensitive detection schemes, and sophisticated data analysis to achieve rapid analysis times (<120 s). This work describes the utility of LoaC systems to enable and augment systems biology investigations. RNA quality, as assessed by an RNA integrity number score, is compared to existing quality control (QC) measurements. High-throughput DNA analysis of multiplex PCR samples is used to stratify gene sets for disease discovery. Finally, the applicability of a high-throughput LoaC system for assessing protein purification is demonstrated. The improvements in workflow processes, speed of analysis, data accuracy and reproducibility, and automated data analysis are illustrated.

DNA↗

A rapid novel method for the extraction of RNA from wild-type and genetically modified kanamycin resistant mycobacteria.

RNA extraction from mycobacteria can be a difficult and time consuming process due to their unique mycolic acid cell wall composition and the short half life of RNA. Rapid cell wall disruption is essential to isolate intact high quality RNA. Genetically modified Mycobacteria smegmatis resistant to kanamycin demonstrate an altered cell wall composition which impairs the quality of RNA obtained from these mycobacteria. In this report we describe a method of RNA extraction using the detergent Catrimox-14 resulting in high yields of pure, undegraded RNA in less than 1 h. Yields of 25-30 microg RNA per 1x10(9) cells were consistently obtained from both wild-type and genetically modified M. smegmatis. The integrity of this RNA is demonstrated by gel electrophoresis, Northern blot and cDNA analysis.

Blotting, Northern↗

Preparation of RNA from unspheroplasted yeast cells (Saccharomyces cerevisiae).

High-quality RNA can be prepared from up to 100-ml culture volumes of unspheroplasted yeast cells (Saccharomyces cerevisiae) via homogenization in high-temperature phenol:chloroform mixtures. The yield of RNA from this preparative method is equivalent to those of other methods requiring preliminary spheroplasting of cells. Quality and quantity of recovered RNA are independent of yeast strain and cell growth medium used, and the method works equally well on cells in either log phase growth or in stationary phase. Mitochondrial RNAs recovered as part of whole cell RNA mixtures may be slightly degraded. Analyses of individual transcripts in the recovered RNA mixtures suggest that there is no selection for or against any specific single transcript or any group of transcripts when RNA is prepared by this method.

Blotting, Northern↗

Assessing gene expression in lung subcompartments utilizing in situ RNA preservation.

The mechanisms of toxicant-mediated lung injury and repair are influenced by the considerable spatial heterogeneity that exists within the conducting airways of the lungs. As a result of this heterogeneity, significant differences and similarities in gene expression are observed throughout lung subcompartments. RNA-based technologies such as real-time reverse transcription polymerase chain reaction (real-time RT-PCR) and cDNA microarray analysis of gene expression provide valuable clues to understanding the mechanisms of toxicant-induced injury. Isolating RNA from lung subcompartments has previously involved considerable time and labor-intensive processes that limit the number of animals that could be processed in a day. The aim of this study was to determine if intact, high-quality RNA could be preserved in situ over a period of time to delay the need to immediately perform site-specific lung subcompartment microdissections and RNA isolations. Two hours after 1-nitronaphthalene treatment, rat lungs were inflated with and stored in RNA preservation solution and stored at 4 degrees C for 7 days. RNA was isolated from the lung subcompartments isolated by microdissection. After 7 days of storage, the RNA was intact, of high quality, and could be used for real-time RT-PCR to examine heterogeneous gene expression in the lung subcompartments. In summary, this simplified technique of in situ RNA preservation and site-specific lung subcompartment microdissection allows the isolation of intact, high-quality RNA that may be used with molecular RNA-based technologies that will significantly accelerate our understanding of pulmonary injury and repair mechanisms.

Animals↗

The RIN: an RNA integrity number for assigning integrity values to RNA measurements.

BACKGROUND: The integrity of RNA molecules is of paramount importance for experiments that try to reflect the snapshot of gene expression at the moment of RNA extraction. Until recently, there has been no reliable standard for estimating the integrity of RNA samples and the ratio of 28S:18S ribosomal RNA, the common measure for this purpose, has been shown to be inconsistent. The advent of microcapillary electrophoretic RNA separation provides the basis for an automated high-throughput approach, in order to estimate the integrity of RNA samples in an unambiguous way. METHODS: A method is introduced that automatically selects features from signal measurements and constructs regression models based on a Bayesian learning technique. Feature spaces of different dimensionality are compared in the Bayesian framework, which allows selecting a final feature combination corresponding to models with high posterior probability. RESULTS: This approach is applied to a large collection of electrophoretic RNA measurements recorded with an Agilent 2100 bioanalyzer to extract an algorithm that describes RNA integrity. The resulting algorithm is a user-independent, automated and reliable procedure for standardization of RNA quality control that allows the calculation of an RNA integrity number (RIN). CONCLUSION: Our results show the importance of taking characteristics of several regions of the recorded electropherogram into account in order to get a robust and reliable prediction of RNA integrity, especially if compared to traditional methods.

Algorithms↗

Human postmortem tissue: what quality markers matter?

Postmortem human brain tissue is used for the study of many different brain diseases. A key factor in conducting postmortem research is the quality of the tissue. Unlike animal tissue, whose condition at death can be controlled and influenced, human tissue can only be collected naturalistically. This introduces potential confounds, based both on pre- and postmortem conditions, that may influence the quality of tissue and its ability to yield accurate results. The traditionally recognized confounds that reduce tissue quality are agonal factors (e.g., coma, hypoxia, hyperpyrexia at the time of death), and long postmortem interval (PMI). We measured tissue quality parameters in over 100 postmortem cases collected from different sources and correlated them with RNA quality (as indicated by the RNA Integrity Number (RIN)) and with protein quality (as measured by the level of representative proteins). Our results show that the most sensible indicator of tissue quality is RIN and that there is a good correlation between RIN and the pH. No correlation developed between protein levels and the aforementioned factors. Moreover, even when RNA was degraded, the protein levels remained stable. However, these correlations did not prove true under all circumstances (e.g., thawed tissue, surgical tissue), that yielded unexpected quality indicators. These data also suggest that cases whose source was a Medical Examiner's office represent high tissue quality.

Adult↗

Reproducibility, fidelity, and discriminant validity of mRNA amplification for microarray analysis from primary hematopoietic cells.

Analysis of gene expression in clinical samples poses special challenges, including limited RNA availability and poor RNA quality. Quantitative information regarding reliability of RNA amplification methodologies applied to primary cells and representativeness of resulting gene expression profiles is limited. We evaluated four protocols for RNA amplification from peripheral blood mononuclear cells. Results obtained with 100 ng or 10 ng of RNA amplified using two rounds of cDNA synthesis and in vitro transcription were compared with control 2.5-microg RNA samples processed using a single round of in vitro transcription. Samples were hybridized to Affymetrix HG-U133A arrays. Considerable differences in results were obtained with different protocols. The optimal protocol resulted in highly reproducible gene expression profiles from amplified samples (r = 0.98) and good correlation between amplified and control samples (r = 0.94). Using the optimal protocol dissimilarities of gene expression between mononuclear cells from a normal individual and a patient with myelodysplastic syndrome were primarily maintained after amplification compared with controls. We conclude that small variations in methodology introduce considerable distortion of gene expression profiles obtained after RNA amplification from clinical samples and too strong a focus on a very small number of genes picked from an array analysis could be unduly influenced by seemingly acceptable methodologies. However, it is possible to obtain reproducible and representative results using optimized protocols.

Gene Expression Profiling↗

Impact of pre-analytical handling on bone marrow mRNA gene expression.

Large clinical trials on leukaemia, require the transport of bone marrow (BM) from participating clinics to central diagnostic laboratories. We have investigated the impact of RNA extraction protocols and time delays between sample aspiration and RNA extraction on RNA quality and gene expression profiles. Intact RNA can be extracted from BM samples stored at room temperature for up to 48 h. Gene expression analyses using Affymetrix U95Av2 GeneChips and a custom-designed cDNA array in parallel showed that even short-term storage of BM has dramatic effects on mRNA expression of individual transcripts. Many probe sets/genes showed either reproducible deregulation (18.8%, analysis of variance <0.05), or inconsistent expression that differed from patient to patient (38.4%). Moderate alterations were observed in 42.8% genes, with a maximum fold change <2.0 in all experiments and at all time points. These profound effects complicate the use of unstabilized, shipped BM samples for gene expression analyses. The comparison of a variety of RNA stabilization reagents (e.g. PAXgene) resulted in partial conservation of the mRNA expression patterns. Immediate density centrifugation or erythrocyte lysis and freezing at -80 degrees C represent simple procedures that reliably preserved mRNA gene expression patterns in BM.

Bone Marrow↗

Randomized double blind placebo-controlled trial of a Chinese herbal therapy (CH100) in chronic hepatitis C.

BACKGROUND AND AIM: Hepatitis C virus (HCV) is a common infection with serious health consequences. Alternative therapies are often used for hepatitis C. The aim of the present study was to examine CH100, a Chinese herbal remedy, for efficacy in therapy of chronic HCV. METHODS: A randomized double blind placebo-controlled study in a tertiary outpatient clinic of CH100 over 24 weeks with 24 weeks follow-up in patients with chronic HCV infection. Alanine aminotransferase (ALT), HCV-RNA, quality of life (by SF-36) and side-effects were examined regularly. Ninety-seven patients were enrolled of which 91 were suitable for analysis. RESULTS: No significant differences were observed between patients receiving CH100 (n = 61) or placebo (n = 30) at baseline or during follow-up in either ALT or viral titer. However, patients receiving CH100 had a fall in mean ALT over time (P = 0.05 at week 4, P = 0.26 at week 12, and P = 0.04 at week 24), with reversion to baseline during post-treatment follow up. No significant side-effects were observed although mild complaints were common. Quality of life scores improved in both groups with time, and bodily pain significantly improved in CH100 recipients. CONCLUSION: CH100 appears to be no better than placebo in the treatment of patients with chronic HCV infection.

Adult↗

Determinants of nucleic acid quality in formalin-fixed paraffin-embedded bladder urothelial carcinoma specimens: effects of specimen type, fixation conditions, and storage time.

Formalin-fixed paraffin-embedded (FFPE) tissue is the principal substrate for cancer genomic profiling, yet pre-analytical factors affect nucleic acid quality. In our workflow, transurethral resection (TUR) specimens of bladder urothelial carcinoma are fixed promptly but exposed to electrocautery, whereas robot-assisted radical cystectomy specimens are refrigerated overnight before fixation; we compared nucleic acid quality between these specimen types. We analyzed 56 FFPE primary bladder urothelial carcinoma specimens (33 TUR, 23 cystectomy). DNA quality was assessed by the DNA Integrity Number (DIN) and short-to-long cycle threshold ratio (S/L Ct ratio), and RNA quality by the RNA Integrity Number (RIN) and percentage of RNA fragments &#x2265;200 nucleotides (DV200), with group comparisons, Spearman correlations, and multivariable regression (specimen type, fixation duration, storage time). The median DIN (4.4 vs. 3.8, p&#xa0;=&#xa0;0.004) and S/L Ct ratio (0.943 vs. 0.894, p&#xa0;<&#xa0;0.001) were higher in TUR than cystectomy specimens; the RIN was also higher (1.9 vs. 1.7, p&#xa0;=&#xa0;0.040), though low in both groups, and DV200 did not differ (50.3% vs. 47.7%, p&#xa0;=&#xa0;0.934). In multivariable analysis, TUR specimen type independently predicted higher DIN (&#x3b2;&#xa0;=&#xa0;+0.460, p&#xa0;=&#xa0;0.040) and S/L Ct ratio (&#x3b2;&#xa0;=&#xa0;+0.442, p&#xa0;=&#xa0;0.009), whereas longer storage time independently decreased the S/L Ct ratio (&#x3b2;&#xa0;=&#xa0;-0.513, p&#xa0;<&#xa0;0.001) and RIN (&#x3b2;&#xa0;=&#xa0;-0.352, p&#xa0;=&#xa0;0.010). In our institutional workflow, TUR specimens showed higher DNA quality metrics than robot-assisted radical cystectomy specimens subjected to overnight refrigerated pre-fixation delay, whereas this workflow-associated advantage did not clearly extend to DV200-defined RNA fragment-length quality. Storage time was associated with selected aspects of nucleic acid deterioration.

Humans↗

Evaluation of three rapid RNA extraction reagents: relevance for use in RT-PCR's and measurement of low level gene expression in clinical samples.

Although peripheral blood and bone marrow are usually readily available from patients, present techniques of RNA extraction are tedious, require millilitres of starting material and removal of red blood cells before RNA purification. Further, successful reverse transcriptase polymerase chain reaction (RT-PCR) amplification requires the removal of haemoglobin derivatives which interfere with the PCR process. Recently, one step rapid use reagents have become available, claiming to be useful for obtaining high quality RNA from microlitre quantities of whole blood drawn directly from the patient. Their use to date in clinical samples appears limited with little information in the literature documented. In an attempt to overcome this, we tested the Trizol-LS, RNA-STAT-50 and Ultraspec-3 reagents upon a statistically significant number of clinical isolates of fresh and cryopreserved peripheral blood, bone marrow, blood apheresis products and a breast cancer cell line (MCF7) in order to evaluate whether these methods could be applied to routine laboratory use in an RT-PCR method capable of detecting rare gene expression. Our findings showed that there was some variation in the quality of RNA extracted which was indicated by absorbance spectrophotometry at 260 and 280 nm. 1% agarose gel electrophoresis showed that each of these methods could yield total RNA capable of generating the signature 18S and 28S rRNA bands. Using the Kruskal-Wallis non-parametric anova test combined with Dunn's multiple comparison test, the only statistically significant difference (p<0.05) indicated that Trizol-LS was more reliable than RNA-STAT-50-LS and Ultraspec-3 at extracting RNA from fresh peripheral blood. RNA extracted with the Trizol-LS and RNA STAT-50 reagents was successfully amplified in a multiplex RT-PCR reaction for detection of the multi-drug resistance related genes MDR1, the multi-drug resistance related protein (MRP) and topoisomerase IIalpha. Low level MDR1 gene expression could be detected in frozen whole blood. However, PCR products were only seen when the anti-coagulant heparin was removed from all samples prior to cDNA production. RT-PCR amplification was not 100% successful with RNA extracted with Ultraspec-3 reagent. In conclusion, we found that the RNA extracted from whole blood with the Trizol-LS and the RNA-STAT-50 are suitable for use in clinically relevant molecular biology protocols that analyze rare event genes without further purification. Our results indicated that the Trizol-LS reagent was generally more consistent in obtaining a pure and sufficient quantity of RNA from patient material as shown by the mean result of purity and quantity in comparison to either Ultraspec-3 or RNA-STAT-50-LS reagents. Ultraspec-3 is not easily suited for direct use with whole blood products.

Evaluation Studies as Topic↗

Isolation of RNA from blackcurrant (Ribes nigrum L.) fruit.

Extraction of high-quality RNA from blackcurrant fruit has hitherto proved difficult, probably owing to high levels of phenolic and polysaccharide components in the berries. The procedure described here is a modification of one described for grape berries, and yields RNA suitable for in vitro translations, RNA blot analysis, and cDNA library construction.

Fruit↗

The influence of photoperiodic growth condition on isolation of RNA from strawberry (Fragaria x ananassa Duch.) tissue.

Purification of high-quality RNA from different strawberry tissues is often affected by the presence of high levels of contamination by polysaccharides and phenolic compounds. With the protocol detailed here we describe for the first time total RNA purification from petiole tissue. Treating the plants used as source of material with short-daylight regime prior the extraction we are able to obtain RNA suitable for further applications such as in vitro translation, RT-PCR, and RNA blot analysis. The yield of total RNA extraction is significantly enhanced when tissue from plants grown under short-day photoperiodic condition is used compared with that taken from plants grown under long day photoperiod.

Electrophoresis, Agar Gel↗

Efficient cloning of full-length cDNAs based on cDNA size fractionation.

The ability to generate and obtain full-length (FL) cDNAs is of critical importance to the field of genomics. Most cDNAs in a traditional cDNA library lack the initiating 5' ATG, making it difficult to obtain a FL clone. We report here on an improved protocol for the preparation of FL enriched cDNA libraries. We demonstrate that if good quality RNA is used in the cDNA synthesis, high-quality, FL cDNA can be generated for messages upward of 7 kb. In addition, we demonstrate the utility of size fractionation as a means to produce libraries containing a high percentage of initiating 5' ATG containing clones with insert sizes greater than 4 kb. The method is simple, cost efficient, and can be performed in most laboratories equipped to perform molecular biology. Lastly, the novel methodologies used in the analysis of the cDNA and library should prove useful to others working to create high-quality cDNA libraries.

Animals↗

Gene expression profiling of primary tumor cell populations using laser capture microdissection, RNA transcript amplification, and GeneChip microarrays.

Gene expression profiling from microdissected cell populations is a powerful approach to explore molecular processes involved in development and solid tumor biology. In this chapter, we detail robust and validated methods for tissue preparation and isolation of high-quality RNA from microdissected cell populations. A protocol is also provided for linear transcript amplification using as little as 10 ng of total RNA to produce labeled cRNA targets for hybridization to GeneChip high-density oligonucleotide microarrays. Particular emphasis is placed on troubleshooting each technical step in the protocol and measures of quality assurance for both RNA isolation and resulting microarray data.

Animals↗