Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “FINGERPRINTS”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 307 records · Page 17Linked to original sources

Analysis of latent fingerprint deposits by infrared microspectroscopy.

We report the use of infrared (IR) microspectroscopy for the analysis of fingerprint residues. The advantage of using an IR microscope lies in the ability to visualize and obtain spectra of individual particles and droplets that make up fingerprint ridge deposits at a spatial resolution of approximately 10 microm. Our initial results suggest that infrared microspectroscopy in reflection-absorption mode provides reproducible spectral analysis of fingerprint residue. Since infrared microspectroscopy is nondestructive to the sample, we will be able to study the changes in fingerprint ridge deposits as a function of time. The method holds promise for probing the difference between latent fingerprints of adults and children.

Adult↗

Prediction of liver fibrosis and cirrhosis in chronic hepatitis B infection by serum proteomic fingerprinting: a pilot study.

BACKGROUND: Most noninvasive predictive models of liver fibrosis are complicated and have suboptimal sensitivity. This study was designed to identify serum proteomic signatures associated with liver fibrosis and to develop a proteome-based fingerprinting model for prediction of liver fibrosis. METHODS: Serum proteins from 46 patients with chronic hepatitis B (CHB) were profiled quantitatively on surface-enhanced laser desorption/ionization (SELDI) ProteinChip arrays. The identified liver fibrosis-associated proteomic fingerprint was used to construct an artificial neural network (ANN) model that produced a fibrosis index with a range of 0-6. The clinical value of this index was evaluated by leave-one-out cross-validation. RESULTS: Thirty SELDI proteomic features were significantly associated with the degree of fibrosis. Cross-validation showed that the ANN fibrosis indices derived from the proteomic fingerprint strongly correlated with Ishak scores (r = 0.831) and were significantly different among stages of fibrosis. ROC curve areas in predicting significant fibrosis (Ishak score >or=3) and cirrhosis (Ishak score >or=5) were 0.906 and 0.921, respectively. At 89% specificity, the sensitivity of the ANN fibrosis index in predicting fibrosis was 89%. The sensitivity for prediction increased with degree of fibrosis, achieving 100% for patients with Ishak scores >4. The accuracy for prediction of cirrhosis was also 89%. Inclusion of International Normalized Ratio, total protein, bilirubin, alanine transaminase, and hemoglobin in the ANN model improved the predictive power, giving accuracies >90% for the prediction of fibrosis and cirrhosis. CONCLUSIONS: A unique serum proteomic fingerprint is present in the sera of patients with fibrosis. An ANN fibrosis index derived from this fingerprint could differentiate between different stages of fibrosis and predict fibrosis and cirrhosis in CHB infection.

Blood Proteins↗

Development of latent fingerprints on metallic surfaces using electropolymerization processes.

We propose a new process for developing latent fingerprints on metal items, applicable to unfired weapons made of Ergal in particular. The method is based on the presence of fatty acids that are contained in fingerprints and act as an insulator on the surface where fingerprints are to be developed. The process of polymerization occurs on the metal portions left untouched by finger contact. Hence, the developing process results as a negative pattern of the original fingerprint. The reaction consists in the electropolymerization of pyrrole and substituted porphyrins, i.e., tetra (o-aminophenyl) porphyrine: radical-cations are generated on superficial nucleation sites by oxidation of monomer, close to the electrode surface; subsequently, the radical species react with the neutral monomer, which begins to diffuse to the electrode. We have also studied the polymer's morphology by means of SEM and AFM, in order to find a correlation between the reagent to be used and the quality of the enhancement process. These are only preliminary results; however, they show that the suggested method is a new way to increase the rate of success in developing latent fingerprints on metal surfaces. In this regard, it may be considered complementary to other conventional procedures, due to the low costs of the instruments and reagents, and the rapidity and simplicity of the treatment.

Dermatoglyphics↗

[Vectorial angle method for evaluating the similarity between two chromatographic fingerprints of Chinese herb].

AIM: To evaluate the similarity between two chromatographic fingerprints automatically with computer. METHODS: Chromatogram can be treated as vector of hyperspace, and the similarity between them can be counted according to vectorial angle formula. This process was performed with software written in Visual Basic 6.0. The two main functions of this software are automatic peak tracking in two fingerprints under the same analytic condition and computing the similarity automatically. RESULTS: The HPLC fingerprints of eleven kinds of Evodia rutaecarpa (Juss.) Benth (a traditional Chinese herb) from different sources were obtained and the similarities were calculated with this software. This method was shown to be a good way to evaluate the similarity between two fingerprints. A sample washed seven times with hot water can be clearly discriminated from other samples of Evodia rutaecarpa (Juss.) Benth with similar results. CONCLUSION: This method is a good way to evaluate the similarity between two fingerprints and is helpful in quality control of traditional Chinese medicine.

Evodia↗

Systematic study on STR profiling on blood and saliva traces after visualization of fingerprint marks.

This paper describes a systematic study of the influence of optical, physical, and chemical methods used for fingerprint enhancement on subsequent DNA analysis of biological stains. Latent fingerprints as well as fingerprints in contact with blood and saliva on different surfaces were treated with dactyloscopic methods. As a general finding, subsequent STR profiling of the blood/saliva traces led to good results after all the enhancement methods included in this study. Concerning blood enhancement procedures, the airbrush technique showed deleterious effects on subsequent STR analysis in some cases. We therefore recommend the implementation of the layer technique, as it brings advantages for fingerprint enhancement as well. It could also be shown that, as can be necessary in practical casework, two enhancement methods can be performed on a single stain without having influence on STR profiling. In terms of methodological variety, this paper reflects a comprehensive study performed on STR profiling after fingerprint enhancement methods, including rare methods and variations of techniques, which can be a useful alternative in certain case scenarios.

Blood Stains↗

Visualization method for fingerprints on skin by impression on a polyethylene terephthalate (PET) semirigid sheet.

Based on the phenomenon that static electricity attracts dust, a polyethylene terephthalate (PET) semirigid sheet coated with printing ink was used to visualize impressions of fingerprints on the skin of living and dead bodies. Compared with visualization methods for perspiration fingerprints, this method recovers better images for a longer time after the fingerprint has been deposited on skin. Fingerprints transferred to the PET sheet are photographed with sidelighting using an ordinary light source. For fingerprints that yield inadequate contrast, an argon-ion laser can be used to improve the contrast.

Dermatoglyphics↗

[Studies on fingerprinting of Flos Buddleja by RP-HPLC].

OBJECTIVE: To establish fingerprinting of Flos Buddleja by using RP-HPLC for the quality control. METHOD: The HPLC condition was as follows: Inertsil ODS-3 C18 analytical column (4.6 mm x 250 mm, 5 microm), gredient eluation with MeCN (0.1% TFA)-H2O (0.1%TFA), flow rate 1.0 mL x min(-1), detection wavelength 254 nm. 10 commercial samples were analyzed to establish a fingerprinting. RESULT: Among the obtained fingerprinting, most of the detected peaks were separated effectively. The accuracy, repeatability and stability of this method were satisfied. The RSDs of relative retention time and area of aimed peaks which existed in all samples wereless than 5%. Theresults were in accordance with the request of fingerprinting. CONCLUSION: The established fingerprinting can be used for the quality control of Flos Buddleja.

Buddleja↗

[Study on GC fingerprint of the constituents in Herba Asari].

OBJECTIVE: To establish a method for GC fingerprint determination of the chemical constituents in Herba Asari. METHOD: GC and GC-MS were used to optimize the fingerprint determination method, and identify the main peaks in the GC fingerprint. RESULT: A preferable method for GC fingerprint determination of the chemical constituents in Herba Asari was established. CONCLUSION: A general acquaintance of the chemical constituents in Herba Asari can be obtained by using the preferable GC fingerprint determination method, which is useful for quality evaluation of the crude drug of Herba Asari.

Anisoles↗

[The fingerprint of Ezhu by GC-MS].

AIM: To study the fingerprint of Ezhu by GC-MS. METHODS: GC-MS analysis was performed for 18 samples of three species of Curcuma used as Ezhu. TIC profiles were evaluated by "Computer Aided Similarity Evaluation System" (MATLAB5.3 based, Ver. 1.240, developed by Research Center for Modernization of Chinese Medicine, Central South University). The characteristic peaks in chromatograms were identified by comparing mass data with literatures. Hierarchical clustering analysis was performed by SPSS based on the relative peak area (RPA) of identified peak to germacrone in 18 samples. RESULTS: Resemblance values of 18 samples of Ezhu were pretty low. The mutual mode fingerprint plots of Ezhu were failed to develop. However, 18 samples were divided into two main clusters based on hierarchical clustering analysis, Curcuma wenyujin cluster and Curcuma phaeocaulis cluster, but the samples of Curcuma kwangsiensis were dispersive. Therefore, based on hierarchical clustering analysis, two mutual mode fingerprint plots of Curcuma wenyujin and Curcuma phaeocaulis were developed. But that of Curcuma kwangsiensis was failed because of low resemblance among samples. CONCLUSION: The mutual mode fingerprint is the basis for quality control of Chinese materia medica from multi-origins. Development of GC-MS fingerprint of Ezhu was failed, which indicates that the chemical components in different species of herbs used as one Chinese materia medica may be significantly different. The relationship of chemical components and pharmacological activities should be further studied so as to elucidate the rationality of Chinese materia medica from multi-origins.

Cluster Analysis↗

[Research on the influence of compatibility on fingerprint of Glycyrrhiza uralensis in mahuang decoctions by HPLC].

OBJECTIVE: To set up the HPLC fingerprint of Glycyrrhiza uralensis in decoctions prepared from various combinations of the recipe named Mahuang decoctions and study the influence of compatibility on fingerprint of G. wralensis in decoctions. METHOD: The RP-HPLC method was used, chromatography conditions were Zorbax SB-C18 column (4.6 mm x 250 mm, 5 microm), the acetonitrile-1.2% acetic acid (gradient elution) as mobile phase and detective wavelength at 254 nm. RESULT: The method is stable and reliable with a good reproducibility and provides a reference standard for the quality control of G. uralensis, it can be used to determine the fingerprint of G. aralensis in Mahuang decoctions. The result showed that 8 peaks were common in the fingerprint of G. uralensis in Mahauang decoctions. The area changes of 8 common peaks in decoctions prepared from various combinations of Mahuang decoctions were studied. CONCLUSION: The fingerprint of G. uralensis in Mahuang decoctions is markedly influenced by herba ephedrae and ramulus cinnamomi and semen armeniacae amarum. The areas of 7 common peaks were reduced obviously, while the relative areas of 6 common peaks were increased remarkably.

Chromatography, High Pressure Liquid↗

[Vectorial angle method for studying on GC fingerprint of naphtha in Alpinia officinarum Hance].

OBJECTIVE: To establish GC quality analysis and GC fingerprint spectrum of naphtha in Alpinia officinarum Hance. METHODS: The naphtha in Alpinia officinarum Hance was extracted and analyzed by GC to establish the fingerprint spectrum. The results were analyzed by similarity grade calculate method to compare the fingerprint difference of Alpinia officinarum Hance. RESULTS: The GC fingerprint spectrum of Alpinia officinarum Hance were established. It consisted of 11 peaks. The GC spectrum results were analyzed by similarity grade calculate method which can divide Alpinia officinarum Hance into various habitats. CONCLUSION: The fingerprint spectrum can be used to distinguish Alpinia officinarum Hance and to evaluate its quality.

Alpinia↗

[Evaluation of green tangerine peel processed with vinegar using HPLC fingerprint technique].

OBJECTIVE: To develop an HPLC method for determination of fingerprints and evaluate green tangerine peel (GTP) processed with vinegar. METHOD: The samples were extracted with 50% ethanol using ultrasonic bath and analyzed on a Chromasil C18 column eluted with methanol and water containing 0.2% acetic acid in a linear gradient program. The flow rate was 1.0 mL x min(-1), and detection wavelength was set at 280 nm. RESULT: The RSD values of relative retention times and peak areas of main peaks were all less than 5%. The fingerprints of Geqingpi and Sihuaqingpi were different. The fingerprints of the processed and the unprocessed were almost same, and the fingerprint differences among the different batches processed with the same technology from the same unprocessed GTP were not obvious. CONCLUSION: The influence of processing with vinegar on 50% ethanol extracts were not evident, and the technological pross was stable. It was found that the fingerprints of Geqingpi and Sihuaqingpi were different, but it should be study further.

Acetic Acid↗

Variability of DNA fingerprint in a Japanese population.

To estimate the forensic usefulness of the DNA fingerprint produced by a synthesized minisatellite probe "Myo", the variability of the DNA fingerprint was examined in a Japanese population. Pairwise comparisons of the fragments in the DNA fingerprints showed that 15 fragments on average longer than 4.4 kilobases with a mean fragment sharing probability of 0.19 appeared in a typical DNA fingerprint and the distribution of matches of the fragments was found to be binominal. Therefore, the probability of chance association between random individuals can be calculated to (0.19)15 = 1.5 x 10(-11). It seems reasonable to conclude that the DNA fingerprint is completely individual-specific.

DNA↗

Changes in methylation patterns identified by two-dimensional DNA fingerprinting.

Two-dimensional DNA fingerprinting (2-D fingerprinting) is a sensitive tool for genomic difference analysis between tumor DNA and constitutive DNA of glioma patients. Numerous differences were found even in low-grade gliomas. They can be interpreted as deletions, amplifications, rearrangements, HaeIII restriction site mutations, tandem repeat instabilities, or methylation differences. The influence of methyl groups on the melting behavior of double-stranded DNA fragments in a denaturing gradient gel was demonstrated by analyzing the migration of lambda-phage DNA fragments in 2-D fingerprint gels. A characteristic intensity shift between two neighboring spots in several glioma samples was identified and verified by rehybridization of 2-D filters with a cloned DNA fragment corresponding to the lower spot in 10 out of 11 pilocytic astrocytomas. We hypothesized that this shift may be related to an alteration in the methylation pattern of the tumor DNA. This was specifically tested by analyzing the underlying 750 bp genomic fragment (including 21 CpG dinucleotides) with bisulfite treatment of agarose-embedded DNA. A methylation grade of 88% in tumor DNA as compared to 96% in blood DNA was found. Although only one CpG is located in the melting domain of the cloned fragment, this particular CpG is methylated in all blood samples, but mostly demethylated in the tumor samples. In conclusion, we demonstrate that 2-D fingerprinting may be a powerful tool for the detection of DNA methylation changes in genomic difference analysis.

Astrocytoma↗

Plant DNA fingerprinting with radioactive and digoxigenated oligonucleotide probes complementary to simple repetitive DNA sequences.

The existence of hypervariable DNA sequences in nuclear genomes, and the use of appropriate "fingerprinting" probes to detect them, has gained widespread scientific interest, and also led to multiple applications in diverse areas. Two years ago, the new technique of "DNA fingerprinting" was also introduced into the analysis and characterization of plant genomes, initially by using human or M13 minisatellites as probes. In the present article, we demonstrate the applicability for plant DNA fingerprinting of oligonucleotide probes specific for simple repetitive DNA sequences. We show that various levels of intra- and interspecific polymorphisms can be detected; the information to be gained depends on the optimal combination of probe and species. Variety-specific patterns were obtained in several cases. Some probes revealed variability between individuals. Somatic variability was not observed. Different DNA isolation and purification procedures were tested in order to introduce a fast and easy-to-perform isolation method suitable for a large variety of plant species. Nonradioactive fingerprinting was performed using digoxigenated oligonucleotides as probes. Banding patterns obtained with radioactive and digoxigenin-based labeling techniques proved to be of similar quality.

Base Sequence↗

Parallel genome analysis by one- and two-dimensional DNA fingerprinting in human gliomas.

The detection of DNA variation in cancers is an important step in elucidating the mechanism of tumorigenesis. Using the strategy of multipoint genome analysis we detected many differences between glioma-derived and constitutional DNA by customary DNA fingerprinting with simple repetitive oligonucleotide probes. Amplification of the epidermal growth factor receptor (EGFR) gene has been found to be easily detectable as new or highly intensified bands in one-dimensional (1-D) DNA fingerprints of glioblastoma DNA generated with probes (GTG)5 or (GT)8. However, in most low-grade astrocytomas, 1-D DNA fingerprinting has failed to reveal any genomic abnormalities. In these cases a two-dimensional (2-D) technique was successfully employed that is based on size separation in neutral gels followed by sequence-dependent separation in denaturing gradient gels and hybridization with several mini- and microsatellite core probes. The hundreds of spots visualized with this technique were used to detect subtle changes probably occurring as the initial steps of tumorigenesis in human gliomas. On average, five of the approximately 580 spots generated by probes CAC and 33.6 were found to be altered in tumor DNA; 80% of the alterations were spot losses, the rest being spot gains or amplifications. Computer-based image analysis using an external lambda marker provided a stringent way to compare spot patterns generated by 2-D DNA fingerprinting. In comparisons performed between typing patterns generated on the same gel, 99% of truly identical spots were confirmed by the software. In intergel comparisons 84% of identical spots were matched on the basis of the marker information alone.

Base Sequence↗

Identification of pathogenic yeasts of the imperfect genus Candida by polymerase chain reaction fingerprinting.

With the increase in the number of immunocompromised hosts, the number of fungal pathogens has increased markedly. Identification and classification, especially of yeast species and strains, is often difficult when based solely on phenotypic characteristics. Since it became clear that different fungal pathogens require specific treatment strategies, there is a need for simple, rapid and reliable methods to identify fungal isolates. Polymerase chain reaction (PCR) fingerprinting was successfully applied here to identify yeast isolates. Microsatellite [(GTG)5; (GACA)4] and minisatellite [(5'GAGGGTGGCGGTTCT 3'), derived from the core-sequence of the phage M13] specific primers were used as single primers in the PCR to amplify hypervariable interrepeat DNA sequences from over 200 European, American and Australian clinical isolates within the genus Candida. Each species, represented by its type strain, could be identified by a specific multilocus pattern, allowing for the assignment of all the isolates to the appropriate species. Intra-species variation in the multilocus profiles was about 20% compared to inter-species variation, which was up to 80%. Anamorph-teleomorph pairs could be identified by highly homologous PCR fingerprint patterns. PCR fingerprinting was more discriminatory when compared with routinely used biochemical tests (Vitek YBC and API ID 32C). PCR fingerprinting has proven to be a powerful tool for the identification of medically important yeasts. It is rapid, sensitive, reliable, highly reproducible, stable in vitro and in vivo, and applicable to large scale experiments. Potential applications include: yeast taxonomy, epidemiology, environmental surveys, and improvement of the diagnosis of mycotic diseases.

Australia↗

DNA fingerprinting of Listeria monocytogenes using enterobacterial repetitive intergenic consensus (ERIC) motifs-polymerase chain reaction/capillary electrophoresis.

The molecular technique, enterobacterial repetitive intergenic consensus (ERIC)-polymerase chain reaction (PCR) produces genomic DNA fingerprint that discriminate bacterial species and strains. This technique was applied to the characterization of Listeria monocytogenes, an important food-borne pathogen implicated in numerous cases of listeriosis. The ERIC-PCR resulted in distinct DNA fingerprinting patterns of all L. monocytogene serotypes and Listeria species. Analysis of the genomic DNA fingerprints was accomplished using capillary electrophoresis (CE), an alternative technique to the conventional agarose gel method. The optimization of CE conditions (electrokinetic injection, applied voltage) resulted in the resolution of amplified DNA fragments up to 1000 bp. Comparisons of electropherograms provided genomic fingerprint templates which could be further used for supplementary information. The ERIC-PCR method coupled to CE provides a rapid technique in differentiating bacterial spp., and may contribute relevant information in food-borne outbreak studies.

DNA Fingerprinting↗