PubMed HealthSearch

Biomedical subjects

J R Krone

Publications and source records attributed to J R Krone.

9 recordsLinked to original sources

Mass spectrometric methods for evaluating point mutations.

Two methods for internally calibrating spectra resulting from the matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry analysis of partially digested proteins are described. Partial digestion of proteins results in a large number of ion signals present in the MALDI-TOF mass spectrum, which in turn represent a significant over-sampling of each amino acid present in the analyte. This over-sampling allows ion signals of undisputed origin to be used as internal calibrants for the evaluation of fragments suspected to contain point mutations. Correlated with the correct amino acid sequence, the mass values of all ion signals (calibrants and analytes) are observed to fall into a single low-error data set. Conversely, empirically derived data applied to an incorrect sequence split the data into subsets of different errors. The methods take advantage of the self-consistent nature of data generated during the enzymatic mass mapping of proteins using MALDI-TOF, and they aid in the rapid, sensitive and accurate evaluation of point mutations present in proteins.

Amino Acid Sequence

Surface plasmon resonance biomolecular interaction analysis mass spectrometry. 2. Fiber optic-based analysis.

Fiber optic probe-based surface plasmon resonance (SPR) detection has been used in combination with matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry for the rapid, sensitive, and selective detection of biomolecules. SPR was used to monitor the covalent immobilization of a polyclonal antibody to the surface of a fiber optic probe. The derivatized probe was then used for the selective detection (from solution) of the corresponding antigen and a secondary antibody directed toward the antigen. Species retained during the SPR detection process were next analyzed by direct MALDI-TOF analysis of the probe surface (after exposed to the MALDI matrix and introduction into the mass spectrometer). The combined approach allowed for the two-dimensional detection of biomolecules, with SPR analysis yielding quantitative information pertinent to the binding events and MALDI-TOF providing details on the qualitative nature of the binding partners.

Animals

Surface plasmon resonance biomolecular interaction analysis mass spectrometry. 1. Chip-based analysis.

The use of matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF) in concert with surface plasmon resonance-based biomolecular interaction analysis (SPR-BIA) is reported. A chip-based biosensor unit was used to simultaneously monitor biomolecular interactions taking place on four different regions of the sensor chip (flow cells). Species retained during SPR-BIA were then identified by performing MALDI-TOF directly from within the area of the flow cells. Analyses were performed on an antibody/antigen/antibody system with detection limits in the low-femtomole range. The combined assay demonstrates the use of SPR-BIA to evaluate the relative stability of sequential solution-phase interactions, as well as, upon MALDI-TOF analysis, the ability to unambiguously confirm the presence of species retained during the interaction analysis.

Animals

BIA/MS: interfacing biomolecular interaction analysis with mass spectrometry.

Biomolecular interaction analysis (BIA) which utilizes surface plasmon resonance (SPR) detection of affinity-captured analytes has been interfaced with matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI). Femtomole quantities of a peptide, myotoxin a, were detected by direct MALDI analysis of sensor chips used during BIA of a polyclonal anti-myotoxin a IgG/myotoxin a system. Further, different interactive surfaces (flow cells) present on a single biosensor were targeted individually for mass spectrometric analysis. System compatibility of the combined approach was demonstrated with sensitivities, detection limits, and analytical performances comparable to those intrinsic to the individual analyses. The combined approach unites the real-time capabilities of SPR-based BIA with the qualitative specificity of mass spectrometry.

Biosensing Techniques

Peptide characterization using bioreactive mass spectrometer probe tips.

A method has been developed for the rapid and sensitive mass spectrometric characterization of peptides. The approach uses bioreactive mass spectrometer probe tips, incorporating covalently bound enzymes, which are capable of modifying biomolecules for analytical purposes. In the demonstrated cases, enzymatic proteolysis is initiated upon application of analyte to the probe tips, time is allowed for digestion, and the products are analyzed using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. The probe tips have been used for proteolytic mapping and partial sequence determination of picomole quantities of peptide. Analysis times were approximately 30 min. Two methods of database search were utilized. The first used limited peptide sequence information and parent molecular weight, while the second used exclusively the molecular weights of a number of endoproteolytic fragments. A simple method of comparing the match of experimental data for a tryptic digest with the results of a search is described.

Amino Acid Sequence

[Cryptosporidiosis in immunocompetent patients. Epidemiology and clinical picture].

Cryptosporidiosis species were demonstrated in stool of 1.9% of 1600 unselected patients with enteritis (practically evenly divided between children and adults). Further investigations revealed seven cases of enteritis among family members. In eight patients there was a double infection with Cryptosporidium plus another enteritis pathogen. The most frequent clinical symptoms were diarrhea, vomiting, cramp-like abdominal pain, fever and headache. The mean period of parasite excretion was 14 days. Spontaneous cure occurred in all patients. Since cryptosporidiosis is relatively common not only in those with lowered resistance but also those who are immune-competent, search for Cryptosporidium should be included in all tests for etiologically uncertain cases of enteritis.

Adolescent

[An investigation into the influence of human serum on the in-vitro activity of various cephalosporins (author's transl)].

Cephalosporins are being given more and more frequently empirically as initial therapy, until the bacteriological findings become available. The wide selection of cephalosporins available make the choice of the most suitable one difficult for the clinician. Cephazolin, cephradine and cephacetrile were tested against three standard bacteria strains (Escherichia coli, Staphylococcus aureus, Kelebsiella pneumoniae) in normal broth and with the addition of 30% inactivated human serum; the geometric mean of the minimum inhibitory concentration (MIC) was determined by serial dilution, and the minimum bactericidal concentration (MBC) by inoculation onto solid medium. On the addition of 30% serum, cephazolin showed a reduction in effectivity of up to 360% for the MIC and up to 74% for the MBC, cephacetril up to 250% for the MIC and 100% for the MBC, and cephradin a maximum loss of 16%. Successful treatment of a severe infection requires a high drug level or a corresponding tissue titer. Due to the high tissue concentration of cephradin and the unrivalled stable antibacterial effectivity in serum, this antibiotic can be recommended for clinical use.

Blood Bactericidal Activity

Advances in surface plasmon resonance biomolecular interaction analysis mass spectrometry (BIA/MS).

Ongoing, worldwide efforts in genomic and protein sequencing, and the ability to readily access corresponding sequence databases, have emphatically driven the development of high-performance bioanalytical instrumentation capable of characterizing proteins and protein-ligand interactions with great accuracy, speed and sensitivity. Two such analytical techniques have arisen over the past decade to play key roles in the characterization of proteins: surface plasmon resonance biomolecular interaction analysis (SPR-BIA) and matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF). SPR-BIA is used in the real-time investigation of biomolecular recognition events, and is thereby capable of providing details on the association and dissociation kinetics involved in the interaction, information ultimately leading to the determination of dissociation constants involved in the event. MALDI-TOF is used in the structural characterization, identification and sensitive detection of biomolecules. Although the two techniques have found many independent uses in bioanalytical chemistry, the combination of the two, to form biomolecular interaction analysis mass spectrometry (BIA/MS), enables a technique of analytical capabilities greater than those of the component parts. Reviewed here are issues of concern critical to maintaining high-levels of performance throughout the multiplexed analysis, as well as examples illustrating the potential analytical capabilities of BIA/MS.

Amino Acid Sequence