PubMed Health⌕ Search

Biomedical subjects

M Adamczyk

Publications and source records attributed to M Adamczyk.

80 records · Page 5Linked to original sources

Structure-binding relationships for the interaction between a vancomycin monoclonal antibody Fab fragment and a library of vancomycin analogues and tracers.

A series of vancomycin analogues and tracers were synthesized, and their binding interactions with an anti-vancomycin Fab fragment were evaluated under mass transport limiting conditions using surface plasmon resonance detection. Differences observed in binding interactions were utilized to define the vancomycin structural elements critical for antibody recognition. Major structural regions of vancomycin shown to play an important role in anti-vancomycin Fab fragment recognition include two sugar moieties and one chlorinated phenyl ring. The N-methylleucyl residue, the carboxy terminal residue, and residues in the peptide-binding region of vancomycin have minimal impact on the anti-vancomycin Fab fragment/vancomycin binding interaction. The selection of an antibody with such binding properties plays a critical role in the development of a vancomycin immunoassay that employs stable calibrators and controls.

Antibodies, Monoclonal↗

Chemoenzymatic synthesis of 3'-O-(carboxyalkyl)fluorescein labels.

A general and versatile method is described for the synthesis of fluorescent labels. Coupling of the 3'-phenol of fluorescein methyl ester with hydroxyalkyl benzyl esters, followed by benzyl ester hydrolysis, provided a series of fluorescein carboxyalkyl ethers. Use of the Mitsunobu reaction allowed for the introduction of linkers of different lengths onto the 3'-phenol of fluorescein. Chemoenzymatic benzyl ester hydrolysis was achieved with LPL-80 lipase, providing pH-independent labels useful for the preparation of fluorescent conjugates.

Fluoresceins↗

Surface plasmon resonance (SPR) as a tool for antibody conjugate analysis.

Surface plasmon resonance (SPR) analysis was used to assess the immunoreactivity of anti-biotin (4) and anti-fluorescein (5) monoclonal antibody after conjugation with the N-hydroxysuccinimide ester of acridinium-9-carboxamide 1. Only minor changes in the apparent equilibrium dissociation constants of the antibody conjugates for their ligands resulted from the conjugation process. However, comparison of the initial binding rate of the conjugates with their ligands with those of the unmodified antibodies over a range of concentrations showed that the antibody conjugates were partially inactivated. The anti-fluorescein conjugates retained at least 90% of their immunoreactivity over the range of modification tested, while anti-biotin conjugates showed a progressive loss of reactivity with increased substitution by the label.

Acridines↗

Collagen cross-links. Synthesis of immunoreagents for development of assays for deoxypyridinoline, a marker for diagnosis of osteoporosis.

(+)-Deoxypyridinoline (Dpd, 2) is a cross-link of bone collagen, which is released and excreted in urine during process of bone resorption. It has been shown that this bone collagen degradation product, Dpd (2) is a useful marker for diagnosis of osteoporosis and other metabolic bone diseases. In this paper, the design and synthesis of two immunogens (3, 4) via of conjugation of succinimidyl ester (14) to carrier protein, bovine serum albumin, or keyhole limphet hemocyanin, was presented. Additionally, fluorescent (5) and chemiluminescent (6) tracers were prepared from (-)-acid (13) via in situ activation and subsequent reaction with 6-Fln-CH(2)NH(2) (17) or Acr-NH(2) (18) and hydrolysis. The key hapten (-)-acid (13) was prepared by quaternization of 3-hydroxypyridine derivative (S,S)-(-)-11 with iodide (S)-(-)-10 followed by selective hydrolysis. These immunreagents (immunogens 3 and 4 and tracers 5 and 6) are useful for the development of sensitive and high throughput immunoassays, such as FPIA and CLIA for Dpd (2).

Adjuvants, Immunologic↗

Region-selective labeling of antibodies as determined by electrospray ionization-mass spectrometry (ESI-MS).

The electrospray ionization-mass spectrometry (ESI-MS) analysis of three sets of monoclonal antibody-acridinium-9-carboxamide conjugates is described. The conjugates (nine total) were enzymatically digested using papain and the resulting fragments [Fc heavy chain, Fab, or F(ab')(2)] were analyzed using liquid chromatography/ESI-MS. The average number of labels per fragment were calculated using Sigma nx%, where n is the number of acridinium molecules covalently bound to the fragment and x% is the percent relative area of the corresponding peaks in the mass spectrum. When these values were normalized against the molecular weight of their respective region, antibody-dependent labeling patterns were observed. For antibodies T (anti-L-T(4)) and F (anti-FITC), there was a preference for conjugation of the Fab region over the Fc region. For antibody B (anti-biotin), the trend was reversed.

Antibodies↗

A barbiturate screening assay for the Abbott AxSYM analyzer.

A fluorescence polarization immunoassay for barbiturates on the Abbott AxSYM analyzer is described. The assay displayed dilution linearity up to 1200 ng/mL; coefficients of variation varied from 5.96 to 8.61%; recovery varied from 94.9 to 105.3%; and sensitivity was less than 40 ng/mL. Good correlation between the standard six- and factory two-point calibration methods was observed. The Immunoassay demonstrated good cross-reactivity to several commonly prescribed barbiturates; low cross-reactivity with structurally similar compounds; low interference from endogenous substances, dyes, preservatives, and several commonly available adulterants; and good correlation with the TDx Barbiturate Urine assay.

Autoanalysis↗

Synthesis and pharmacological screening of some N-carboxymethylbarbituric acid derivatives. I.

Reaction of haloacetate with barbital and methylphenobarbital in polar aprotic solvents in the presence of anhydrous K2CO3 gave N-carboalkoxymethyl derivatives in good yields. Acidic hydrolysis of the latter compounds affords N-carboxymethyl derivatives of barbital 8 or methylphenobarbital 7. From acid 7 and 8 via acid chlorides, amides 11--20 were prepared. These amides lack anticonvulsant activity and show only slight sedative and analgesic action.

Analgesics↗