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Biomedical subjects

C E Swiderski

Publications and source records attributed to C E Swiderski.

7 recordsLinked to original sources

Molecular cloning, sequencing, and expression of equine interleukin-6.

Equine interleukin-6 (IL-6) cDNA was amplified from mitogen-stimulated equine peripheral blood mononuclear cells (PBMC) using consensus sequence primers. The 727bp amplified cDNA contains the entire coding region for equine IL-6 and includes 118 bases in the 3' non-translated region. The coding sequence translates to a protein of 208 amino acids with a predicted 28 amino acid leader sequence. The mature protein of 180 amino acids has a predicted molecular mass of 20471Da without post-translational modifications. The amino acid sequence of equine IL-6 displays between 46 and 84% similarity to other mammalian IL-6 sequences. Expression of equine IL-6 in Chinese hamster ovary (CHO) cells yielded a supernatant that supported the proliferation of B9 cells in a dose-dependent manner. Treatment of B9 cells with an anti-IL-6 receptor antibody ablated the response to the recombinant equine IL-6.

Amino Acid Sequence↗

Hypersensitivity disorders in horses.

Hypersensitivity is an exaggerated immunologic response to a foreign agent that results in inflammation and organ dysfunction. Hypersensitivity disorders are broadly divided into antibody-mediated and T-cell-mediated reactions. The inflammatory pathways that result in disease are initiated in an antigen-specific manner through Fab portions of antibodies or the T-cell receptor, causing the up-regulation of effector mechanisms designed to clear the offending agent. Effector mechanisms include the generation of inflammatory chemicals such as cytokines and chemokines and the attraction of leukocytes and potentiation of their function. This article reviews current concepts in the immunopathogenesis of hypersensitivity disorders and demonstrates these mechanisms as they apply to equine disease.

Animals↗

Quantitative measurement of equine cytokine mRNA expression by polymerase chain reaction using target-specific standard curves.

Quantification of cytokine mRNA using reverse transcription coupled with the polymerase chain reaction (RT-PCR) has become a corner stone of the study of cytokine regulation. Quantitative competitive RT-PCR (QCRT-PCR) is commonly accepted as a reliable method for quantifying differences in mRNA levels but is both labor- and reagent-intensive. A noncompetitive polymerase chain reaction method that utilizes cytokine-specific, plasmid-derived, standard curves was developed for the quantification of equine cytokine mRNA. The assay can be performed on minute samples of cellular material, utilizes sequences identical to wild-type for the generation of standard curves, is technically facile, less reagent-and labor-intensive than competitive methods, easily accommodates high sample throughput without the use of radioactive labels, and generates replicate samples to allow statistical analysis of the data. We demonstrate the utility of the assay, which is easily adapted to any cloned mRNA sequence, using equine interleukin-10 (IL-10). Both IL-10 and beta-actin cDNA were amplified in triplicate PCR reactions from oligo-dT primed RT reactions. Dilutions of plasmid DNA encoding the respective sequence, equine IL-10 or beta-actin, were also amplified in triplicate reactions in the same run. Beta-actin cycling parameters were modified to maintain the amplification in its exponential phase by decreasing both cycle number and cDNA volume relative to the parameters used for cytokine amplification. Following amplification, aliquots of the PCR reactions were hybridized with sequence-specific tris (2,2'-bipyridine) ruthenium II chelate labeled oligonucleotide probes and quantified using the QPCR System 5000. Plasmid derived values were used to generate a standard curve for the interpolation of mRNA content in unknown cDNA samples. Beta-actin values were used to derive a factor for the relative normalization of differences among cDNA samples that are inherent in the RNA extraction and RT steps. This assay resolves at least 2-fold differences in message, is reproducible, and has a dynamic range on the order of 3 logs.

Actins↗

Immunodiagnostic assays.

The immune system is a complex interactive network. Defects in its function can be characterized broadly as being the result of actual deficiencies in the network or misdirection of normal immunologic functions. The assays that are available to detect deficiencies in the immunologic network barely scrape the surface of the possibilities. These assays primarily evaluate humoral immune function, but undetected defects in innate and cellular immunity are sure to exist. Although assays of humoral immunity have allowed the characterization of a number of immunodeficiency syndromes in horses, closer evaluation of the equine immune system using newer assays described in this text, as well as future assays yet to be developed are sure to determine new syndromes. Assays of misdirected immunologic functions have been limited to detection of misdirected antibody responses, but the dependence of antibody production on help from T cells could reflect an underlying defect of cellular immunity. Similar to immunodeficiency syndromes, misdirected responses of the innate and adaptive arms of immunity are sure to occur but will only be detected by more diligent surveillance of diseased horses and application of new immunodiagnostic technologies.

Animals↗

Molecular cloning and sequencing of equine interleukin 4.

We have cloned equine interleukin 4 (IL-4) cDNA using the polymerase chain reaction (PCR) and primers based on the human IL-4 sequence. The cDNA was amplified from mitogen-stimulated equine peripheral blood mononuclear cells (PBMC). The cloned PCR product shares extensive homology ith IL-4 sequences from other species.

Amino Acid Sequence↗

Seminal vesiculitis as a cause of signs of colic in a stallion.

A 5-year-old stallion was referred because of signs of abdominal pain. During the initial examination, signs of pain were elicited when the right seminal vesicle was palpated per rectum. Signs of pain were also elicited during sexual arousal and attempts at semen collection. The right seminal vesicle was subsequently determined to be abnormal by ultrasonographic and endoscopic examination. The stallion was treated with trimethoprim/sulfamethoxazole for 6 weeks. Five months later, there had been no recurrence of the condition.

Animals↗