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Dive into the research topics where Kristine Kay Kikly is active.

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Featured researches published by Kristine Kay Kikly.


Experimental Hematology | 2003

Characterization of Siglec-5 (CD170) expression and functional activity of anti–Siglec-5 antibodies on human phagocytes

Connie L. Erickson-Miller; Sylvie D. Freeman; Christopher B. Hopson; Karla J. D'Alessio; Elizabeth I. Fischer; Kristine Kay Kikly; Julie A. Abrahamson; Stephen D. Holmes; Andrew G. King

OBJECTIVE The Siglec family of proteins consists of at least 10 members with immunoglobulin and lectin domains and with similar sialic acid-binding properties. Many Siglec family members are expressed on hematopoietic cells and are involved in cell/cell interactions. Some family members are suspected of regulating cellular processes through specific signaling pathways. Monoclonal antibodies were generated against specific epitopes of Siglec-5 (CD170) and were used to determine expression of Siglec-5 on normal blood and marrow cells and cell lines. The antibodies also were used to elucidate functional activity for Siglec-5 on blood neutrophils. METHODS Flow cytometry and ELISA were used to determine the specificity of the monoclonal antibodies for Siglec-5 and to determine expression patterns. Chemiluminescence assays were employed to measure the oxidative burst activity of whole blood or purified neutrophils following treatment with the anti-Siglec-5 antibodies. RESULTS Cell surface expression analysis demonstrated that the protein was expressed on gated human neutrophil and monocyte populations, both in the blood and bone marrow. Expression on neutrophils was enhanced by one-hour treatment with fMLP or TNF-alpha. Epitope-specific anti-Siglec-5 monoclonal antibodies did not directly activate human neutrophils; however, antibody binding augmented neutrophil oxidative burst activity as determined by fMLP-induced luminol-dependent chemiluminescence. CONCLUSION Data demonstrating expression of Siglec-5 on cells of the myelomonocytic lineage and alteration of its expression by inflammatory stimuli suggest a role for this protein in cell/cell interactions following microbial exposure.


The Journal of Allergy and Clinical Immunology | 2000

Identification of SAF-2, a novel siglec expressed on eosinophils, mast cells, and basophils.

Kristine Kay Kikly; Bruce S. Bochner; Sylvie D. Freeman; Kong B. Tan; Kathleen T. Gallagher; Karla J. D’Alessio; Stephen D. Holmes; Julie A. Abrahamson; Connie L. Erickson-Miller; Paul R. Murdock; Hiroshi Tachimoto; Robert P. Schleimer; John R. White


Archive | 2001

Sialoadhesin factor-2 antibodies

Julie A. Abrahamson; Bruce S. Bochner; Connie L. Erickson-Miller; Kristine Kay Kikly; Robert P. Schleimer


FEBS Journal | 2001

A comparative study of the asparagine‐linked oligosaccharides on siglec‐5, siglec‐7 and siglec‐8, expressed in a CHO cell line, and their contribution to ligand recognition

Sylvie D. Freeman; Helen Birrell; Karla J. D'Alessio; Connie L. Erickson-Miller; Kristine Kay Kikly; Patrick Camilleri


Archive | 1998

Polynucleotides encoding a sialoadhesin family member-2 (SAF-2)

Kristine Kay Kikly; Connie L. Erickson-Miller; Bruce S. Bochner; Robert P. Schleimer


Archive | 1998

Sialoadhesin family member-2 (SAF-2)

Kristine Kay Kikly; Connie L. Erickson-Miller


Archive | 1998

SAF-3, Sialoadhesin family member-3

Kristine Kay Kikly; Connie L. Erickson-Miller


Archive | 1998

SIALOADHESIN FAMILY 4 cDNA

Kristine Kay Kikly; Connie L. Erickson-Miller


Archive | 2011

Methods of use of sialoadhesin factor-2 antibodies

Julie A. Abrahamson; Connie L. Erickson-Miller; Kristine Kay Kikly; Bruce S. Bochner; Robert P. Schleimer; T. Esra Nutku


Archive | 2001

Anticorps du facteur-2 de la sialoadhesine

Julie A. Abrahamson; Bruce S. Bochner; Connie L. Erickson-Miller; Kristine Kay Kikly; Robert P. Schleimer

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T. Esra Nutku

Johns Hopkins University

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