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PUBMED FOR HANDHELDS

Journal Abstract Search


326 related items for PubMed ID: 27505089

  • 1. Development of a rapid and quantitative lateral flow assay for the simultaneous measurement of serum κ and λ immunoglobulin free light chains (FLC): inception of a new near-patient FLC screening tool.
    Campbell JP, Heaney JL, Shemar M, Baldwin D, Griffin AE, Oldridge E, Goodall M, Afzal Z, Plant T, Cobbold M, Jefferis R, Jacobs JF, Hand C, Drayson MT.
    Clin Chem Lab Med; 2017 Mar 01; 55(3):424-434. PubMed ID: 27505089
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  • 2. Development of a highly-sensitive multi-plex assay using monoclonal antibodies for the simultaneous measurement of kappa and lambda immunoglobulin free light chains in serum and urine.
    Campbell JP, Cobbold M, Wang Y, Goodall M, Bonney SL, Chamba A, Birtwistle J, Plant T, Afzal Z, Jefferis R, Drayson MT.
    J Immunol Methods; 2013 May 31; 391(1-2):1-13. PubMed ID: 23388695
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  • 3. Reference intervals and diagnostic ranges for serum free κ and free λ immunoglobulin light chains vary by instrument platform: Implications for classification of patient results in a multi-center study.
    Cotten SW, Shajani-Yi Z, Cervinski MA, Voorhees T, Tuchman SA, Korpi-Steiner N.
    Clin Biochem; 2018 Aug 31; 58():100-107. PubMed ID: 29885308
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  • 4. Analytical validation of new ELISAs for the quantitation of polyclonal free light chains and comparison to existing assays for healthy and patient samples.
    Heaney JLJ, Campbell JP, Goodall M, Plant T, Shemar M, Hand C, Drayson MT.
    J Immunol Methods; 2020 Mar 31; 478():112713. PubMed ID: 31783021
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  • 10. Comparison of Freelite™ and N Latex serum free light chain assays in subjects with end stage kidney disease on haemodialysis.
    Kennard A, Hawley C, Tate J, Klingberg S, Pretorius C, Hutchison C, Mollee P.
    Clin Chem Lab Med; 2016 Jun 01; 54(6):1045-52. PubMed ID: 26684350
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  • 11. Clinical usefulness of free light chain concentration as a tumor marker in multiple myeloma.
    Kang SY, Suh JT, Lee HJ, Yoon HJ, Lee WI.
    Ann Hematol; 2005 Sep 01; 84(9):588-93. PubMed ID: 15883850
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  • 12. Limitations of Free Light Chain Assays caused by the Matrix Effect.
    Farnsworth CW, Logsdon NM, Hayes JE, Rais R, Willrich MA, Gronowski AM.
    J Appl Lab Med; 2020 Mar 01; 5(2):311-319. PubMed ID: 32445382
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  • 14. [Analysis of the relationship of heavy/light chain pairs of immunoglobulin (Hevylite) to the results of gel electrophoresis and nefelometric examination of serum proteins at the time of multiple myeloma diagnosis].
    Ščudla V, Lochman P, Pika T, Zapletalová J, Minařík J, Bačovský J.
    Cas Lek Cesk; 2015 Mar 01; 154(6):292-302. PubMed ID: 26750626
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  • 15. Detection of kappa and lambda light chain monoclonal proteins in human serum: automated immunoassay versus immunofixation electrophoresis.
    Jaskowski TD, Litwin CM, Hill HR.
    Clin Vaccine Immunol; 2006 Feb 01; 13(2):277-80. PubMed ID: 16467338
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  • 16. Measurement of free light chains with assays based on monoclonal antibodies.
    Te Velthuis H, Drayson M, Campbell JP.
    Clin Chem Lab Med; 2016 Jun 01; 54(6):1005-14. PubMed ID: 27010775
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  • 17. Effects of Long-Term Storage on Serum Free Light Chain Stability.
    Hörber S, Klein R, Peter A.
    Clin Lab; 2019 May 01; 65(5):. PubMed ID: 31115238
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  • 18. Assessment of serum free light chain levels in healthy adults immediately after marathon running.
    Campbell JP, Eijsvogels TM, Wang Y, Hopman MT, Jacobs JF.
    Clin Chem Lab Med; 2016 Mar 01; 54(3):459-65. PubMed ID: 26351935
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  • 19. Serum free light chains: diagnostic and prognostic value in multiple myeloma.
    Sthaneshwar P, Nadarajan V, Maniam JA, Nordin N, Gin Gin G.
    Clin Chem Lab Med; 2009 Mar 01; 47(9):1101-7. PubMed ID: 19728852
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