Literature DB >> 16966269

Immune parameters in multiple myeloma patients: influence of treatment and correlation with opportunistic infections.

Philipp Schütt1, Dieter Brandhorst, Werner Stellberg, Miriam Poser, Peter Ebeling, Siemke Müller, Ulrike Buttkereit, Bertram Opalka, Monika Lindemann, Hans Grosse-Wilde, Siegfried Seeber, Thomas Moritz, Mohammad R Nowrousian.   

Abstract

The present study evaluated cellular and humoral immune parameters in myeloma patients, focusing on the effect of treatment and the risk of opportunistic infections. Peripheral blood lymphocyte subsets and serum levels of nonmyeloma immunoglobulins (Ig) were analysed in 480 blood samples from 77 myeloma patients. Untreated myeloma patients exhibited significantly reduced CD4+/45RO+, CD19+, CD3+/HLA-DR+, and natural killer (NK) cells, as well as nonmyeloma IgA, IgG and IgM. Conventional-dose chemotherapy resulted in significantly reduced CD4+ and even further decline of CD4+/CD45RO+ and CD19+ cells, most notably in relapsed patients. Additional thalidomide treatment had no significant effects on these parameters. Following high-dose chemotherapy (HD-CTX), prolonged immunosuppression was observed. Although CD8+, NK, CD19+ and CD+/CD45RO+ cells recovered to normal values within 60, 90, 360 and 720 days, respectively, CD4+ counts remained reduced even thereafter. Nine opportunistic infections were observed, including five cytomegalovirus (CMV) diseases, one Pneumocystis carinii pneumonia (PCP) and three varicella zoster virus infections with CMV diseases and PCP occurring exclusively after HD-CTX. Opportunistic infections were correlated with severely reduced CD4+, as well as CD4+/CD45RO+ and CD19+ counts. Thus, myeloma patients display cellular and humoral immunodeficiencies, which increase following conventional as well as HD-CTX, and constitute an important predisposing factor for opportunistic infections.

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Year:  2006        PMID: 16966269     DOI: 10.1080/10428190500472503

Source DB:  PubMed          Journal:  Leuk Lymphoma        ISSN: 1026-8022


  38 in total

1.  Analysis of the immune system of multiple myeloma patients achieving long-term disease control by multidimensional flow cytometry.

Authors:  Roberto J Pessoa de Magalhães; María-Belén Vidriales; Bruno Paiva; Carlos Fernandez-Gimenez; Ramón García-Sanz; Maria-Victoria Mateos; Norma C Gutierrez; Quentin Lecrevisse; Juan F Blanco; Jose Hernández; Natalia de las Heras; Joaquin Martinez-Lopez; Monica Roig; Elaine Sobral Costa; Enrique M Ocio; Martin Perez-Andres; Angelo Maiolino; Marcio Nucci; Javier De La Rubia; Juan-Jose Lahuerta; Jesús F San-Miguel; Alberto Orfao
Journal:  Haematologica       Date:  2012-07-06       Impact factor: 9.941

Review 2.  Immune checkpoint blockade for hematologic malignancies: a review.

Authors:  Matthew J Pianko; Yuzhou Liu; Srishti Bagchi; Alexander M Lesokhin
Journal:  Stem Cell Investig       Date:  2017-04-19

Review 3.  Coinhibitory molecule PD-1 as a potential target for the immunotherapy of multiple myeloma.

Authors:  D Atanackovic; T Luetkens; N Kröger
Journal:  Leukemia       Date:  2013-10-23       Impact factor: 11.528

4.  Preclinical activity and determinants of response of the GPRC5DxCD3 bispecific antibody talquetamab in multiple myeloma.

Authors:  Christie P M Verkleij; Marloes E C Broekmans; Mark van Duin; Kristine A Frerichs; Rowan Kuiper; A Vera de Jonge; Martin Kaiser; Gareth Morgan; Amy Axel; Rengasamy Boominathan; Jocelyn Sendecki; Amy Wong; Raluca I Verona; Pieter Sonneveld; Sonja Zweegman; Homer C Adams; Tuna Mutis; Niels W C J van de Donk
Journal:  Blood Adv       Date:  2021-04-27

Review 5.  Current treatment options of T cell-associated immunotherapy in multiple myeloma.

Authors:  Hailing Liu; Yunbao Pan; Shan Meng; Wanggang Zhang; Fuling Zhou
Journal:  Clin Exp Med       Date:  2017-01-24       Impact factor: 3.984

6.  Disease- and Therapy-Specific Impact on Humoral Immune Responses to COVID-19 Vaccination in Hematologic Malignancies.

Authors:  Santosha A Vardhana; David A Knorr; David J Chung; Gunjan L Shah; Sean M Devlin; Lakshmi V Ramanathan; Sital Doddi; Melissa S Pessin; Elizabeth Hoover; LeeAnn T Marcello; Jennifer C Young; Sawsan R Boutemine; Edith Serrano; Saumya Sharan; Saddia Momotaj; Lauren Margetich; Christina D Bravo; Genovefa A Papanicolaou; Mini Kamboj; Anthony R Mato; Lindsey E Roeker; Malin Hultcrantz; Sham Mailankody; Alexander M Lesokhin
Journal:  Blood Cancer Discov       Date:  2021-09-13

7.  Induction of potent NK cell-dependent anti-myeloma cytotoxic T cells in response to combined mapatumumab and bortezomib.

Authors:  Paul J Neeson; Andy K Hsu; Yin R Chen; Heloise M Halse; Joanna Loh; Reece Cordy; Kate Fielding; Joanne Davis; Josh Noske; Alex J Davenport; Camilla A Lindqvist-Gigg; Robin Humphreys; Tsin Tai; H Miles Prince; Joseph A Trapani; Mark J Smyth; David S Ritchie
Journal:  Oncoimmunology       Date:  2015-05-27       Impact factor: 8.110

8.  Non-osseous incidental findings in low-dose whole-body CT in patients with multiple myeloma.

Authors:  A Surov; A G Bach; A Tcherkes; D Schramm
Journal:  Br J Radiol       Date:  2014-07-09       Impact factor: 3.039

Review 9.  Can we change the disease biology of multiple myeloma?

Authors:  Ivan Borrello
Journal:  Leuk Res       Date:  2012-11       Impact factor: 3.156

10.  Pattern of the epitope-specific IgG/IgM response against human cytomegalovirus in patients with multiple myeloma.

Authors:  Elke Bogner; Gabriele Pecher
Journal:  Clin Vaccine Immunol       Date:  2013-06-19
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