An authoritative collection of optimal techniques for producing and characterizing the immunologically active cells and effector molecules now gaining wide use in the clinical treatment of patients. Taking advantage of the latest technologies, the authors present readily reproducible experimental protocols for the study of dendritic cells, T cells, monoclonal antibodies, and bone marrow transplantation. The emphasis is on preclinicical and clinical applications and on the progress of selected approaches in clinical trials. Additional chapters cover the molecular definition of target antigens,...
An authoritative collection of optimal techniques for producing and characterizing the immunologically active cells and effector molecules now gaining...
An authoritative collection of optimal techniques for producing and characterizing the immunologically active cells and effector molecules now gaining wide use in the clinical treatment of patients. Taking advantage of the latest technologies, the authors present readily reproducible experimental protocols for the study of dendritic cells, T cells, monoclonal antibodies, and bone marrow transplantation. The emphasis is on preclinicical and clinical applications and on the progress of selected approaches in clinical trials. Additional chapters cover the molecular definition of target antigens,...
An authoritative collection of optimal techniques for producing and characterizing the immunologically active cells and effector molecules now gaining...
Grennady Bocharov Andreas Meyerhans Burkhard Ludewig
This monograph concisely but thoroughly introduces the reader to the field of mathematical immunology. The target audience primarily comprises researchers and graduate students in the field of mathematical biology who wish to be concisely introduced into mathematical immunology.
This monograph concisely but thoroughly introduces the reader to the field of mathematical immunology. The target audience primarily comprises researc...