Cancer Immunosurveillance /

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Bibliographic Details
Imprint:New York, N.Y. : Humana Press : Springer, [2018].
c2019
Description:1 online resource (xiii, 363 pages) : illustrations (some color).
Language:English
Series:Methods in molecular biology, 1940-6029 ; 1884
Springer protocols
Methods in molecular biology (Clifton, N.J.) ; v. 1884.
Springer protocols (Series)
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11737671
Hidden Bibliographic Details
Other authors / contributors:Lopez-Soto, Alejandro, editor.
Folgueras, Alicia R., editor.
ISBN:9781493988853
1493988859
9781493988846
1493988840
Digital file characteristics:text file PDF
Notes:Includes bibliographical references and index.
Online resource; title from PDF title page (SpringerLink, viewed November 26, 2018).
Other form:Print version: Cancer Immunosurveillance. New York, N.Y. : Humana Press, 2018 9781493988846

MARC

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245 0 0 |a Cancer Immunosurveillance /  |c edited by Alejandro López-Soto, Alicia R. Folgueras. 
264 1 |a New York, N.Y. :  |b Humana Press :  |b Springer,  |c [2018]. 
264 4 |c c2019 
300 |a 1 online resource (xiii, 363 pages) :  |b illustrations (some color). 
336 |a text  |b txt  |2 rdacontent 
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490 1 |a Methods in molecular biology,  |x 1940-6029 ;  |v 1884 
490 1 |a Springer protocols 
504 |a Includes bibliographical references and index. 
588 0 |a Online resource; title from PDF title page (SpringerLink, viewed November 26, 2018). 
505 0 0 |t Usage of droplet digital PCR (ddPCR) assays for T cell quantification in cancer /  |r Willem H. Zoutman, Rogier J. Nell, and Pieter A. van der Velden --  |t Economical, quantitative, and robust protocol for high-throughput T cell receptor sequencing from tumor or blood /  |r Imran Uddin, Kroopa Joshi, Theres Oakes, James M. Heather, Charles Swanton, on behalf of the TRACERx consortium, and Benny Chain --  |t Generation of tumor antigen-specific cytotoxic T lymphocytes from pluripotent stem cells /  |r Xiaoniao Chen, Fengyang Lei, Liqiang Wang, Xiaofang Xiong, and Jianxun Song --  |t Expansion and adoptive transfer of human V?2+ T cells to assess antitumor effects in vivo /  |r Akshat Sharma, Nicholas A. Zumwalde, and Jenny E. Gumperz --  |t Usage of single-cell RNA sequencing to unveil immune lymphoid cell precursors /  |r Yong Yu and Pengtao Liu --  |t Isolation, expansion, and characterization of natural killer cells and their precursors as a tool to study cancer immunosurveillance /  |r Monica Parodi, Raffaella Meazza, Chiara Vitale, Gabriella Pietra, Paolo Carrega, and Massimo Vitale --  |t CD107a degranulation assay to evaluate immune cell antitumor activity /  |r Seila Lorenzo-Herrero, Christian Sordo-Bahamonde, Segundo Gonzalez, and Alejandro López-Soto --  |t Flow cytometric NK cell-mediated cytotoxicity assay to evaluate anticancer immune responses in vitro /  |r Seila Lorenzo-Herrero, Christian Sordo-Bahamonde, Segundo González, and Alejandro López-Soto --  |t Mouse models to study natural killer cell-mediated immunosurveillance and metastatic latency /  |r Vidhya R. Nair and Srinivas Malladi --  |t Tumor-associated macrophage isolation and in vivo analysis of their tumor-promoting activity /  |r Nicholas M. Clark and Paula D. Bos --  |t Conditional genetic ablation mouse models as a tool to study cancer immunosurveillance in vivo /  |r Magali Dupont and Christian A. J. Vosshenrich --  |t Determination and isolation of immune populations from brain tumor microenvironments /  |r Javier Godino and Alberto J. Schuhmacher --  |t Mouse model of colitis-associated colorectal cancer (CAC) : isolation and characterization of mucosal-associated lymphoid cells /  |r Llipsy Santiago, Marta Castro, Julián Pardo, and Maykel Arias --  |t Cancer exome-based identification of tumor neo-antigens using mass spectrometry /  |r Shelly Kalaora and Yardena Samuels --  |t Single-cell mass cytometry of archived human epithelial tissue for decoding cancer signaling pathways /  |t Cherie' R. Scurrah, Alan J. Simmons, and Ken S. Lau --  |t Purification of leukemia-derived exosomes to study microenvironment modulation /  |r Marina Wierz, Sandrine Pierson, Ernesto Gargiulo, Coralie Guerin, Etienne Moussay, and Jerome Paggetti --  |t Molecular characterization of circulating tumor cells to study cancer immunoevasion /  |r Chiara Nicolazzo, Angela Gradilone, Guido Carpino, Paola Gazzaniga,and Cristina Raimondi --  |t Quantitative identification of senescent cells in cancer /  |r Anat Biran, Ziv Porat, and Valery Krizhanovsky --  |t Generation and harnessing of heterotypic tumor-stroma spheroids to study cancer immunosurveillance /  |r Dirk Zboralski and Anna Frömming --  |t Establishment of slice cultures as a tool to study the cancer immune microenvironment /  |r Xiuyun Jiang, Y. David Seo, Kevin M. Sullivan, and Venu G. Pillarisetty --  |t Gold standard assessment of immunogenic cell death in oncological mouse models /  |r Juliette Humeau, Sarah Lévesque, Guido Kroemer, and Jonathan G. Pol --  |t Novel dendritic cell-based vaccination protocol to stimulate immunosurveillance of aggressive cancers /  |r Annunziata Nigro, Barbara Montico, Vincenzo Casolaro, and Jessica Dal Col --  |t Development of bispecific antibody derivatives for cancer immunotherapy /  |r Yuan He, Wijnand Helfrich, and Edwin Bremer --  |t Generation of CAR-T cells for cancer immunotherapy /  |r Qumiao Xu, Hizkia Harto, Robert Berahovich, Shirley Xu, Hua Zhou, Vita Golubovskaya, and Lijun Wu. 
650 0 |a Cancer  |x Immunological aspects  |v Laboratory manuals. 
650 2 |a Neoplasms  |x immunology. 
650 2 |a Monitoring, Immunologic  |x methods. 
650 2 |a Immunotherapy  |x methods. 
650 7 |a Cancer  |x Immunological aspects.  |2 fast  |0 (OCoLC)fst00845383 
655 2 |a Laboratory Manual. 
655 4 |a Electronic books. 
655 7 |a Laboratory manuals.  |2 fast  |0 (OCoLC)fst01920776 
700 1 |a Lopez-Soto, Alejandro,  |e editor.  |0 http://id.loc.gov/authorities/names/no2018166482 
700 1 |a Folgueras, Alicia R.,  |e editor.  |0 http://id.loc.gov/authorities/names/no2018166438 
776 0 8 |i Print version:  |t Cancer Immunosurveillance.  |d New York, N.Y. :  |b Humana Press, 2018  |z 9781493988846 
830 0 |a Methods in molecular biology (Clifton, N.J.) ;  |v v. 1884.  |x 1064-3745  |0 http://id.loc.gov/authorities/names/n92002874 
830 0 |a Springer protocols (Series)  |0 http://id.loc.gov/authorities/names/no2008180772 
880 0 0 |6 505-00/(S  |t Usage of droplet digital PCR (ddPCR) assays for T cell quantification in cancer /  |r Willem H. Zoutman, Rogier J. Nell, and Pieter A. van der Velden --  |t Economical, quantitative, and robust protocol for high-throughput T cell receptor sequencing from tumor or blood /  |r Imran Uddin, Kroopa Joshi, Theres Oakes, James M. Heather, Charles Swanton, on behalf of the TRACERx consortium, and Benny Chain --  |t Generation of tumor antigen-specific cytotoxic T lymphocytes from pluripotent stem cells /  |r Xiaoniao Chen, Fengyang Lei, Liqiang Wang, Xiaofang Xiong, and Jianxun Song --  |t Expansion and adoptive transfer of human Vδ2+ T cells to assess antitumor effects in vivo /  |r Akshat Sharma, Nicholas A. Zumwalde, and Jenny E. Gumperz --  |t Usage of single-cell RNA sequencing to unveil immune lymphoid cell precursors /  |r Yong Yu and Pengtao Liu --  |t Isolation, expansion, and characterization of natural killer cells and their precursors as a tool to study cancer immunosurveillance /  |r Monica Parodi, Raffaella Meazza, Chiara Vitale, Gabriella Pietra, Paolo Carrega, and Massimo Vitale --  |t CD107a degranulation assay to evaluate immune cell antitumor activity /  |r Seila Lorenzo-Herrero, Christian Sordo-Bahamonde, Segundo Gonzalez, and Alejandro López-Soto --  |t Flow cytometric NK cell-mediated cytotoxicity assay to evaluate anticancer immune responses in vitro /  |r Seila Lorenzo-Herrero, Christian Sordo-Bahamonde, Segundo González, and Alejandro López-Soto --  |t Mouse models to study natural killer cell-mediated immunosurveillance and metastatic latency /  |r Vidhya R. Nair and Srinivas Malladi --  |t Tumor-associated macrophage isolation and in vivo analysis of their tumor-promoting activity /  |r Nicholas M. Clark and Paula D. Bos --  |t Conditional genetic ablation mouse models as a tool to study cancer immunosurveillance in vivo /  |r Magali Dupont and Christian A. J. Vosshenrich --  |t Determination and isolation of immune populations from brain tumor microenvironments /  |r Javier Godino and Alberto J. Schuhmacher --  |t Mouse model of colitis-associated colorectal cancer (CAC) : isolation and characterization of mucosal-associated lymphoid cells /  |r Llipsy Santiago, Marta Castro, Julián Pardo, and Maykel Arias --  |t Cancer exome-based identification of tumor neo-antigens using mass spectrometry /  |r Shelly Kalaora and Yardena Samuels --  |t Single-cell mass cytometry of archived human epithelial tissue for decoding cancer signaling pathways /  |t Cherie' R. Scurrah, Alan J. Simmons, and Ken S. Lau --  |t Purification of leukemia-derived exosomes to study microenvironment modulation /  |r Marina Wierz, Sandrine Pierson, Ernesto Gargiulo, Coralie Guerin, Etienne Moussay, and Jerome Paggetti --  |t Molecular characterization of circulating tumor cells to study cancer immunoevasion /  |r Chiara Nicolazzo, Angela Gradilone, Guido Carpino, Paola Gazzaniga,and Cristina Raimondi --  |t Quantitative identification of senescent cells in cancer /  |r Anat Biran, Ziv Porat, and Valery Krizhanovsky --  |t Generation and harnessing of heterotypic tumor-stroma spheroids to study cancer immunosurveillance /  |r Dirk Zboralski and Anna Frömming --  |t Establishment of slice cultures as a tool to study the cancer immune microenvironment /  |r Xiuyun Jiang, Y. David Seo, Kevin M. Sullivan, and Venu G. Pillarisetty --  |t Gold standard assessment of immunogenic cell death in oncological mouse models /  |r Juliette Humeau, Sarah Lévesque, Guido Kroemer, and Jonathan G. Pol --  |t Novel dendritic cell-based vaccination protocol to stimulate immunosurveillance of aggressive cancers /  |r Annunziata Nigro, Barbara Montico, Vincenzo Casolaro, and Jessica Dal Col --  |t Development of bispecific antibody derivatives for cancer immunotherapy /  |r Yuan He, Wijnand Helfrich, and Edwin Bremer --  |t Generation of CAR-T cells for cancer immunotherapy /  |r Qumiao Xu, Hizkia Harto, Robert Berahovich, Shirley Xu, Hua Zhou, Vita Golubovskaya, and Lijun Wu. 
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