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Dive into the research topics where Bill Phillips is active.

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Featured researches published by Bill Phillips.


Journal of Immunology | 2006

Immunologic Control of Tumors by In Vivo Fcγ Receptor-Targeted Antigen Loading in Conjunction with Double-Stranded RNA-Mediated Immune Modulation

Adrian Bot; Daniel J. Smith; Bill Phillips; Simona Bot; Constantin A. Bona; Habib Zaghouani

Despite the expression of non-self or neo-epitopes, many tumors such as lymphoid malignancies or cancers induced by oncogenic viruses are able to gradually overcome the immune defense mechanisms and spread. Using a preclinical model of hematological malignancy, we show that Ig-associated idiotypic determinants are recognized by the immune system in a fashion that results in immune deviation, allowing tumor progression and establishment of metastases. Using gene-targeted mice, we show that anti-idiotypic MHC class I-restricted immunity is promoted by ITAM motif (ITAM+) FcγR, but kept in check by ITIM motif (ITIM+) FcγRIIB-mediated mechanisms. In addition to interfering with the functionality of ITIM+ FcγR, effective anti-idiotypic and antitumoral immunity can be achieved by FcγR-targeted delivery of epitope in conjunction with administration of stimulatory motifs such as dsRNA, correcting the ineffective response to idiotypic epitopes. The immune process initiated by FcγR-mediated targeting of epitope together with dsRNA, resulted in control of tumor growth, establishment of immune memory and protection against tumors bearing antigenic variants. In summary, targeted delivery of MHC class I-restricted epitopes via ITAM+ FcγR, in conjunction with use of TLR-binding immune stimulatory motifs such as dsRNA, overcomes suboptimal responses to idiotypic determinants and may constitute a novel approach for the treatment of a broad range of malignancies. Finally, the results shed light on the mechanisms regulating the idiotypic network and managing the diversity associated with immune receptors.


Archive | 2003

Methods and compositions to generate and control the effector profile of t cells by simultaneous loading and activation of selected subsets of antigen presenting cells

Adrian Bot; L. Wang; Dan Smith; Bill Phillips


Archive | 2003

Compositions and methods to initiate or enhance antibody and major-histocompatibility class I or class II-restricted t cell responses by using immunomodulatory, non-coding rna motifs

Adrian Bot; L. Wang; Luis A. Dellamary; Dan Smith; Bill Phillips


Archive | 2003

Immunostimulatory double stranded rna and methods of inducing, enhancing or modulating the immune response

Adrian Bot; L. Wang; Luis A. Dellamary; Dan Smith; Bill Phillips


Archive | 2006

Compositions and methods to treat and control tumors by loading antigen presenting cells

Adrlan Bot; L. Wang; Luis Dellemary; Dan Smith; Bill Phillips


Archive | 2010

Compositions and methods to treat and control tumors

Adrian Bot; L. Wang; Luis A. Dellamary; Dan Smith; Bill Phillips


Archive | 2008

Double-chain RNA and method for initiate, enhance or adjust immunomodulatory of immune response

L. Wang; Luis A. Dellamary; Dan Smith; Bill Phillips


Archive | 2006

Methods and compositions to generate and control the effector profile of t cells

L. Wang; Dan Smith; Bill Phillips; Adrian Bot


Archive | 2003

Compositions et procedes permettant d'initier ou d'ameliorer les reponses des cellules t limitees par le complexe majeur d'histocompatibilite de classe i ou ii et un anticorps au moyen de motifs d'arn non codants immunomodulateurs

Adrian Bot; Luis A. Dellamary; Bill Phillips; Dan Smith; L. Wang


Archive | 2003

Verfahren und zusammensetzungen zur herstellung und steuerung des effektorprofils von t-zellen durch gleichzeitiges beladen und aktivieren ausgewählter untergruppen von antigen-präsentierenden zellen

Adrian Bot; L. Wang; Dan Smith; Bill Phillips

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Constantin A. Bona

Icahn School of Medicine at Mount Sinai

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Simona Bot

Icahn School of Medicine at Mount Sinai

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