Selective inhibition of weak-affinity epitope-IgE interactions via heterobivalent inhibitor design prevents mast cell degranulation

M. W. Handlogten, T. Kiziltepe, A. Serezani, Mark Kaplan, B. Bilgicer

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Original languageEnglish (US)
Title of host publicationFood, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future
PublisherAIChE
Pages183-184
Number of pages2
ISBN (Print)9781634390415
StatePublished - 2013
Externally publishedYes
EventFood, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future - San Francisco, United States
Duration: Nov 3 2013Nov 8 2013

Other

OtherFood, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future
CountryUnited States
CitySan Francisco
Period11/3/1311/8/13

Fingerprint

Epitopes
Cell Degranulation
mast cells
Mast Cells
Immunoglobulin E
epitopes

ASJC Scopus subject areas

  • Food Science
  • Chemical Engineering(all)
  • Engineering(all)

Cite this

Handlogten, M. W., Kiziltepe, T., Serezani, A., Kaplan, M., & Bilgicer, B. (2013). Selective inhibition of weak-affinity epitope-IgE interactions via heterobivalent inhibitor design prevents mast cell degranulation. In Food, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future (pp. 183-184). AIChE.

Selective inhibition of weak-affinity epitope-IgE interactions via heterobivalent inhibitor design prevents mast cell degranulation. / Handlogten, M. W.; Kiziltepe, T.; Serezani, A.; Kaplan, Mark; Bilgicer, B.

Food, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future. AIChE, 2013. p. 183-184.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Handlogten, MW, Kiziltepe, T, Serezani, A, Kaplan, M & Bilgicer, B 2013, Selective inhibition of weak-affinity epitope-IgE interactions via heterobivalent inhibitor design prevents mast cell degranulation. in Food, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future. AIChE, pp. 183-184, Food, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future, San Francisco, United States, 11/3/13.
Handlogten MW, Kiziltepe T, Serezani A, Kaplan M, Bilgicer B. Selective inhibition of weak-affinity epitope-IgE interactions via heterobivalent inhibitor design prevents mast cell degranulation. In Food, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future. AIChE. 2013. p. 183-184
Handlogten, M. W. ; Kiziltepe, T. ; Serezani, A. ; Kaplan, Mark ; Bilgicer, B. / Selective inhibition of weak-affinity epitope-IgE interactions via heterobivalent inhibitor design prevents mast cell degranulation. Food, Pharmaceutical and Bioengineering Division 2013 - Core Programming Area at the 2013 AIChE Annual Meeting: Global Challenges for Engineering a Sustainable Future. AIChE, 2013. pp. 183-184
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