E
Elizabeth W. Howerth
Researcher at University of Georgia
Publications - 249
Citations - 5832
Elizabeth W. Howerth is an academic researcher from University of Georgia. The author has contributed to research in topics: Virus & Viral shedding. The author has an hindex of 39, co-authored 238 publications receiving 5053 citations. Previous affiliations of Elizabeth W. Howerth include Colorado State University & Louisiana State University.
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Journal ArticleDOI
Proposal of a 2-Tier Histologic Grading System for Canine Cutaneous Mast Cell Tumors to More Accurately Predict Biological Behavior
Matti Kiupel,Joshua D. Webster,K L Bailey,Susan J. Best,Josepha DeLay,C J Detrisac,Scott D. Fitzgerald,D Gamble,Pamela E. Ginn,Michael H. Goldschmidt,Mattie J. Hendrick,Elizabeth W. Howerth,Evan B. Janovitz,Ingeborg M. Langohr,S. D. Lenz,Thomas P. Lipscomb,Margaret A. Miller,W. Misdorp,S. D. Moroff,Thomas P. Mullaney,I Neyens,Donal O’Toole,José A. Ramos-Vara,T. J. Scase,F. Y. Schulman,Dodd G. Sledge,Rebecca C. Smedley,Ken C. Smith,Paul W. Snyder,E Southorn,N L Stedman,Barbara A. Steficek,Paul C. Stromberg,Victor E. Valli,Steven E. Weisbrode,Julie A. Yager,Jane Heller,R. Miller +37 more
TL;DR: According to the novel grading system, high-grade MCTs were significantly associated with shorter time to metastasis or new tumor development, and with shorter survival time.
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Survivin: A Bifunctional Inhibitor of Apoptosis Protein
TL;DR: The purpose of this article is to provide an overview of the current knowledge of survivin, including its role in cell division and its expression in normal and neoplastic tissues.
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Isolation of Ehrlichia chaffeensis from wild white-tailed deer (Odocoileus virginianus) confirms their role as natural reservoir hosts.
TL;DR: Findings provide strong evidence that E. chaffeensis is maintained in nature primarily by a tick vector-vertebrate reservoir system consisting of lone star ticks and white-tailed deer.
Journal ArticleDOI
Magnetic Nanoparticle-Based Hyperthermia for Head & Neck Cancer in Mouse Models
Qun Zhao,Luning Wang,Rui Cheng,Leidong Mao,Robert D. Arnold,Elizabeth W. Howerth,Zhuo G. Chen,Simon R. Platt +7 more
TL;DR: Pathological studies demonstrate epithelial tumor cell destruction associated with the hyperthermia treatment and theoretical simulation and experimental results showed that the temperature of the tumor center has dramatically elevated from around the room temperature to about 40oC within the first 5-10 minutes.
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Nanoparticle-Laden Macrophages for Tumor-Tropic Drug Delivery.
Weizhong Zhang,Mengzhe Wang,Wei Tang,Ru Wen,Shiyi Zhou,Chaebin Lee,Hui Wang,Wen Jiang,Ian Michael Delahunty,Zipeng Zhen,Hongmin Chen,Matthew George Chapman,Zhanhong Wu,Elizabeth W. Howerth,Houjian Cai,Zibo Li,Jin Xie +16 more
TL;DR: A silica‐based drug nanocapsule approach to solve the challenge to load large amounts of therapeutics into macrophages without compromising cell functions, and it is shown that doxorubicin (Dox) as a representative drug can be loaded into Macrophages up to 16.6 pg per cell using this approach.