Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Meghan D. Kellett"'
Autor:
Katie M. Mishall, Rebecca E. Schweppe, Aik Choon Tan, Erin G. Clark, Umarani Pugazhenthi, Nikita Pozdeyev, Jihye Kim, Meghan D. Kellett, Brittelle E. Kessler
Publikováno v:
Oncogene
Few therapy options exist for patients with advanced papillary and anaplastic thyroid cancer. We and others have previously identified c-Src as a key mediator of thyroid cancer pro-tumorigenic processes and a promising therapeutic target for thyroid
Autor:
Stuart H. Yuspa, Yuta Inoue, Stephen R. Brooks, A. Overmiller, Sei-ichiro Motegi, Andrew P. Sawaya, Christophe Cataisson, Kowser Hasneen, S. Mehdizadeh, Maria I. Morasso, Elisabetta Palazzo, Meghan D. Kellett, Deepti Bajpai, Akihiko Uchiyama
Publikováno v:
Oncogene
Cutaneous squamous cell carcinoma (cSCC) ranks second in the frequency of all skin cancers. The balance between keratinocyte proliferation and differentiation is disrupted in the pathological development of cSCC. DLX3 is a homeobox transcription fact
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a040f1b1b91374dd74da86f576ebc18c
https://hdl.handle.net/11380/1284408
https://hdl.handle.net/11380/1284408
Autor:
Anna C Gormley, Maria I. Morasso, Shreya Bhattacharya, Stuart H. Yuspa, Meghan D. Kellett, Elisabetta Palazzo, Christophe Cataisson, Hong-Wei Sun, Paul W Bible
Publikováno v:
Cell Death and Differentiation
Epidermal homeostasis relies on a well-defined transcriptional control of keratinocyte proliferation and differentiation, which is critical to prevent skin diseases such as atopic dermatitis, psoriasis or cancer. We have recently shown that the homeo
Autor:
Miroslav Blumenberg, Elisabetta Palazzo, Meghan D. Kellett, Christophe Cataisson, Stuart H. Yuspa, Nadezda Radoja, Pietroni, Maria I. Morasso, Hwang J, Paul W Bible, A. Gormley
Publikováno v:
Oncogene
Epidermal homeostasis depends on the coordinated control of keratinocyte cell cycle. Differentiation and the alteration of this balance can result in neoplastic development. Here we report on a novel DLX3-dependent network that constrains epidermal h