Animal Modeling in Cancer

Dear Readers, Understanding the pathological mechanisms involved in human diseases and their possible treatment has been historically based on comparative analysis of diverse animal species that share a similar genetic, physiological and behavioural composition. The ancient Greeks were the first to...

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Year of Publication:2021
Language:English
Physical Description:1 electronic resource (273 p.)
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spelling Korinek, Vladimir edt
Animal Modeling in Cancer
Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
1 electronic resource (273 p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Open access Unrestricted online access star
Dear Readers, Understanding the pathological mechanisms involved in human diseases and their possible treatment has been historically based on comparative analysis of diverse animal species that share a similar genetic, physiological and behavioural composition. The ancient Greeks were the first to use animals as models for anatomy and physiology, and this was consequently adopted by other cultures and led to important discoveries. In recent years, there have been many efforts to understand and fight cancer through new revolutionary personalized treatments and wider screenings that help diagnose and treat cancer. A fundamental part of this effort is to develop suitable cancer animal models that simulate the different disease variants and their progression. Ranging from tumor-derived xenografts to genetically engineered models, a wide variety of systems are applied for this purpose, and many technological breakthroughs are changing the way cancer is studied and analyzed. In this Special Issue, we collected a set of research articles and reviews that focus on the generation of cancer animal models that are used for understanding the disease and contribute to designing and testing new drugs for cancer prevention or treatment. Vladimir Korinek Collection Editor
English
Research & information: general bicssc
Biology, life sciences bicssc
soy
isoflavones
mammary tumor prevention
rodent models
chemical carcinogens
transgenic mice
Zebrafish
Drosophila
rats
mice
NPM-1
FLT3 ITD
ETO-1
IDH1/2
neural stem cells
brain and nervous system cancers
neurogenic niches
radiotherapy
sparing of neurogenic regions
carcinoma
consensus molecular subtypes
intestine
oncogenes
signaling cascades
tumor suppressors
tumorigenesis
MPN (myeloproliferative neoplasms)
zebrafish
iPSCs
JAK2
MPL
CALR
thrombosis
ubiquitin–proteasome system
cancer
mouse model
gene inactivation
colorectal cancer
mouse models
microbiota
antitumor immunity
melanoma
mutation
genetics
animal model
swine
MeLiM
progression
spontaneous regression
devitalization
metaplasia
Cdx
animal models
epigenetics
xenotransplantation
drug screen
pre-clinical cancer model
non-mouse models
gene editing
stem cells
solid tumors
hematologic malignancies
3-0365-1276-4
3-0365-1277-2
Korinek, Vladimir oth
language English
format eBook
author2 Korinek, Vladimir
author_facet Korinek, Vladimir
author2_variant v k vk
author2_role Sonstige
title Animal Modeling in Cancer
spellingShingle Animal Modeling in Cancer
title_full Animal Modeling in Cancer
title_fullStr Animal Modeling in Cancer
title_full_unstemmed Animal Modeling in Cancer
title_auth Animal Modeling in Cancer
title_new Animal Modeling in Cancer
title_sort animal modeling in cancer
publisher MDPI - Multidisciplinary Digital Publishing Institute
publishDate 2021
physical 1 electronic resource (273 p.)
isbn 3-0365-1276-4
3-0365-1277-2
illustrated Not Illustrated
work_keys_str_mv AT korinekvladimir animalmodelingincancer
status_str n
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