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Open AccessJournal ArticleDOI

IKKβ Couples Hepatocyte Death to Cytokine-Driven Compensatory Proliferation that Promotes Chemical Hepatocarcinogenesis

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TLDR
IKKbeta orchestrates inflammatory crosstalk between hepatocytes and hematopoietic-derived cells that promotes chemical hepatocarcinogenesis and blocks excessive DEN-induced carcinogenesis in Ikkbeta(Deltahep) mice.
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This article is published in Cell.The article was published on 2005-07-01 and is currently open access. It has received 1145 citations till now. The article focuses on the topics: Hepatocyte.

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Cancer-related inflammation.

TL;DR: The molecular pathways of this cancer-related inflammation are now being unravelled, resulting in the identification of new target molecules that could lead to improved diagnosis and treatment.
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Immunity, Inflammation, and Cancer

TL;DR: The principal mechanisms that govern the effects of inflammation and immunity on tumor development are outlined and attractive new targets for cancer therapy and prevention are discussed.
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Nuclear factor-kappaB in cancer development and progression.

TL;DR: This article showed that NF-kappaB provides a mechanistic link between inflammation and cancer, and is a major factor controlling the ability of both pre-neoplastic and malignant cells to resist apoptosis-based tumour-surveillance mechanisms.
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NF-kappaB: linking inflammation and immunity to cancer development and progression.

TL;DR: The hypothesis is put forward that activation of nuclear factor-κB by the classical, IKK-β (inhibitor-of-NF-β kinase-β)-dependent pathway is a crucial mediator of inflammation-induced tumour growth and progression, as well as an important modulator of tumour surveillance and rejection.
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Cancer-related inflammation, the seventh hallmark of cancer: links to genetic instability.

TL;DR: This work surmises that CRI represents the seventh hallmark of cancer, and suggests that an additional mechanism involved in cancer-related inflammation (CRI) is induction of genetic instability by inflammatory mediators, leading to accumulation of random genetic alterations in cancer cells.
References
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The hallmarks of cancer.

TL;DR: This work has been supported by the Department of the Army and the National Institutes of Health, and the author acknowledges the support and encouragement of the National Cancer Institute.
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Inflammation and cancer

TL;DR: It is now becoming clear that the tumour microenvironment, which is largely orchestrated by inflammatory cells, is an indispensable participant in the neoplastic process, fostering proliferation, survival and migration.
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Release of chromatin protein HMGB1 by necrotic cells triggers inflammation

TL;DR: It is reported that Hmgb1-/- necrotic cells have a greatly reduced ability to promote inflammation, which proves that the release of HMGB1 can signal the demise of a cell to its neighbours, and cells undergoing apoptosis are programmed to withhold the signal that is broadcast by cells that have been damaged or killed by trauma.
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Missing Pieces in the NF-κB Puzzle

TL;DR: In this paper, a review of recent progress as well as unanswered questions regarding the regulation and function of NF-kappaB and IKK is presented, focusing on recent progress and unanswered questions.
Book ChapterDOI

Determination of aldehydic lipid peroxidation products: malonaldehyde and 4-hydroxynonenal

TL;DR: This chapter discusses the methods used for the qualitative and quantitative determination of aldehydes in biological systems and focuses on 4-hydroxynonenal and malondialdehyde, which are in many instances the most abundant individual aldehyde resulting from lipid peroxidation.
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