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Journal ArticleDOI

Circadian Timing in Cancer Treatments

TLDR
The circadian timing system is composed of molecular clocks, which drive 24-h changes in xenobiotic metabolism and detoxification, cell cycle events, DNA repair, apoptosis, and angiogenesis, so that they tick in synchrony in the host tissues that can be damaged by anticancer agents.
Abstract
The circadian timing system is composed of molecular clocks, which drive 24-h changes in xenobiotic metabolism and detoxification, cell cycle events, DNA repair, apoptosis, and angiogenesis. The cellular circadian clocks are coordinated by endogenous physiological rhythms, so that they tick in synchrony in the host tissues that can be damaged by anticancer agents. As a result, circadian timing can modify 2- to 10-fold the tolerability of anticancer medications in experimental models and in cancer patients. Improved efficacy is also seen when drugs are given near their respective times of best tolerability, due to (a) inherently poor circadian entrainment of tumors and (b) persistent circadian entrainment of healthy tissues. Conversely, host clocks are disrupted whenever anticancer drugs are administered at their most toxic time. On the other hand, circadian disruption accelerates experimental and clinical cancer processes. Gender, circadian physiology, clock genes, and cell cycle critically affect outcome on cancer chronotherapeutics. Mathematical and systems biology approaches currently develop and integrate theoretical, experimental, and technological tools in order to further optimize and personalize the circadian administration of cancer treatments.

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Metallodrugs are unique: opportunities and challenges of discovery and development

TL;DR: In this paper, the authors focus on early-stage in vitro drug discovery, highlighting the challenges of evaluating anticancer, antimicrobial and antiviral metallo-pharmacophores in cultured cells, and identifying their targets.
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Sex differences in circadian timing systems: implications for disease.

TL;DR: The present review highlights the inter-relationship between circadian clocks and sex differences and points to ways in which disruption of circadian rhythms within these systems differs in the sexes and is associated with dysfunction and disease.
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Circadian clock control of the cellular response to DNA damage

TL;DR: The circadian clock plays an important role in determining the strengths of cellular responses to DNA damage including repair, checkpoints, and apoptosis, and new insights are expected to guide development of novel mechanism‐based chemotherapeutic regimens.
Journal ArticleDOI

Individualization of Irinotecan Treatment: A Review of Pharmacokinetics, Pharmacodynamics, and Pharmacogenetics

TL;DR: An updated overview on today’s literature on irinotecan pharmacokinetics, pharmacodynamics, and pharmacogenetics is provided.
References
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Journal ArticleDOI

From inflammation to sickness and depression: when the immune system subjugates the brain

TL;DR: In response to a peripheral infection, innate immune cells produce pro-inflammatory cytokines that act on the brain to cause sickness behaviour, which can lead to an exacerbation of sickness and the development of symptoms of depression in vulnerable individuals.
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5-Fluorouracil: mechanisms of action and clinical strategies

TL;DR: This work has shown that novel genes identified in DNA microarray profiling have the potential to identify novel genes that are involved in mediating resistance to 5-FU, and these genes might prove to be therapeutically valuable as new targets for chemotherapy, or as predictive biomarkers of response to5-FU-based chemotherapy.
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Coordination of circadian timing in mammals

TL;DR: Circadian rhythms are generated by one of the most ubiquitous and well-studied timing systems and are tamed by a master clock in the brain, which coordinates tissue-specific rhythms according to light input it receives from the outside world.
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Can the pharmaceutical industry reduce attrition rates

TL;DR: The pharmaceutical industry faces considerable challenges, both politically and fiscally, and the fiscal pressures that face the industry from the perspective of R&D are dealt with.
Journal ArticleDOI

Coordinated transcription of key pathways in the mouse by the circadian clock.

TL;DR: Genetic and genomic analysis suggests that a relatively small number of output genes are directly regulated by core oscillator components, and major processes regulated by the SCN and liver were found to be under circadian regulation.
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