Skip to content
Open access

System biology analysis reveals circadian rhythm disorder associated with development and progression in colorectal cancer

Sep 2026 · npj Precision Oncology · 0 citations

TL;DR

The ClockProCRC system is developed and validated, which detects and quantifies intrinsic circadian misalignment in CRC and elucidates how circadian misalignment drives CRC progression trajectories, shapes clinical phenotypes, regulates disease manifestations, and reshapes the tumor microenvironment.

Abstract

Circadian rhythm disorders represent an abstract concept lacking standardized quantitative metrics. Existing circadian indicators, including traditional rhythm parameters and a limited set of clock gene or physiological biomarkers, are insufficient to robustly capture steady-state endogenous circadian homeostasis in complex disease contexts, thereby constraining quantitative assessment of circadian disruption and limiting its translational applicability. Chronic circadian rhythm disruption is associated with various diseases, including metabolic disorders and malignancies. However, the mechanisms by which circadian disruption influences tumor microenvironment formation and colorectal cancer progression remain incompletely understood. This study employs systems biology analysis to decipher the molecular characteristics of circadian rhythm disruption in colorectal cancer progression. We analyzed single-cell RNA sequencing data from 13 CRC tissue samples and 12 normal mucosal samples, combined with 3733 samples from 34 public batch RNA, microarray, and single-cell RNA sequencing cohorts. We developed and validated the ClockProCRC system, which detects and quantifies intrinsic circadian misalignment in CRC. The ClockProCRC score elucidates how circadian misalignment drives CRC progression trajectories, shapes clinical phenotypes, regulates disease manifestations, and reshapes the tumor microenvironment. SYNE1 gene was identified as a key mediator of circadian misalignment, promoting tumorigenesis by driving epithelial-like phenotypic conversion and demonstrating therapeutic potential in colorectal cancer management. This study establishes a foundation for integrating rhythmic information into clinical practice and advances circadian biology research in the field of CRC.

Read PDF

Similar papers

Review Open access 2026

The Role of Circadian Rhythm Disruption in the Development of Colorectal Cancer: A Literature Review

Rates of early-onset colorectal cancer (CRC) have increased among adults under age 50, encouraging interest in environmental and lifestyle factors that may contribute to CRC more broadly. One emerging area of interest is disruption of the circadian rhythm, the body’s internal biological clock. Modern lifestyles can int...

Natalia Ali · 0 citations
Open access Sep 2026

CircadiOmics: bioinformatics platform for circadian rhythms.

MOTIVATION Circadian rhythms are fundamental to biology: they occur at the molecular level across all species and are critical to homeostasis and biological functions. They are also essential for health and medicine, as disruption of circadian regulation has been linked to numerous health problems, and many drug target...

Kousha Changizi Ashtiani, Pierre Baldi · 0 citations
Review Open access Aug 2026

Role of circadian clock in oral squamous cell carcinoma pathogenesis and treatment.

The circadian clock is an endogenous timing mechanism that enables cellular physiological activities to adapt to environmental changes. It is primarily composed of circadian clock genes and their encoded proteins, which form a transcription-translation negative feedback loop, generating circadian rhythmic oscillations...

Ming-Yuan Liu, Kai Yang · 0 citations
Open access Sep 2026

Single-cell transcriptomics reveals cell-type-specific circadian rhythms and their disruption by acute misalignment in mouse aorta

The circadian molecular clock is a 24-hour cellular timekeeper that influences many features of cardiovascular function. Disruption of the circadian clock via misalignment with the light-dark cycle is associated with a higher incidence of cardiovascular disease and raises cardiovascular risk factors in humans. Nonethel...

Benjamin J. Auerbach, R. Lordan, S. Tang et al. · 0 citations
Open access Aug 2026

Circadian rhythm dysregulation and brain functional connectivity alterations in stroke patients: an exploratory study of peripheral and central clock interactions

The human circadian rhythm system is governed by a transcriptional-translational feedback loop of clock genes, including Bmal1 , which exhibits a near-24-hour oscillatory period. Emerging evidence highlights the critical contribution of circadian genes to stroke pathogenesis and outcomes, yet mechanistic insi...

Xiaoli Wu, Fan Bai, Lu Zhang et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.