Circadian disruption in cancer and regulation of cancer stem cells by circadian clock genes: An updated review DOI Creative Commons
Yiling Zhang, Qiang Zhang, Rundong Liu

et al.

Cancer Letters, Journal Year: 2024, Volume and Issue: unknown, P. 217391 - 217391

Published: Dec. 1, 2024

Circadian rhythm, regulated by a time keeping system termed as the circadian clock, is important for many biological processes in eukaryotes. Disordered rhythm implicated different human diseases, including cardiovascular disease, neurologic metabolic disorders, and cancer. The stem like-cancer cells (or cancer cells, CSCs) are proposed to stand at top of heterogeneous hierarchy solid tumors, which responsible tumor initiation, development, therapy resistance metastasis. Emerging evidence has shown that clock genes potentially regulate stemness features CSCs several malignant systems, leukemia, glioblastoma, breast cancer, colorectal prostate chronotherapies targeting therefore therapeutic potentials treating malignancies. In this review, we have summarized our current knowledge gene regulation normal stem/progenitor cells. Moreover, provided linking dysregulations development. Importantly, listed potential mechanisms underlying CSCs. Finally, offered attempts chronotherapy Elucidating molecular will provide us novel direction development therapeutics target

Language: Английский

Impact of Circadian Clock PER2 Gene Overexpression on Rumen Epithelial Cell Dynamics and VFA Transport Protein Expression DOI Open Access

Rahmat Ali,

Yongkang Zhen,

Xi Zanna

et al.

International Journal of Molecular Sciences, Journal Year: 2024, Volume and Issue: 25(22), P. 12428 - 12428

Published: Nov. 19, 2024

The circadian gene

Language: Английский

Citations

0

Circadian Rhythms of Skin Surface Lipids and Physiological Parameters in Healthy Chinese Women Reveals Circadian Changes in Skin Barrier Function DOI Creative Commons

Lanxing Lv,

Xiaoxi Yan,

Mingyue Zhou

et al.

Biology, Journal Year: 2024, Volume and Issue: 13(12), P. 1031 - 1031

Published: Dec. 10, 2024

Background: Circadian rhythms are driven by the biological clock, an endogenous oscillator that generates approximately 24 h cycles in mammals. The circadian regulation of lipid metabolism plays a crucial role overall metabolic health. An analysis correlation between skin’s physiological parameters and skin lipids can provide better insight into rhythmic changes condition. Objectives: aim was to reveal how surface (SSLs) participate importance oscillation facial molecules maintaining epidermal homeostasis. Methods: Changes SSLs were assessed using UPLC-QTOF-MS. quantified non-invasive instruments. Multivariate data employed evaluate differences. Results: Both exhibited certain variation patterns. Four major classes (fatty acids, glycerophospholipids, prenol lipids, saccharolipids) trends, with seven subclasses contributing most significantly patterns observed. Among assessed, sebum secretion, transepidermal water loss, moisture measurement value, temperature sinusoidal rhythms. Further revealed significant correlations fatty acids saccharolipids values, glycerolipids pH value. In addition, closely associated barrier such as unsaturated ceramide chain lengths correlated values. Conclusions: Through analysis, study elucidates influence diurnal fluctuations on function. These findings hold implications for understanding impairment rhythm disruptions.

Language: Английский

Citations

0

Circadian disruption in cancer and regulation of cancer stem cells by circadian clock genes: An updated review DOI Creative Commons
Yiling Zhang, Qiang Zhang, Rundong Liu

et al.

Cancer Letters, Journal Year: 2024, Volume and Issue: unknown, P. 217391 - 217391

Published: Dec. 1, 2024

Circadian rhythm, regulated by a time keeping system termed as the circadian clock, is important for many biological processes in eukaryotes. Disordered rhythm implicated different human diseases, including cardiovascular disease, neurologic metabolic disorders, and cancer. The stem like-cancer cells (or cancer cells, CSCs) are proposed to stand at top of heterogeneous hierarchy solid tumors, which responsible tumor initiation, development, therapy resistance metastasis. Emerging evidence has shown that clock genes potentially regulate stemness features CSCs several malignant systems, leukemia, glioblastoma, breast cancer, colorectal prostate chronotherapies targeting therefore therapeutic potentials treating malignancies. In this review, we have summarized our current knowledge gene regulation normal stem/progenitor cells. Moreover, provided linking dysregulations development. Importantly, listed potential mechanisms underlying CSCs. Finally, offered attempts chronotherapy Elucidating molecular will provide us novel direction development therapeutics target

Language: Английский

Citations

0