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1. Comparison of short-term effect of thoracoscopic segmentectomy and thoracoscopic lobectomy for the solitary pulmonary nodule and early-stage lung cancer

2. Gremlin-2 is a BMP antagonist that is regulated by the circadian clock

4. The circadian clock regulates rhythmic activation of the NRF2/glutathione-mediated antioxidant defense pathway to modulate pulmonary fibrosis

5. The glomerular circadian clock temporally regulates basement membrane dynamics and the podocyte glucocorticoid response.

6. Can we utilise the circadian clock to target cancer stem cells?

7. Meteorin-like protein/METRNL/Interleukin-41 ameliorates atopic dermatitis-like inflammation.

8. Author Correction: Macromolecular condensation buffers intracellular water potential.

9. Tumor circadian clock strength influences metastatic potential and predicts patient prognosis in luminal A breast cancer.

10. Correlation Analysis between T790M Status and Clinical Characteristics of Patients with EGFR-sensitive Mutation Advanced NSCLC who Progressed after the First Generation and First-line EGFR-TKIs Administration: A Real-world Exploratory Study.

11. Mmp14 is required for matrisome homeostasis and circadian rhythm in fibroblasts.

12. Mechanical loading and hyperosmolarity as a daily resetting cue for skeletal circadian clocks.

13. Macromolecular condensation buffers intracellular water potential.

14. Tick tock, the cartilage clock.

15. The clock transcription factor BMAL1 is a key regulator of extracellular matrix homeostasis and cell fate in the intervertebral disc.

16. The circadian clock and extracellular matrix homeostasis in aging and age-related diseases.

17. Circadian Disruption Primes Myofibroblasts for Accelerated Activation as a Mechanism Underpinning Fibrotic Progression in Non-Alcoholic Fatty Liver Disease.

18. Subtype-specific circadian clock dysregulation modulates breast cancer biology, invasiveness, and prognosis.

19. Highly sensitive detection of low-concentration sodium chloride solutions based on polymeric nanofilms coated long period fiber grating.

20. Directed differentiation of hPSCs through a simplified lateral plate mesoderm protocol for generation of articular cartilage progenitors.

21. The dynamic kidney matrisome - is the circadian clock in control?

22. Effects of alendronate sodium combined with InterTan on osteoporotic femoral intertrochanteric fractures and fracture recurrence.

23. Synthetic gene circuits for preventing disruption of the circadian clock due to interleukin-1-induced inflammation.

24. Development of human cartilage circadian rhythm in a stem cell-chondrogenesis model.

25. Quantification of protein abundance and interaction defines a mechanism for operation of the circadian clock.

26. Restoring the dampened expression of the core clock molecule BMAL1 protects against compression-induced intervertebral disc degeneration.

27. Halloysites modified polyethylene glycol diacrylate/thiolated chitosan double network hydrogel combined with BMP-2 for rat skull regeneration.

28. Tissue physiology revolving around the clock: circadian rhythms as exemplified by the intervertebral disc.

29. Delayed elimination communication on the prevalence of children's bladder and bowel dysfunction.

30. Circadian time series proteomics reveals daily dynamics in cartilage physiology.

31. Incomplete convergence of gliding mammal skeletons.

32. Quantitative live imaging of Venus::BMAL1 in a mouse model reveals complex dynamics of the master circadian clock regulator.

33. Circadian control of the secretory pathway maintains collagen homeostasis.

34. Knockdown of cytokeratin 8 overcomes chemoresistance of chordoma cells by aggravating endoplasmic reticulum stress through PERK/eIF2α arm of unfolded protein response and blocking autophagy.

35. Circadian rhythms in skin and other elastic tissues.

36. Timing metabolism in cartilage and bone: links between circadian clocks and tissue homeostasis.

37. Preservation of circadian rhythms by the protein folding chaperone, BiP.

38. Influence of the extracellular matrix on cell-intrinsic circadian clocks.

39. Disrupted circadian clocks and altered tissue mechanics in primary human breast tumours.

40. LncRNA HCP5 promotes the development of cervical cancer by regulating MACC1 via suppression of microRNA-15a.

41. Epithelial and stromal circadian clocks are inversely regulated by their mechano-matrix environment.

42. [Clinical phenotype and genetic analysis of MED13L syndrome].

43. Involvement of posttranscriptional regulation of Clock in the emergence of circadian clock oscillation during mouse development.

44. New evidence for mammaliaform ear evolution and feeding adaptation in a Jurassic ecosystem.

45. New gliding mammaliaforms from the Jurassic.

46. The intervertebral disc contains intrinsic circadian clocks that are regulated by age and cytokines and linked to degeneration.

47. Cellular mechano-environment regulates the mammary circadian clock.

48. Circadian Clocks in Articular Cartilage and Bone: A Compass in the Sea of Matrices.

49. Circadian clocks and breast cancer.

50. The brain-joint axis in osteoarthritis: nerves, circadian clocks and beyond.

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