Habitual entrepreneurship and transgenerational continuity in family business [PDF]
Rosa, P.
core
Pre‐Encoded IFN‐I Sensitivity Exacerbates Memory T Cell Senescence in Solid Tumors
Type I interferon (IFN‐I) signaling promotes p21‐dependent cell cycle arrest in senescent tumor‐specific memory T cells, resulting in poor proliferative responses and solid tumor regression during cancer vaccination. Conversely, IFNα/β receptor blockade reinvigorates T cell proliferation to regress solid tumors and is more effective with increasing ...
Andrew Nguyen +4 more
wiley +1 more source
Cannabidiol Enhances SIRT1 and Autophagy for the Maintenance of Human Mesenchymal Stem Cells. [PDF]
Chueaphromsri P +4 more
europepmc +1 more source
Kenotic Ecclesiology: Context, Orientations, Secularity [PDF]
Hughson, Thomas
core +1 more source
PDAC has a poor prognosis due to chemoresistance. We revealed that MCU upregulation is associated with chemoresistance and stemness in PDAC. MCU‐mediated Ca2+ influx induced ER stress, activating the PERK‐ATF4/NRF2 axis to enhance PSAT1/SLC711 expression and glutathione synthesis, reducing ROS and maintaining stemness.
Zekun Li +17 more
wiley +1 more source
Is the nursing PhD in terminal decline? The case for clinician-scientist pathways. [PDF]
Connell K, Yu H, Hobensack M, Turi E.
europepmc +1 more source
Ribosome Homeostasis Regulated by SETD2 Preserves Intestinal Epithelial Barrier
SETD2 ablation causes dysregulation and recruitment defects of ribosome biogenesis factors, resulting in translational disorders of barrier maintenance genes, thereby compromising the intestinal barrier. These findings unveil a previously unappreciated role of ribosome biogenesis and translational regulation in preserving the intestinal epithelial ...
Hanyu Rao +11 more
wiley +1 more source
Reevaluating the Importance of Informed Consent in Japan. [PDF]
Yanagimoto TS +3 more
europepmc +1 more source
Sergeev\u27s The Project of the Enlightenment: Essays on Religion, Philosophy and Art - Book Review
Shlenkin, Victor
core
Tendon Organoids Enable Functional Tendon Rejuvenation Through ALKBH5‐Dependent RNA Demethylation
FT organoids reverse the aged phenotype of tendon cells, reinstating a fetal‐like state. This breakthrough establishes a potent cell source for tendon tissue engineering, effectively advancing regenerative medicine. ABSTRACT Adult tendon injuries pose a major clinical challenge due to limited self‐repair capacity, resulting in suboptimal regeneration ...
Tian Qin +14 more
wiley +1 more source

