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2. The difficulty to model Huntington’s disease in vitro using striatal medium spiny neurons differentiated from human induced pluripotent stem cells

3. EGFR activity addiction facilitates anti-ERBB based combination treatment of squamous bladder cancer

10. JAK2V617F but not CALR mutations confer increased molecular responses to interferon-α via JAK1/STAT1 activation

12. Dysregulated mesenchymal PDGFR‐β drives kidney fibrosis

16. Secretome of adipose-derived mesenchymal stem cells promotes skeletal muscle regeneration through synergistic action of extracellular vesicle cargo and soluble proteins

18. Correction: EGFR activity addiction facilitates anti-ERBB based combination treatment of squamous bladder cancer

29. miR-23a contributes to T cellular redox metabolism in juvenile idiopathic oligoarthritis

32. A muscle growth promoting treatment based on the attenuation of activin/myostatin signalling in young mice results in long-term testicular abnormalities

35. miR-23a contributes to T cellular redox metabolism in juvenile idiopathic oligoarthritis.

37. A muscle growth-promoting treatment based on the attenuation of activin/myostatin signalling results in long-term testicular abnormalities

38. Bioavailability and impacts of estrogenic compounds from suspended sediment on rainbow trout (Oncorhynchus mykiss)

39. Correction: EGFR activity addiction facilitates anti-ERBB based combination treatment of squamous bladder cancer

44. Ribonuclease 1 attenuates septic cardiomyopathy and cardiac apoptosis in a murine model of polymicrobial sepsis

45. Inhibition of Activin/Myostatin signalling induces skeletal muscle hypertrophy but impairs mouse testicular development

48. miRNAs contribute to dysregulated ROS metabolism of immune cells in the inflamed joint

49. L'interféron beta et le blocage du point de contrôle PD1/PDL1 concourent à éliminer les cellules de carcinome nasopharyngé par un mécanisme impliquant la toxicité NK

50. Additional file 3: of Secretome of adipose-derived mesenchymal stem cells promotes skeletal muscle regeneration through synergistic action of extracellular vesicle cargo and soluble proteins

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