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5. Neutralizing IL-8 potentiates immune checkpoint blockade efficacy for glioma

14. Interpretation on circumscribed astrocytic gliomas in the 2021 WHO Classification of Tumors of the Central Nervous System (fifth edition)

15. A cohort autopsy study defines COVID-19 systemic pathogenesis

21. Autopsy analysis reveals increased macrophage infiltration and cell apoptosis in COVID-19 patients with severe pulmonary fibrosis

29. Supplementary tables from S1-S6 from miR-663 Suppresses Oncogenic Function of CXCR4 in Glioblastoma

30. Supplementary Methods, Figure Legends from Primate-Specific miR-663 Functions as a Tumor Suppressor by Targeting PIK3CD and Predicts the Prognosis of Human Glioblastoma

31. Supplementary Figure S1 from miR-663 Suppresses Oncogenic Function of CXCR4 in Glioblastoma

32. Supplementary Figure 1 from Primate-Specific miR-663 Functions as a Tumor Suppressor by Targeting PIK3CD and Predicts the Prognosis of Human Glioblastoma

33. Supplementary Figure 2 from Primate-Specific miR-663 Functions as a Tumor Suppressor by Targeting PIK3CD and Predicts the Prognosis of Human Glioblastoma

34. Supplementary Figure legends from miR-663 Suppresses Oncogenic Function of CXCR4 in Glioblastoma

35. Supplementary Figure 4 from Primate-Specific miR-663 Functions as a Tumor Suppressor by Targeting PIK3CD and Predicts the Prognosis of Human Glioblastoma

36. Supplementary Figure 3 from Primate-Specific miR-663 Functions as a Tumor Suppressor by Targeting PIK3CD and Predicts the Prognosis of Human Glioblastoma

37. Supplementary Tables 1 - 9 from Primate-Specific miR-663 Functions as a Tumor Suppressor by Targeting PIK3CD and Predicts the Prognosis of Human Glioblastoma

40. ASCL2 Maintains Stemness Phenotype through ATG9B and Sensitizes Gliomas to Autophagy Inhibitor

42. Targeting AKT and CK2 represents a novel therapeutic strategy for SMO constitutive activation‐driven medulloblastoma

43. Autopsy of COVID-19 patients in China

45. Additional file 6 of Autophagy-based unconventional secretion of HMGB1 in glioblastoma promotes chemosensitivity to temozolomide through macrophage M1-like polarization

46. Additional file 11 of Molecular phylogeography and species distribution modelling evidence of ���oceanic��� adaptation for Actinidia eriantha with a refugium along the oceanic���continental gradient in a biodiversity hotspot

47. Additional file 5 of Autophagy-based unconventional secretion of HMGB1 in glioblastoma promotes chemosensitivity to temozolomide through macrophage M1-like polarization

48. Additional file 5 of Molecular phylogeography and species distribution modelling evidence of ���oceanic��� adaptation for Actinidia eriantha with a refugium along the oceanic���continental gradient in a biodiversity hotspot

49. Additional file 8 of Autophagy-based unconventional secretion of HMGB1 in glioblastoma promotes chemosensitivity to temozolomide through macrophage M1-like polarization

50. Additional file 2 of Autophagy-based unconventional secretion of HMGB1 in glioblastoma promotes chemosensitivity to temozolomide through macrophage M1-like polarization

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