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Journal of Leukocyte Biology|August 26, 2004
Short-term delay of Fas-stimulated apoptosis by GM-CSF as a result of temporary suppression of FADD recruitment in neutrophils: evidence implicating phosphatidylinositol 3-kinase and MEK1-ERK1/2 pathways downstream of classical protein kinase CYasuko Kotone-Miyahara, Kouhei Yamashita, Kyung-Kwon Lee, et al.ACS Chemical Neuroscience|February 15, 2020
Molecular Mechanism of Apoptosis by Amyloid β-Protein Fibrils Formed on Neuronal CellsEri Takada, Kaori Okubo, Yoshiaki Yano, et al.Molecular Cell|October 27, 2009
RPA-like mammalian Ctc1-Stn1-Ten1 complex binds to single-stranded DNA and protects telomeres independently of the Pot1 pathwayYasuyuki Miyake, Mirai Nakamura, Akira Nabetani, et al.International Immunology|December 18, 2013
Pathogenic Th2-type follicular helper T cells contribute to the development of lupus in Fas-deficient miceShizue Futatsugi-Yumikura, Kazufumi Matsushita, Ayumi Fukuoka, et al.International Journal of Oncology|July 13, 2005
Acquisition of Fas resistance by Fas receptor mutation in a childhood B-precursor acute lymphoblastic leukemia cell line, MML-1Hiroto Inaba, Keiji Shimada, Yan-Wen Zhou, et al.Journal of Leukocyte Biology|October 21, 2006
Intervention of MAdCAM-1 or fractalkine alleviates graft-versus-host reaction associated intestinal injury while preserving graft-versus-tumor effectsSatoshi Ueha, Masako Murai, Hiroyuki Yoneyama, et al.Spine|June 30, 2004
The role of Fas-mediated apoptosis after traumatic spinal cord injuryOsamu Yoshino, Hiroaki Matsuno, Hiroshi Nakamura, et al.International Immunology|February 16, 2013
Identification of a novel type 2 innate immunocyte with the ability to enhance IgE productionAyumi Fukuoka, Shizue Futatsugi-Yumikura, Suzuka Takahashi, et al.The Journal of Biological Chemistry|May 7, 2004
Chemokines generally exhibit scavenger receptor activity through their receptor-binding domainTakeshi Shimaoka, Takashi Nakayama, Kunio Hieshima, et al.Biochemical and Biophysical Research Communications|May 11, 2005
CXCL16 is a novel angiogenic factor for human umbilical vein endothelial cellsXin Zhuge, Toshinori Murayama, Hidenori Arai, et al.Pageof 6