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Journal of Immunology (Baltimore, Md. : 1950)|December 22, 2004
Immunomodulation via novel use of TLR4 by the filarial nematode phosphorylcholine-containing secreted product, ES-62Helen S Goodridge, Fraser A Marshall, Kathryn J Else, et al.Annals of the New York Academy of Sciences|September 29, 2011
Esophageal disease: updated information on inflammationRoy C Orlando, William G Paterson, Karen M Harnett, et al.Nature Immunology|March 2, 2011
The helminth product ES-62 protects against septic shock via Toll-like receptor 4-dependent autophagosomal degradation of the adaptor MyD88Padmam Puneet, Mairi A McGrath, Hwee Kee Tay, et al.Scientific Reports|November 22, 2016
The helminth product, ES-62 modulates dendritic cell responses by inducing the selective autophagolysosomal degradation of TLR-transducers, as exemplified by PKCδRussell J Eason, Kara S Bell, Fraser A Marshall, et al.International Journal for Parasitology|February 11, 2015
The immunomodulatory parasitic worm product ES-62 reduces lupus-associated accelerated atherosclerosis in a mouse modelTamar R Aprahamian, Xuemei Zhong, Shahzada Amir, et al.Immunology Letters|September 8, 2015
The role of individual protein kinase C isoforms in mouse mast cell function and their targeting by the immunomodulatory parasitic worm product, ES-62Kara S Bell, Lamyaa Al-Riyami, Felicity E Lumb, et al.Frontiers in Immunology|September 15, 2022
The parasitic worm product ES-62 protects the osteoimmunology axis in a mouse model of obesity-accelerated ageingMargaret M Harnett, James Doonan, Felicity E Lumb, et al.Parasitology|October 12, 2005
Lack of immunological cross-reactivity between parasite-derived and recombinant forms of ES-62, a secreted protein of Acanthocheilonema viteaeC A Egan, K M Houston, M J C Alcocer, et al.Journal of Medicinal Chemistry|November 16, 2013
Designing anti-inflammatory drugs from parasitic worms: a synthetic small molecule analogue of the Acanthocheilonema viteae product ES-62 prevents development of collagen-induced arthritisLamyaa Al-Riyami, Miguel A Pineda, Justyna Rzepecka, et al.Blood|June 14, 2003
A novel MyD-1 (SIRP-1alpha) signaling pathway that inhibits LPS-induced TNFalpha production by monocytesRosemary E Smith, Vanshree Patel, Sandra D Seatter, et al.Pageof 22