US2017276688A1PendingUtilityA1

Anti-himf antibodies to treat lung diseases

Assignee: UNIV JOHNS HOPKINSPriority: Dec 18, 2006Filed: Dec 8, 2016Published: Sep 28, 2017
Est. expiryDec 18, 2026(~0.4 yrs left)· nominal 20-yr term from priority
A61P 29/00C07K 16/22C12N 9/1205G01N 2800/122G01N 2333/47C07K 16/40G01N 33/74G01N 2500/02G01N 33/54306C07K 14/4702C07K 16/18G01N 2333/912G01N 2333/4703A61K 2039/505G01N 2800/12G01N 33/6884G01N 2800/7038A61P 11/00C12Y 207/10002
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Claims

Abstract

Hypoxia induced mitogenic factor (HIMF) is a member of the “found in inflammatory zone” (FIZZ)/resistin family of proteins and has potent mitogenic, angiogenic, and vasoconstrictive effects in the lung vasculature. The receptor/binding partners for this family of proteins have been largely unknown. We identified Bruton's tyrosine kinase (BTK) as a functional HIMF binding partner through GST-HIMF pull-downs and mass spectrometry. Using primary cultured HIMF-stimulated murine bone marrow cells, we demonstrated that BTK was recruited to the leading edge of the cells. We also demonstrated that BTK and the closely related tyrosine kinase Fyn, colocalized at the growth cone process in these cells. HIMF stimulation induced BTK autophosphorylation, which peaked at 2.5 minutes. A transwell migration assay showed that treatment with recombinant murine HIMF induced migration of primary cultured bone marrow cells, which was completely blocked by the BTK inhibitor, LFM-A13. In vivo studies, using the rat hindlimb ischemia model, revealed that HIMF can stimulate angiogenesis in the hypoxic tissue probably through inducing the migration of endothelial progenitor cells (EPCs) to areas of active angiogenesis. Our results indicate that HIMF may acts as a chemotactic molecule in stimulating the migration of leukocytes/EPCs from bone marrow to targeted tissues through activation of the BTK pathway.

Claims

exact text as granted — not AI-modified
1 - 23 . (canceled) 
     
     
         24 . A method for treating a patient with scleroderma comprising the step of administering to the patient an antibody which specifically binds to HIMF (SEQ ID NO:1 or 2), whereby binding of HIMF to BTK is inhibited.

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