While acute inflammation is protective, uncontrolled inflammation is associated with many diseases, trauma, and surgical interventions that may lead to sepsis and loss of life. Resolution of inflammation was held to be passive but should ideally be self-limited. We mapped and elucidated the roles of previously unknown families of resolution phase mediators collectively grouped by function as specialized pro-resolving mediators (SPM). The SPM include resolvins, protectins and maresins. In this period of support, Project 1 discovered endogenous resolution programs that are activated by infections where specific SPM are produced with potent anti-inflammatory and pro-resolving actions as well as the ability to enhance microbial clearance. Molecular understanding of resolution programs for acute infectious inflammation is critically needed to appreciate the endogenous chemical signals that help resolve innate host responses to injury and trauma. In this renewal, Project 1 focuses on functional elucidation of entirely new resolution mediators discovered in this P01. We identified novel SPM-sulfido-conjugates (SC) using unbiased mediator-lipidomics and infectious resolving exudates that possess potent actions with neutrophils (PMN), macrophage (M?) and in tissue regeneration. Given their unique structures and actions, the 3 new series of bioactive molecules are termed Maresin- Conjugates in Tissue Regeneration (MCTR), Resolvin-Conjugates in Tissue Regeneration (RCTR) and Protectin-Conjugates in Tissue Regeneration (PCTR). Our Project 1 mission is to elucidate these chemical signals and cellular pathways that activate resolution of infectious-inflammation so they can be harnessed by testing an innovative hypothesis: Namely, In acute inflammation and infection, newly elucidated members of the SPM-sulfido-conjugates (SPM-SC) are produced by resolving infectious exudates to activate resolution and tissue regeneration programs essential to reestablish tissue function. To address this, 3 specific aims are proposed: We shall determine: 1) the relationships between novel pathways and mediators within innate exudates that activate both resolution and regeneration; 2) validation and actions of novel SPM-SC, 3) determine SPM-SC activated genes in infection-tissue regeneration & resolution and, with Project 2 and Core B, demonstrate local SPM functions in humans. Results from these can impact patient care by providing rigorous evidence for new resolution mediators that control infection-inflammation and communicate in tissue regeneration.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Program Projects (P01)
Project #
5P01GM095467-08
Application #
9452986
Study Section
Special Emphasis Panel (ZGM1)
Project Start
Project End
Budget Start
2018-04-01
Budget End
2019-03-31
Support Year
8
Fiscal Year
2018
Total Cost
Indirect Cost
Name
Brigham and Women's Hospital
Department
Type
DUNS #
030811269
City
Boston
State
MA
Country
United States
Zip Code
Colas, Romain A; Ashton, Anthony W; Mukherjee, Shankar et al. (2018) Trypanosoma cruzi Produces the Specialized Proresolving Mediators Resolvin D1, Resolvin D5, and Resolvin E2. Infect Immun 86:
Sham, Ho Pan; Walker, Katherine H; Abdulnour, Raja-Elie E et al. (2018) 15-epi-Lipoxin A4, Resolvin D2, and Resolvin D3 Induce NF-?B Regulators in Bacterial Pneumonia. J Immunol 200:2757-2766
Abdulnour, Raja-Elie E; Howrylak, Judie A; Tavares, Alexander H et al. (2018) Phospholipase D isoforms differentially regulate leukocyte responses to acute lung injury. J Leukoc Biol 103:919-932
Halade, Ganesh V; Kain, Vasundhara; Serhan, Charles N (2018) Immune responsive resolvin D1 programs myocardial infarction-induced cardiorenal syndrome in heart failure. FASEB J 32:3717-3729
Sorokin, Alexander V; Norris, Paul C; English, Justin T et al. (2018) Identification of proresolving and inflammatory lipid mediators in human psoriasis. J Clin Lipidol 12:1047-1060
Serhan, Charles N; Chiang, Nan; Dalli, Jesmond (2018) New pro-resolving n-3 mediators bridge resolution of infectious inflammation to tissue regeneration. Mol Aspects Med 64:1-17
Dalli, Jesmond; Colas, Romain A; Walker, Mary E et al. (2018) Lipid Mediator Metabolomics Via LC-MS/MS Profiling and Analysis. Methods Mol Biol 1730:59-72
Lahvic, Jamie L; Ammerman, Michelle; Li, Pulin et al. (2018) Specific oxylipins enhance vertebrate hematopoiesis via the receptor GPR132. Proc Natl Acad Sci U S A 115:9252-9257
Serhan, Charles N; Levy, Bruce D (2018) Resolvins in inflammation: emergence of the pro-resolving superfamily of mediators. J Clin Invest 128:2657-2669
Motwani, Madhur P; Colas, Romain A; George, Marc J et al. (2018) Pro-resolving mediators promote resolution in a human skin model of UV-killed Escherichia coli-driven acute inflammation. JCI Insight 3:

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