This Program Project focuses on elucidating the role and actions of novel specialized pro-resolving mediators (SPM) in acute inflammation and tissue injury. In service to this Program Project to achieve its mission and goals, this Core, Lipid Mediator-SPM Lipidomics, will provide centralized, standardized and coordinated lipid mediator (LM) lipidomic profiling procedures for Projects 1-3. This Core B will execute newly established methods for SPM identification, lipidomics and LM pathway profiling metabolomics as a central service that will be required routinely by Projects 1-3. Core B will also develop, validate and implement new lipidomic approaches when needed. By providing a centralized location for the identification of LM and SPM, their profiling and pathway metabolomics as standardized services, this core eliminates costly duplication of instruments and personnel within each of the projects. LM and SPM validation will be carried out by Core B. This core will characterize the physical properties of synthetic compounds prepared by total organic synthesis in Core C, and shall match these using biophysical criteria for validation to biologically produced SPM and SPM-sulfido-conjugates (SPM-SC). These will include resolvins, protectins and maresins, as well as novel bioactive structures recently identified and biosynthetic pathway isomers, before distributing bioactive synthetic SPM to each project for assessing their functional roles. Prioritization of the services and selection of the specific procedures will be determined via individual meetings with project and core investigators at bimonthly Program Project group meetings to achieve optimal use of resources and experience of this Core in a cost-effective and timely fashion for the investigators within this Program Project.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Program Projects (P01)
Project #
5P01GM095467-10
Application #
9906233
Study Section
Special Emphasis Panel (ZGM1)
Project Start
Project End
Budget Start
2020-04-01
Budget End
2021-03-31
Support Year
10
Fiscal Year
2020
Total Cost
Indirect Cost
Name
Brigham and Women's Hospital
Department
Type
DUNS #
030811269
City
Boston
State
MA
Country
United States
Zip Code
02115
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:
Gromovsky, Anthony D; Schugar, Rebecca C; Brown, Amanda L et al. (2018) ?-5 Fatty Acid Desaturase FADS1 Impacts Metabolic Disease by Balancing Proinflammatory and Proresolving Lipid Mediators. Arterioscler Thromb Vasc Biol 38:218-231
Halade, Ganesh V; Norris, Paul C; Kain, Vasundhara et al. (2018) Splenic leukocytes define the resolution of inflammation in heart failure. Sci Signal 11:
de la Rosa, Xavier; Norris, Paul C; Chiang, Nan et al. (2018) Identification and Complete Stereochemical Assignments of the New Resolvin Conjugates in Tissue Regeneration in Human Tissues that Stimulate Proresolving Phagocyte Functions and Tissue Regeneration. Am J Pathol 188:950-966
Hellmann, Jason; Sansbury, Brian E; Wong, Blenda et al. (2018) Biosynthesis of D-Series Resolvins in Skin Provides Insights into their Role in Tissue Repair. J Invest Dermatol 138:2051-2060
Hvorecny, Kelli L; Dolben, Emily; Moreau-Marquis, Sophie et al. (2018) An epoxide hydrolase secreted by Pseudomonas aeruginosa decreases mucociliary transport and hinders bacterial clearance from the lung. Am J Physiol Lung Cell Mol Physiol 314:L150-L156
Winkler, Jeremy W; Libreros, Stephania; De La Rosa, Xavier et al. (2018) Structural insights into Resolvin D4 actions and further metabolites via a new total organic synthesis and validation. J Leukoc Biol :
Wu, Bian; Werlin, Evan C; Chen, Mian et al. (2018) Perivascular delivery of resolvin D1 inhibits neointimal hyperplasia in a rabbit vein graft model. J Vasc Surg 68:188S-200S.e4

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