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Endogenous anti‐inflammatory neuropeptides and pro‐resolving lipid mediators: a new therapeutic approach for immune disorders

Anderson P, Delgado M2008Journal of Cellular and Molecular MedicineReview
10.1111/j.1582-4934.2008.00387.xPubMedFree full text
Immune/InnateNeurological

Abstract

Introduction Tuning immune tolerance with anti‐inflammatory neuropeptides Resolution of inflammation by endogenous lipid mediators Therapeutic perspectives: rationale for using endogeneous neuropeptides and lipid mediators in immune disorders Abstract Identification of the factors that regulate the immune tolerance and control the appearance of exacerbated inflammatory conditions is crucial for the development of new therapies of inflammatory and autoimmune diseases. Although much is known about the molecular basis of initiating signals and pro‐inflammatory chemical mediators in inflammation, it has only recently become apparent that endogenous stop signals are critical at early checkpoints within the temporal events of inflammation. Some neuropeptides and lipid mediators that are produced during the ongoing inflammatory response have emerged as endogenous anti‐inflammatory agents that participate in the regulation of the processes that ensure self‐tolerance and/or inflammation resolution. Here we examine the latest research findings, which indicate that neuropeptides participate in maintaining immune tolerance in two distinct ways: by regulating the balance between pro‐inflammatory and anti‐inflammatory factors, and by inducing the emergence of regulatory T cells with suppressive activity against autoreactive T‐cell effectors. On the other hand, we also focus on lipid mediators biosynthesized from ω‐3 and ω‐6 polyunsaturated fatty‐acids in inflammatory exudates that promote the resolution phase of acute inflammation by regulating leucocyte influx to and efflux from local inflamed sites. Both anti‐inflammatory neuropeptides and pro‐resolving lipid mediators have shown therapeutic potential for a variety of inflammatory and autoimmune disorders and could be used as biotemplates for the development of novel pharmacologic agents.

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