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Article detail · 2010

Current and emerging strategies for the treatment and management of systemic lupus erythematosus based on molecular signatures of acute and chronic inflammation

Journal

Journal of Inflammation Research
OpenAlex Open access · gold SJR Q3 JCR Q2 Citations 61 Percentile 85.0% FWCI 2.0
Year
2010
Type
article

Data source split

  • YÖKSİS venue Journal of Inflammation Research
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex · English

Lupus is a chronic, systemic inflammatory condition in which eicosanoids, cytokines, nitric oxide (NO), a deranged immune system, and genetics play a significant role. Our studies revealed that an imbalance in the pro- and antioxidants and NO and an alteration in the metabolism of essential fatty acids exist in lupus. The current strategy of management includes administration of nonsteroidal anti-inflammatory drugs such as hydroxychloroquine and immunosuppressive drugs such as corticosteroids. Investigational drugs include the following: 1) belimumab, a fully human monoclonal antibody that specifically recognizes and inhibits the biological activity of B-lymphocyte stimulator, also known as B-cell-activation factor of the TNF family; 2) stem cell transplantation; 3) rituximab, a chimeric monoclonal antibody against CD20, which is primarily found on the surface of B-cells and can therefore destroy B-cells; and 4) IL-27, which has potent anti-inflammatory actions. Our studies showed that a regimen of corticosteroids and cyclophosphamide, and methods designed to enhance endothelial NO synthesis and augment antioxidant defenses, led to induction of long-lasting remission of the disease. These results suggest that methods designed to modulate molecular signatures of the disease process and suppress inflammation could be of significant benefit in lupus. Some of these strategies could be vagal nerve stimulation, glucose-insulin infusion, and administration of lipoxins, resolvins, protectins, and nitrolipids by themselves or their stable synthetic analogs that are known to suppress inflammation and help in the resolution and healing of the inflammation-induced damage. These strategies are likely to be useful not only in lupus but also in other conditions, such as rheumatoid arthritis, scleroderma, ischemia-reperfusion injury to the myocardium, ischemic heart disease, and sepsis.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

61 citations

OpenAlex cited_by_count (cache / database)

35 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. Arachidonic acid and other unsaturated fatty acids and some of their metabolites function as endogenous antimicrobial molecules: A review 2018 Citations 255 · OpenAlex
  2. Essential Fatty Acids and Their Metabolites in the Pathobiology of Inflammation and Its Resolution 2021 Citations 173 · OpenAlex
  3. “Cell Membrane Theory of Senescence” and the Role of Bioactive Lipids in Aging, and Aging Associated Diseases and Their Therapeutic Implications 2021 Citations 148 · OpenAlex
  4. COX-2, aspirin and metabolism of arachidonic, eicosapentaenoic and docosahexaenoic acids and their physiological and clinical significance 2015 Citations 137 · OpenAlex
  5. Arachidonic acid in health and disease with focus on hypertension and diabetes mellitus: A review 2018 Citations 128 · OpenAlex
  6. Arachidonic acid and lipoxin A4 as possible endogenous anti-diabetic molecules 2013 Citations 91 · OpenAlex
  7. Bioactive Lipids in COVID-19-Further Evidence 2020 Citations 52 · OpenAlex
  8. Diabetic macular edema, retinopathy and age-related macular degeneration as inflammatory conditions 2016 Citations 52 · OpenAlex
  9. Is There a Role for Bioactive Lipids in the Pathobiology of Diabetes Mellitus? 2017 Citations 50 · OpenAlex
  10. Inflammatory bowel disease as a disorder of an imbalance between pro- and anti-inflammatory molecules and deficiency of resolution bioactive lipids 2016 Citations 46 · OpenAlex

Authors

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