Photosynthetically Controlled Spirulina, but Not Solar Spirulina, Inhibits TNF-α Secretion: Potential Implications for COVID-19-Related Cytokine Storm Therapy
An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently hypercytokinemia , commonly referred to as a cytokine storm (CS). It is postulated that CS is mainly responsible for critical COVID-19 cases, including acute respirator...
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Published in | Marine biotechnology (New York, N.Y.) Vol. 23; no. 1; pp. 149 - 155 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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New York
Springer US
01.02.2021
Springer Nature B.V |
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Abstract | An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently
hypercytokinemia
, commonly referred to as a cytokine storm (CS). It is postulated that CS is mainly responsible for critical COVID-19 cases, including acute respiratory distress syndrome (ARDS). Recognizing the therapeutic potential of Spirulina blue-green algae (
Arthrospira platensis
), in this in vitro stimulation study, LPS-activated macrophages and monocytes were treated with aqueous extracts of Spirulina, cultivated in either natural or controlled light conditions. We report that an extract of photosynthetically controlled Spirulina (LED Spirulina), at a concentration of 0.1 µg/mL, decreases macrophage and monocyte-induced TNF-α secretion levels by over 70% and 40%, respectively. We propose prompt in vivo studies in animal models and human subjects to determine the putative effectiveness of a natural, algae-based treatment for viral CS and ARDS, and explore the potential of a novel anti-TNF-α therapy.
Graphical abstract |
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AbstractList | An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently
hypercytokinemia
, commonly referred to as a cytokine storm (CS). It is postulated that CS is mainly responsible for critical COVID-19 cases, including acute respiratory distress syndrome (ARDS). Recognizing the therapeutic potential of Spirulina blue-green algae (
Arthrospira platensis
), in this in vitro stimulation study, LPS-activated macrophages and monocytes were treated with aqueous extracts of Spirulina, cultivated in either natural or controlled light conditions. We report that an extract of photosynthetically controlled Spirulina (LED Spirulina), at a concentration of 0.1 µg/mL, decreases macrophage and monocyte-induced TNF-α secretion levels by over 70% and 40%, respectively. We propose prompt in vivo studies in animal models and human subjects to determine the putative effectiveness of a natural, algae-based treatment for viral CS and ARDS, and explore the potential of a novel anti-TNF-α therapy.
Graphical abstract An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently hypercytokinemia, commonly referred to as a cytokine storm (CS). It is postulated that CS is mainly responsible for critical COVID-19 cases, including acute respiratory distress syndrome (ARDS). Recognizing the therapeutic potential of Spirulina blue-green algae (Arthrospira platensis), in this in vitro stimulation study, LPS-activated macrophages and monocytes were treated with aqueous extracts of Spirulina, cultivated in either natural or controlled light conditions. We report that an extract of photosynthetically controlled Spirulina (LED Spirulina), at a concentration of 0.1 µg/mL, decreases macrophage and monocyte-induced TNF-α secretion levels by over 70% and 40%, respectively. We propose prompt in vivo studies in animal models and human subjects to determine the putative effectiveness of a natural, algae-based treatment for viral CS and ARDS, and explore the potential of a novel anti-TNF-α therapy. An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently hypercytokinemia, commonly referred to as a cytokine storm (CS). It is postulated that CS is mainly responsible for critical COVID-19 cases, including acute respiratory distress syndrome (ARDS). Recognizing the therapeutic potential of Spirulina blue-green algae (Arthrospira platensis), in this in vitro stimulation study, LPS-activated macrophages and monocytes were treated with aqueous extracts of Spirulina, cultivated in either natural or controlled light conditions. We report that an extract of photosynthetically controlled Spirulina (LED Spirulina), at a concentration of 0.1 µg/mL, decreases macrophage and monocyte-induced TNF-α secretion levels by over 70% and 40%, respectively. We propose prompt in vivo studies in animal models and human subjects to determine the putative effectiveness of a natural, algae-based treatment for viral CS and ARDS, and explore the potential of a novel anti-TNF-α therapy.An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently hypercytokinemia, commonly referred to as a cytokine storm (CS). It is postulated that CS is mainly responsible for critical COVID-19 cases, including acute respiratory distress syndrome (ARDS). Recognizing the therapeutic potential of Spirulina blue-green algae (Arthrospira platensis), in this in vitro stimulation study, LPS-activated macrophages and monocytes were treated with aqueous extracts of Spirulina, cultivated in either natural or controlled light conditions. We report that an extract of photosynthetically controlled Spirulina (LED Spirulina), at a concentration of 0.1 µg/mL, decreases macrophage and monocyte-induced TNF-α secretion levels by over 70% and 40%, respectively. We propose prompt in vivo studies in animal models and human subjects to determine the putative effectiveness of a natural, algae-based treatment for viral CS and ARDS, and explore the potential of a novel anti-TNF-α therapy. An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently hypercytokinemia , commonly referred to as a cytokine storm (CS). It is postulated that CS is mainly responsible for critical COVID-19 cases, including acute respiratory distress syndrome (ARDS). Recognizing the therapeutic potential of Spirulina blue-green algae ( Arthrospira platensis ), in this in vitro stimulation study, LPS-activated macrophages and monocytes were treated with aqueous extracts of Spirulina, cultivated in either natural or controlled light conditions. We report that an extract of photosynthetically controlled Spirulina (LED Spirulina), at a concentration of 0.1 µg/mL, decreases macrophage and monocyte-induced TNF-α secretion levels by over 70% and 40%, respectively. We propose prompt in vivo studies in animal models and human subjects to determine the putative effectiveness of a natural, algae-based treatment for viral CS and ARDS, and explore the potential of a novel anti-TNF-α therapy. |
Author | Avni, Dorit Khatib, Soliman Jensen, Sophie Tzachor, Asaf Rozen, Or |
Author_xml | – sequence: 1 givenname: Asaf orcidid: 0000-0002-4032-4996 surname: Tzachor fullname: Tzachor, Asaf organization: Centre for the Study of Existential Risk & Cambridge Global Food Security Research Center, University of Cambridge – sequence: 2 givenname: Or orcidid: 0000-0001-5865-3707 surname: Rozen fullname: Rozen, Or organization: Sphingolipids, Active Metabolites and Immune Modulation Laboratory, MIGAL – Galilee Research Institute – sequence: 3 givenname: Soliman orcidid: 0000-0002-6762-2408 surname: Khatib fullname: Khatib, Soliman organization: Natural compounds and analytical chemistry Laboratory, MIGAL - Galilee Research Institute and Tel Hai college – sequence: 4 givenname: Sophie orcidid: 0000-0003-4161-6728 surname: Jensen fullname: Jensen, Sophie organization: MATIS – Food and Biotech Research and Development – sequence: 5 givenname: Dorit orcidid: 0000-0002-0444-881X surname: Avni fullname: Avni, Dorit email: dorita@migal.org.il organization: Sphingolipids, Active Metabolites and Immune Modulation Laboratory, MIGAL – Galilee Research Institute |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/33566210$$D View this record in MEDLINE/PubMed |
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Keywords | COVID-19 Anti TNF-α therapy Biotechnology Spirulina Immunology Cytokine storm |
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Snippet | An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently
hypercytokinemia
, commonly... An array of infections, including the novel coronavirus (SARS-CoV-2), trigger macrophage activation syndrome (MAS) and subsequently hypercytokinemia, commonly... |
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SubjectTerms | acute respiratory distress syndrome Algae Animal models Aquatic plants Arthrospira platensis Biomedical and Life Sciences biotechnology Cell activation Cell Extracts - pharmacology Cell Extracts - therapeutic use Cells, Cultured Coronaviruses COVID-19 COVID-19 - complications COVID-19 - therapy COVID-19 infection Cyanobacteria Cytokine Release Syndrome - etiology Cytokine Release Syndrome - therapy Cytokine storm Cytokines Engineering Freshwater & Marine Ecology Humans In Vitro Techniques In vivo methods and tests Life Sciences Light emitting diodes Lipopolysaccharides macrophage activation Macrophages Macrophages - drug effects Microbiology Monocytes Monocytes - drug effects Original Original Article photosynthesis Respiratory distress syndrome Secretion Severe acute respiratory syndrome coronavirus 2 Spirulina Spirulina - chemistry therapeutics Tumor necrosis factor-α Viral diseases Zoology |
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Title | Photosynthetically Controlled Spirulina, but Not Solar Spirulina, Inhibits TNF-α Secretion: Potential Implications for COVID-19-Related Cytokine Storm Therapy |
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