Wednesday, January 16, 2013
Speak softly and carry a big stick: mechanisms of contact-dependent growth inhibition (CDI)
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Saturday, June 2, 2012
Restless legs syndrome – Theoretical roles of inflammatory and immune mechanisms
Fig. 1. Potential interplay of pathologic factors in secondary RLS. Abbreviations: RLS: restless legs syndrome; Inflam & Immune: inflammation and/or altered immunity; SIBO: small intestinal bacterial overgrowth; Neuropathy: peripheral neuropathy.
View Within ArticleFig. 2. [26], [55], [56] and [125] of hepcidin synthesis in the setting of inflammation and theoretical consequences for developing CNS iron deficiency and subsequent RLS. Hepcidin is the main hormone involved in regulation of iron levels and has been shown to be produced by the liver in humans and in the brain in animal models. Increased hepcidin levels lead to iron deficiency. Interleukin-6 is the main cytokine that can increase hepcidin levels. Lipopolysaccharides which are breakdown products of gram negative bacteria stimulate hepcidin synthesis. Hypoxia also stimulates hepcidin synthesis. Hepcidin binds to ferroportin on human choroid plexus cells and decrease availability of iron for the CNS. Not shown – Bacteria may also utilize iron and cause iron deficiency.57 Abbreviations: LPS: lipopolysaccharides.
View Within ArticleTable 1. Iron deficiency, small intestinal bacterial overgrowth (SIBO), inflammation and/or immunological alterations and peripheral neuropathy in conditions associated with restless legs syndrome (RLS). References are categorized as either: a controlled study (CS); an observational case series (OS); a laboratory study (LS) which uses defined assays but does not have a control group; or a review article (RA). Highly-associated conditions are defined as RLS conditions shown to have a statistically higher prevalence than controls. This table does not include seven single case reports associated with RLS (see result section).
Restless legs syndrome – Theoretical roles of inflammatory and immune mechanisms
Fig. 1. Potential interplay of pathologic factors in secondary RLS. Abbreviations: RLS: restless legs syndrome; Inflam & Immune: inflammation and/or altered immunity; SIBO: small intestinal bacterial overgrowth; Neuropathy: peripheral neuropathy.
View Within ArticleFig. 2. [26], [55], [56] and [125] of hepcidin synthesis in the setting of inflammation and theoretical consequences for developing CNS iron deficiency and subsequent RLS. Hepcidin is the main hormone involved in regulation of iron levels and has been shown to be produced by the liver in humans and in the brain in animal models. Increased hepcidin levels lead to iron deficiency. Interleukin-6 is the main cytokine that can increase hepcidin levels. Lipopolysaccharides which are breakdown products of gram negative bacteria stimulate hepcidin synthesis. Hypoxia also stimulates hepcidin synthesis. Hepcidin binds to ferroportin on human choroid plexus cells and decrease availability of iron for the CNS. Not shown – Bacteria may also utilize iron and cause iron deficiency.57 Abbreviations: LPS: lipopolysaccharides.
View Within ArticleTable 1. Iron deficiency, small intestinal bacterial overgrowth (SIBO), inflammation and/or immunological alterations and peripheral neuropathy in conditions associated with restless legs syndrome (RLS). References are categorized as either: a controlled study (CS); an observational case series (OS); a laboratory study (LS) which uses defined assays but does not have a control group; or a review article (RA). Highly-associated conditions are defined as RLS conditions shown to have a statistically higher prevalence than controls. This table does not include seven single case reports associated with RLS (see result section).
Restless legs syndrome – Theoretical roles of inflammatory and immune mechanisms
Fig. 1. Potential interplay of pathologic factors in secondary RLS. Abbreviations: RLS: restless legs syndrome; Inflam & Immune: inflammation and/or altered immunity; SIBO: small intestinal bacterial overgrowth; Neuropathy: peripheral neuropathy.
View Within ArticleFig. 2. [26], [55], [56] and [125] of hepcidin synthesis in the setting of inflammation and theoretical consequences for developing CNS iron deficiency and subsequent RLS. Hepcidin is the main hormone involved in regulation of iron levels and has been shown to be produced by the liver in humans and in the brain in animal models. Increased hepcidin levels lead to iron deficiency. Interleukin-6 is the main cytokine that can increase hepcidin levels. Lipopolysaccharides which are breakdown products of gram negative bacteria stimulate hepcidin synthesis. Hypoxia also stimulates hepcidin synthesis. Hepcidin binds to ferroportin on human choroid plexus cells and decrease availability of iron for the CNS. Not shown – Bacteria may also utilize iron and cause iron deficiency.57 Abbreviations: LPS: lipopolysaccharides.
View Within ArticleTable 1. Iron deficiency, small intestinal bacterial overgrowth (SIBO), inflammation and/or immunological alterations and peripheral neuropathy in conditions associated with restless legs syndrome (RLS). References are categorized as either: a controlled study (CS); an observational case series (OS); a laboratory study (LS) which uses defined assays but does not have a control group; or a review article (RA). Highly-associated conditions are defined as RLS conditions shown to have a statistically higher prevalence than controls. This table does not include seven single case reports associated with RLS (see result section).