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1.
J Altern Complement Med ; 19(3): 224-31, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23017226

ABSTRACT

OBJECTIVES: Silver has historically and extensively been used as a broad-spectrum antimicrobial agent. However, the Food and Drug Administration currently does not recognize colloidal silver as a safe and effective antimicrobial agent. The goal of this study was to further evaluate the antimicrobial efficacy of colloidal silver. DESIGN: Several strains of bacteria, fungi, and viruses were grown under multicycle growth conditions in the presence or absence of ionic colloidal silver in order to assess the antimicrobial activity. RESULTS: For bacteria grown under aerobic or anaerobic conditions, significant growth inhibition was observed, although multiple treatments were typically required. For fungal cultures, the effects of ionic colloidal silver varied significantly between different genera. No viral growth inhibition was observed with any strains tested. CONCLUSIONS: The study data support ionic colloidal silver as a broad-spectrum antimicrobial agent against aerobic and anaerobic bacteria, while having a more limited and specific spectrum of activity against fungi.


Subject(s)
Anti-Infective Agents/pharmacology , Bacteria/drug effects , Fungi/drug effects , Silver Compounds/pharmacology , Silver/pharmacology , Viruses/drug effects , Bacteria/growth & development , Colloids , Ions
2.
J Biol Chem ; 285(49): 38034-41, 2010 Dec 03.
Article in English | MEDLINE | ID: mdl-20889978

ABSTRACT

Striated muscles are relaxed under low Ca(2+) concentration conditions due to actions of the thin filament protein troponin. To investigate this regulatory mechanism, an 11-residue segment of cardiac troponin I previously termed the inhibitory peptide region was studied by mutagenesis. Several mutant troponin complexes were characterized in which specific effects of the inhibitory peptide region were abrogated by replacements of 4-10 residues with Gly-Ala linkers. The mutations greatly impaired two of troponin's actions under low Ca(2+) concentration conditions: inhibition of myosin subfragment 1 (S1)-thin filament MgATPase activity and cooperative suppression of myosin S1-ADP binding to thin filaments with low myosin saturation. Inhibitory peptide replacement diminished but did not abolish the Ca(2+) dependence of the ATPase rate; ATPase rates were at least 2-fold greater when Ca(2+) rather than EGTA was present. This residual regulation was highly cooperative as a function of Ca(2+) concentration, similar to the degree of cooperativity observed with WT troponin present. Other effects of the mutations included 2-fold or less increases in the apparent affinity of the thin filament regulatory Ca(2+) sites, similar decreases in the affinity of troponin for actin-tropomyosin regardless of Ca(2+), and increases in myosin S1-thin filament ATPase rates in the presence of saturating Ca(2+). The overall results indicate that cooperative myosin binding to Ca(2+)-free thin filaments depends upon the inhibitory peptide region but that a cooperatively activating effect of Ca(2+) binding does not. The findings suggest that these two processes are separable and involve different conformational changes in the thin filament.


Subject(s)
Calcium/chemistry , Myosin Subfragments/chemistry , Peptides/chemistry , Tropomyosin/chemistry , Troponin I/antagonists & inhibitors , Troponin I/chemistry , Animals , Binding Sites , Calcium/metabolism , Egtazic Acid/chemistry , Humans , Muscle, Striated/chemistry , Muscle, Striated/metabolism , Mutation , Myosin Subfragments/genetics , Myosin Subfragments/metabolism , Peptides/genetics , Peptides/metabolism , Rabbits , Tropomyosin/genetics , Tropomyosin/metabolism , Troponin I/genetics , Troponin I/metabolism
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