CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Caprylic Acid

  • Antibacterial effect of caprylic acid and monocaprylin on major bacterial mastitis pathogens.

    Abstract Title:

    Antibacterial effect of caprylic acid and monocaprylin on major bacterial mastitis pathogens.

    Abstract Source:

    J Dairy Sci. 2005 Oct;88(10):3488-95. PMID: 16162522

    Abstract Author(s):

    M K M Nair, J Joy, P Vasudevan, L Hinckley, T A Hoagland, K S Venkitanarayanan

    Abstract:

    Bovine mastitis is the most significant economic drain on the worldwide dairy industry. Concerns regarding poor cure rates, emergence of bacterial resistance, and residues in milk necessitate development of alternative therapeutic approaches to antibiotics for treatment of mastitis. A variety of free fatty acids and their monoglycerides have been reported to exert antimicrobial activity against a wide range of microorganisms. The objective of our study was to examine the efficacy of caprylic acid, a short-chain fatty acid, and its monoglyceride, monocaprylin, to inactivate common mastitis pathogens, including Streptococcus agalactiae, Streptococcus dysgalactiae, Streptococcus uberis, Staphylococcus aureus, and Escherichia coli. Milk samples containing 50 mM or 100 mM caprylic acid, and 25 mM or 50 mM monocaprylin were inoculated separately with a 3-isolate mixture of each of the 5 pathogens, and incubated at 39 degrees C. Populations of surviving bacteria were determined at 0 min, 1 min, 6 h, 12 h, and 24 h of incubation. Both caprylic acid and monocaprylin reduced all 5 pathogens by >5.0 log cfu/mL after 6 h of incubation. Among the bacterial species tested, Strep. agalactiae, Strep. dysgalactiae, and Strep. uberis were most sensitive, and E. coli was most tolerant to caprylic acid and monocaprylin. Results of this study indicate that caprylic acid and monocaprylin should be evaluated as alternatives or adjuncts to antibiotics as intra-mammary infusion to treat bovine mastitis.

  • Caprylic acid infusion acts in the liver to decrease food intake in rats.

    Abstract Title:

    Caprylic acid infusion acts in the liver to decrease food intake in rats.

    Abstract Source:

    Physiol Behav. 2006 Feb 28;87(2):388-95. Epub 2005 Dec 20. PMID: 16360711

    Abstract Author(s):

    Ulrike L Jambor de Sousa, Myrtha Arnold, Wolfgang Langhans, Nori Geary, Monika Leonhardt

    Abstract:

    Hepatic portal vein (HPV) infusion of the medium chain fatty acid caprylic acid (CA; 2.3 mg/min, 40 microl/min) for 90 min beginning at dark onset in 18-h food-deprived male rats reduced the size of the first nocturnal meal about 40% (P < 0.01) and reduced 24-h food intake by about 15% (P < 0.001). Identical infusions into the vena cava affected neither initial meal size nor food intake. HPV CA infusion attenuated the postprandial decreases in plasma free fatty acids (P < 0.01) and beta-hydroxybutyrate (P < 0.01). HPV CA infusions did not significantly reduce nocturnal saccharine intake in a two-bottle conditioned taste aversion test, and there was no association between the saccharine intake on the test day and the feeding-inhibitory effect of CA on the conditioning day. HPV CA infusion did not affect plasma concentrations of corticosterone or of the pro-inflammatory cytokines interleukin-6 and tumor necrosis factor-alpha. HPV CA infusion did not increase plasma concentration of the liver enzyme alanine aminotransferase, but did increase plasma concentration of gamma-glutamyl transferase, although not into the pathophysiological range. These data indicate that CA acts in the liver to produce a signal that inhibits feeding and that this inhibitory effect may be related to increases in hepatic fatty acid oxidation rather than be the result of aversion or toxicity.

  • Oncolytic effects of fatty acids in mice and rats.

    Abstract Title:

    Oncolytic effects of fatty acids in mice and rats.

    Abstract Source:

    Am J Clin Nutr. 1991 Apr;53(4 Suppl):1082S-1086S. PMID: 2012021

    Abstract Author(s):

    A F Burton

    Abstract:

    Full Citation: "Intrahepatic implants of M114 carcinoma in B6D2F1/J mice were treated by intraperitoneal injection of 30 mg sodium caprylate (octanoate), and implants of Nb2 lymphoma in Nb rats were treated with 300 mg tricaprylin orally. After 4-11 h extensive damage to tumor cells was evident microscopically whereas liver cells were unaffected. Tumors in mice treated once daily from the fourth to eighth day after implantation were obliterated. Subcutaneous implants of hepatoma Nb10L in Nb rats treated transdermally with a caprylic acid preparation underwent similar damage. Fatty acids can cause lysis of tumor cells with little damage to normal tissue in certain situations. This action is not related to mitotic activity and represents a novel mode of antitumor action."

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