| (196) |
Sachs M, von Eichel J, Askali E Coconut oil used in Indonesia for
treatment of wounds and to preserve medicinal herbs. Chirurg 2002 Apr; 73 (4):
387-92 |
| (197) |
Kabara JJ, Swieczkowski DM, Conley AJ, Truant JP: Fatty acids and
derivatives as antimicrobial agents. Antimicrob Agents Chemother 1972; 23: 28 |
| (198) |
Kabara JJ, Vrable R, Lie Ken Jie M. Antimicrobial lipids: natural and
synthetic fatty acids and monoglycerides. Lipids 1977; 9:
753 |
| (199) |
Kabara JJ. Fatty acids and derivatives as antimicrobial agents— A review,
in The Pharmacological Effect of lipids. In: Kabara
JJ ed. American Oil Chemists’ Society, Champaign IL 1978; 1-14 Kabara JJ. |
| (200) |
Kabara JJ. Toxicological, bacteriocidal and fungicidal properties of fatty
acids and some derivatives. JAOCS 1979; 56: 76 |
| (201) |
Kato N. Combined effects on antibacterial activity of fatty acids and
their esters against gram-negative bacteria. In: Kabara JJ ed. The
pharmacological effects of lipids. St. Louis, Mo.Am Oil Chem Soc 1978; 15: 24 |
| (202) |
Kabara JJ. Inhibition of staphylococcus aureus in The Pharmacological
Effect of Lipids II (Kabara JJ ed.) Am Oil Chem Soc, Champaign IL 1985; 71-75 |
| (203) |
Fletcher RD, Albers AC, Albertson JN, Kabara JJ. Effects of monoglycerides
on mycoplasma pneumoniae growth. In:
Kabara JJ ed. The Pharmacological Effect of Lipids II Am Oil Chem Soc, Champaign
IL 1985; 59-63 |
| (204) |
Kabara JJ. GRAS antimicrobial agents for cosmetic products. 3 Soc Cosmet
Chem 1980; 31: 1-10 |
| (205) |
Kabara JJ. Lauricidin: the non-ionic emulsifier with antimicrobial
properties. Cosmet Sci Technol 1984; 1: 305-322 |
| (206) |
Kabara JJ. Chemistry and biology of monoglycerides. In: A Key to Cosmetic
Ingredients. Marcel Dekker Inc.: New York 1991; 311-20. |
| (207) |
Kabara JJ. Food-grade chemicals for use in designing food preservatives. J
Food Prot 1981; 44: 633-647. |
| (208) |
Kabara JJ. Inhibition of staphylococcus aureus in a model sausage system
by monoglycerides. 1985; 7 1-103. In: Kabara JJ (ed). The pharmacological effect
of lipids II The Am Oil Chem Soc, Champaign, Ill |
| (209) |
Hierholzer JC, Kabara JJ. In vitro effects of monolaurin compounds on
enveloped RNA and DNA viruses. J Food Safety 1982; 4: 1-12. |
| (210) |
Boddie RL, Nickerson SC. Evaluation of postmilking teat germicides
containing Lauricidin, saturated fatty acids, and lactic acid. J Dairy Sci1992;
75: 1725-30 |
| (211) |
Medish M, Murata 5, Frogner K, Fukunaga C, Matsuda L. Glycerol monolaurate
in model toxic shock syndrome. In Abstracts of the 9l General Meeting of the
American Society for Microbiology, Washington, DC. 1991; Bl9: 28 |
| (212) |
Schlievert PM, Deringer JR, Kim MH, Projan SJ, Novick RP. Effect of
glycerol monolaurate on bacterial growth and toxin production. Antimicrob Agents
Chemother. 1992; 36: 626-631 |
| (213) |
Wang L, Yang B, Parkin KL, Johnson BA. Inhibition of Listeria
monocytogenes by monoacyiglycerols synthesized from
coconut oil and milkfat by lipase catalyzed glycerolysis. J
Agric Food Chem 1993; 41: 1000-05 |
| (214) |
Petschow BW, Batema RP, Ford LL. Susceptibility of IHielicobacter pylon to
bactericidal properties of medi urn-chain monoglycerides and free fatty acids.
Antimicrob Agents Chemother 1996; 40: 302-06 |
| (215) |
Sprong RC, Huistein MF, Van der Meer R. High intake of milk fat inhibits
intestinal colonization of listeria but not of salmonella in rats. J. Nutr 1999;
129: 1382-89 |
| (216) |
Bergsson G, Amfinnsson J, Steingrimsson 0, Thormar H. Killing of Gram
positive cocci by fatty acids and monoglycerides. Apmis 2001 Oct; 109 (10): 670 |
| (217) |
Bergsson, Gudmundur, et al, In Vitro Killing of Candida Albicans by Fatty
Acids and Monoglycerides. Antimicrob Agents Chemother 2001; 45 (11): 3209-12 |
| (218) |
Isaacs CE, Thormar H. Membrane-disruptive effect of human milk:
inactivation of enveloped viruses. J Infect Dis 1986; 154: 966-71 |
| (219) |
Isaacs CE, Thormar H. The role of milk-derived antimicrobial lipids as
antiviral and antibacterial agents. In: Mestecky J, et al, eds. Immunology of
Milk and the Neonate Plenum Press:
NewYork 1991 |
| (220) |
Coconut oil compound may treat STDs AIDS Patient Care STDS 1999 Sep; 13
(9): 57 |
| (221) |
Tayag E, Dayrit CS, Santiago EG, et al. Coconut Oil in Health and Disease:
Its and Monolaurjn’s Potential as a Cure for HIVAIDS, 37th Cocotech Meeting,
Chennai, IndiA |
| (222) |
Gudmundur Bergsson,1 Johann Arnfinnsson,2 SigfOs M.
Karlsson,3 Olafur SteingrImsson,3 and HalldorThormar. In Vitro
Inactivation of Chlamydia trachomatis by Fatty Acids and
Monoglycerides. Institute of Biology, University of Iceland, 1
Department of Anatomy, University of Iceland Medical School,
2 and Department of Microbiology, National University
Hospital, 3 Reykjavik, Iceland |
| (223) |
Abraham RL, Verallo-Rowell VM, Baello BQ. Testing of Lauricidin versus
isopropyl alcohol for antisepsis of cutaneous hand microbes to prevent
infection. Philippine J MicrobiOl Infect Dis 2000; 29: 128-35 |
| (224) |
Abraham RL, Verallo-Rowell VM. Safety and efficacy of monolaurin, a
coconut oil extract, versus ethyl alcohol in rinse
free hand antiseptic gels on healthcare personnel’s hands and microbial
isolates. J Phil Denri Soc 2001; 10(2): 90-99 |
| (225) |
Lacson and Verallo-Rowell Case Report: Coconut Oil in a severe case of Oro-genital
Herpes Simplex Virus infection. Submitted. |
| (226) |
Carpo and Verallo-Rowell:Coconut Oil in a severe case of Hidradenitis
Suppurativa. Submitted. |
| (227) |
CarpoT, Verallo-Rowell VM. In Vitro Antibacterial Activity of Monolaurin,
a Coconut derivative. |
| (228) |
Thormar H, Isaacs EC, Brown HR, Barshatzky MR, Pessolano T. Inactivation
of enveloped viruses and killing of cells by fatty acids and monoglycerides.
Antimicrob Agents Chemother
1987; 31: 27-31 |
| (229) |
Isaacs CE, Kim KS, Thormar H. Inactivation of enveloped viruses in human
bodily fluids by purified lipids. Ann NY Acad Sci 1994; 724: 457-464 |
| (230) |
Projan Si, Brown-Skrobot 5, Schlievert PM, Vandenesch F, Novick RP.
Glycerol monolaurate inhibits the production of Blactamase, toxic shock syndrome
toxin I and other staphylococcal exoproteins by interfering with signal
transduction. J Bacteriol 1994; 176: 4204-09 |
| (231) |
Ruzin A, Novick RP. Equivalence of lauric acid and glycerol
monolaurate as inhibitors of signal transduction in
staphylococcus aureus. J of Bacteriol 2000; 182: (9): 2668-267 |
| (232) |
Hormung et al. Lauric acid interferes with viral assembly and maturation.
J GenVirol 1994; 75(2): 353-61 |
| (233) |
Nosakhare’Odeh Eghafona. Immune responses following cocktails of
inactivated measles vaccine and arachis hypogaea L. (groundnut) or cocos
nucifera 1 (coconut) oils adjuvant. Vaccine 1996; 14 (17/18): 1703-06 |
| (234) |
Witcher K, Novick R, Schcievert P. Modulation of immune cell proliferation
by glycerol monolaurate. Clin Diag Lab Immunol 1996 Jan; 10-13 |
| (235) |
Lim-Navarro PRT, Escobar R, Fabros M, Dayrit CS: Protection effect of
coconut oil against E. coli endotoxin shock in rats. Coconuts Today 1994; 11:9 |
| (236) |
Ruzin A, Novick RP. Glycerol monolaurate inhibits induction of vancomycin
resistance in enterococcus faecalis. J Bacteriol
1998; 180: 182-185 |
| (237) |
Carpo T, Verallo-Rowell V. oral virgin coconut oil for skj infections ( a
single-blind randomized active-controlled comparative trial on the efficacy
of oral virgin coconut oil vs. Cloxacillin for localized bacterial skin
infection—a pilot study). On-going study. |
| (238) |
Byrnes S. I’ve got a Lovely Bunch of Coconuts: Coconut Holds Promise for
the Immune Suppressed People. Power Health, 1-7 N Engl J Med 1994; 330: 12 |
| (239) |
Lehmann H, Robinson K, Andrews J, et al. Acne therapy: A methologic
review. JAm Acad Dermatol Aug 2002. |
| (240) |
Thiboutot D. Acne: 1991-2001. J Am Acad Dermatol 2002 July; 47: 1 |
| (241) |
Pineda-DLS JP, Verallo—Rowell VM, Open study on the safety and efficacy of
2% monolaurin gel in the treatment of mild to moderate inflammatory facial acne
vulgaris Submitted. 2004. |
| (242) |
A Vehicle-Controlled Trial on the Safety and Efficacy of 2 % Monolaurin
Gel in the Treatment of Mild to Moderate Inflammatory Facial Acne Vulgaris 2004/
Submitted. |
| (243) |
Back 0, Faergemann J, Hornqvist R. Pityrosporum folliculitis:
a common disease of the young and middle-aged. J Am Acad Dermatol 1985 Jan; 12
(1 Pt 1): 56-61 |
| (244) |
Jacinto-Jamora S,Tamesis J, KatigbakML. Pityrosporum folliculitis in the
Philippines: diagnosis, prevalence, and management. JAm Acad Dermatol 1991 May;
24 (5 Pt. 1): 693-96 |
| (245) |
Schmidt A. Malassezia furfur: a fungus belonging to the physiological skin
flora and its relevance in skin disorders. Cutis 1997 Jan; 59 (1): 21-4 |
| (246) |
Verallo-Rowell V. Personal communication on clinical experience with
monolaurin gel in the treatment of Pityrosporum folliculitis June 2003 |
| (247) |
Dela Cruz MDC,Verallo-Rowell VM. A double blind randomized controlled
trial to compare the efficacy and safety of 2% coconut monoglyceride gel with 2%
monolaurin gel
and 2% ketoconazole lotion in the treatment of pityrosporum folliculitis among
adolescents and middle aged adults |
| (248) |
Sarte KAR, Verallo-Rowell VM. A double blind randomized control trial to
compare efficacy and safety of 2% coconut monoglyceride gel with 2% monolaurin
gel and 2% ketoconazole lotion in the treatment of Pityrosporum folliculitis
among adolescents and middle aged adults |
| (249) |
Agero AL, Verallo-Rowell VM. A randomized double-blind controlled trial
comparing extra virgin coconut oil with mineral oil as a moisturizer for mild to
moderate xerosis. J Contact Derm 2004 J Contact Dermatitis 15; (3)September
109-116 |
| (250) |
Rele AS, Mohile RB. Effect of mineral oil, sunflower oil, and coconut oil
on prevention of hair damage. J Cosmet Sci 2003 Mar-Apr; 54(2): 175-92 |
| (251) |
National Center for Complementary and Alternative Medicine. [accessed 2003
Sept. 09] URL: http://nccam.nih.gov/research
|
| (252) |
Elias PM. The epidermal permeability barrier: from the early days at
Harvard to emerging concepts. J Invest Dermatol 2004; 122: 36-9 |
| (253) |
Sator PG, Schmidt JB, Honigsmann H. Comparison of epidermal hydration and
skin surface lipids in healthy individuals and in patients with atopic
dermatitis. J Am Acad Dermatol 2003; 148: 35 |
| (254) |
Lowe NJ, Friedlander J. Sunscreens: rationale for use to reduce photodamage and phototoxicity. In: Lowe NJ, Shaath NA, Pathak MA,eds.
Sunscreens: Development, Evaluation, and Regulatory Aspects. Second Ed. New
York: Marcel Dekker, Inc, 1997: 38 |
| (255) |
Oxygen species and antioxidant protection in photodermatology. In:
Nicholas Lowe, Nadim Shaath, Mudhu Pathak eds. Sunscreens: Development,
Evaluation, And Regulatory Aspects, Marcel Dekker mc: New York |
| (256) |
Darr D, Pinnell SR. Reactive Trevithick J et al. Topical tocopherol
acetate reduces post-UVB, sunburn-associated erythema, edema and skin
sensitivity in hairless mice. Arch Biochem Biophys 1992; 196: 575-82 |
| (257) |
Henry GE, Momin RA, Nair MG, Dewitt DL. Antioxidant and cyclooxygenase
activities of fatty acids found in food. J Agric Food Chem 2002; 50: 223 1-34 |
| (258) |
Elmets C, Singh D, Tubesing K, Matsui M, Katiyar S,
Mukhtar H. Cutaneous Photoprotection from ultraviolet
injury by green tea polyphenols. JAm Acad Dermatol 2001;
44: 425-32 |
| (259) |
Tobi SE, Gilbert M, Paul N, McMillan TJ. The green tea polyphenol,
epigallocatechin-3-gallate, protects against oxidative cellular and genotoxic
damage of UVA radiation. mt j Cancer 2002; 102 (5): 439-44 |
| (260) |
Verallo-Rowell VM, Nograles KB, Yu NT. Chemoprotective effect of green tea
extract on UV-irradiated Asian skin.
Presented: Korean Dermatologic Society Photomedicine Meeting. June 9, 2004,
Seoul, Korea |
| (261) |
Verallo-Rowell VM, Arevalo C, Chong C, Cuaso-Cruz J,
Nograles K, Sanchez E. Topical antioxidants: randomized
double blind study with Filipino skin irradiated with UVA,
UVB, Infrared Light. Poster Presentation at the American
Academy of Dermatology Annual Meeting, New Orleans.
February 18-22, 2005 |
| (262) |
Yu NJT, Nograles KB, Verallo-Rowell VM. Determination of photoprotective
and antioxidant properties of topical virgin coconut oil on Filipino skin
irradiated with solar simulated light. Submitted. |
| (263) |
Coconut water. 19 Citations http://www/ncbi.nim.nih.gov . accessed 20 Mar
2005 |
| (264) |
Van Oberbeek J, Siu R, Haagan-Smit A. Factors in coconut milk essential
for growth and development of very young Datura embryos. Science 1941; 94: 350 |
| (265) |
Mauney JR, Hillman WS, Miller CO, Skoog F, Clayton RA, Strong FM.
Bioassay, purification and properties of a growth factor from coconut. Physiol
Plant. 1952; 5: 485-97 |
| (266) |
Radley M, Dear F. Occurrence of gibberellin-like substances in the
coconut. Nature 1958; 182 (4642): 1098
(267) Van Staden J, Drewer SE. Identification of cell division inducing
compounds from coconut milk. Physiol Plant. 1974;
32: 347-35 |
| (268) |
Mamaril JC, Paner ET, Trinidad LC, Palacpac ES, C dela C. Enhancement of
seedling growth with extracts from coconut water. Philip J Crop Sci 1988; 139
(1): 1-7 |
| (269) |
Uichangco N. Studies on the chemical changes of coconut water of matured
nuts during storage. Unpublished thesis, University of the Philippines at Los
Banos 1969 |
| (270) |
Yson RL. Study of the Gibberellin level of coconut water from matured nuts
during storage. Unpublished thesis, University of the Philippines at Los Banos
1994 |
| (271) |
Miller CO, Skoog F, Von Saltza MH, Strong FM. Kinetin, a cell division
factor from deoxyribonucleic acid. J. Am. Chem. Soc
1955; 77: 1392 |
| (272) |
Miller CO, Skoog F, Okumura FS, Von Saltza MH, Strong FM. Isolation,
structure and synthesis of kinetin, a substance promoting cell division. JAm
Chem Soc 1956; 78, 1375-80 |
| (273) |
Barciszewskj J, Siboska GE, Pedersen BO, Clark BFC, Rattan SIS. Furfural,
a precursor of the cytokinin hormone kinetin, and base propenals are formed by
hydroxyl radical damage of DNA. Biochem Biophys Res Commun 1997; 238:317-19 |
| (274) |
Barcjszewskj J, Rattan SIS, Siboska G, Clark BFC. Kinetin— 45years on.
Plant Sci. 1999;148: 37-45 |
| (275) |
Barciszweski J, Siboska G, Rattan SIS, Clark BFC. Occurrence, biosynthesis
and properties of kinetin (N6-furfuryladenine). Plant Growth Regulation 2000;
32: 257-65 |
| (276) |
Sharma SP, Kaur P, Rattan SIS. Plant growth hormone kinetin delays ageing,
prolongs the lifespan and slows down development of the fruitfly Zaprionus
paravittiger. Biochem Biophys Res Commun 1995; 216: 1067-71 |
| (277) |
Sharma SP, Kaur J, Rattan SIS. Increased longevity of kinetinfed Zaprionus
fruitflies is accompanied by their reduced fecundity and enhanced catalase
activity. Biochem Mol Biol mt 1997; 41: 869-75 |
| (278) |
Rattan SIS, Clark BFC. Kinetin delays the onset of ageing characteristics
in human fibroblasts. Biochem Res Commun
1994; 201: 665-7 |
| (279) |
Weinstein GD, McCullough JL, Au NN, Shull TF, Moudy D: A double-blind
vehicle-controlled study of kinetin lotions for improving the appearance of
aging photodamaged facial skin with 24 weeks of twice daily topical application |
| (280) |
Weiss JS, Ellis CN, Goldfarb MT, Voorhees JJ: Tretinoin treatment of
photodamaged skin. Cosmesis through medical therapy. Dermatol Clin 1991; 9:
123-9 |
| (281) |
Olsen A, Siboska GE, Clark BFC, Rattan SIS. 1999: N6- furfuryladenine,
kinetin, protects against Fenton reaction— mediated oxidative damge to DNA.
Biochem. Biophys. Res. Commun. 265, 499-502
|
| (282) |
Verbeke P, Siboska GE, Clark BFC, and Rattan SIS. 2000:
Kinetin inhibits protein oxidation and glyoxidation in vitro.Biochm biophys Res
Commun. 276, 1265-1270. |
| (283) |
Rochat A, Kobayashi K, Barrandon Y. Location of stem cells of human hair
follicles by clonal analysis. Cell 1994; 76: 1063-73 |
| (284) |
Jahoda CA, Reynolds AJ. Dermal—epidermal interactions— follicle-derived
cell populations in the study of hair-growth mechanisms. J Invest Dermatol 1993;
101 (1): 33S-38S |
| (285) |
Akiyama M, Smith LT, Holbrook KA. Growth factor and growth
factor receptor localization in the hair follicle bulge and
associated tissue in human fetus. J Invest Dermatol 1996; 106:
39 1-6 |
| (286) |
Harmon CS, Nevins TD. IL-I alpha inhibits human hair follicle growth and
hair fiber production in whole organ cultures. Lymphokine Cytokine Res 1993; 12:
197-203. |
| (287) |
Herbert JM, Rosenquis T, Gotz J et al. FGF 5 as a regulator of the hair
growth cycle: evidence from targeted and spontaneous mutations. Cell. 1994; 78:
1017-25. |
| (288) |
Du Cros DL. Fibroblast growth factor and epidermal growth factor in hair
development. J Invest Dermatol 1993; 101(1 Suppl): 106S-l 13S. |
| (289) |
DM, Ring BD, Yanagihara D, et al. Keratinocyte growth factor
is an important endogenous mediator of hair follicle growth, development, and
differentiation. Nomalization of the flu/flu follicularnchemotherapyinduced
alopecia. Am J Pathol 1995; 147: 145-54 |
| (290) |
Batch JA, Mercuri FA, Werther GA. Identification and localization of
insulin-like growth factor-binding protein (IGFBP) messenger RNAs in human hair
follicle dermal papilla. J Invest Dermatol 1996; 106: 47 1-75 |
| (291) |
Paus R, HeinzelmannT, Schultz KD, et al. Hair growth induction by
substance P. Lab Invest 1994; 71: 134-40 |
| (292) |
Sawaya ME. Purification of androgen receptors in human sebocytes and hair.
J Invest Dermatol 1992; 98 (6 Suppl): 925-65 |
| (293) |
Itami S, Kurata S, SonodaT, et al. Interaction between dermal papilla
cells and follicular epithelial cells in vitro: effect of androgen. Br J
Dermatol 1995; 132: 527 |
| (294) |
Espino TM et al. Production of virgin coconut oil and lipase catalyzed
synthesis of 8-monoglyceride. Submitted,2004. |
| (295) |
Boceta NM, De Leon SY, Masa DB Contributing authors and editors. In 3Rs on
Coconut Flour (Philippine Coconut Authority publisher) |
| (296) |
Brand-Miller J, Wolever TMS, Foster-Powell K, Colagiuri C.
The New Glucose Revolution The Authoritative Guide to the
Glycemic Index, the Dietary solution for lifelong health. 2004
Muze Inc |
| (297) |
Trinidad TP, Valdez DH, Loyola AS, Mallillin AC, Askali FC,
Castillo JC, Masa DB. Glycaemic index of different coconut
(cocos nucifera) flour products in normal and diabetic subjects.
Br J Nutr 2003; 90: 551-55 |
| (298) |
Trinidad TP, Loyola AS, Mallillin AC, Valdez DH, Askali FC, Castillo JC,
Resaba RL, Masa DB. The cholesterol-lowering effect of coconut flakes in humans
with moderately rasied serum cholesterol. J Med Food 2004; 7 (2): 136-40 |
| (299) |
Nutrition and Your Health: Dietary Guidelines for Americans 6th Edition
2005 |
| (300) |
Nutrition Source Harvard School of Public health http://
www.hsph.harvard.edu/now/ |
Reference #216 : Rele, A. S. and Mohile,
R. B. Effect of mineral oil, sunflower oil, and coconut oil on prevention of
hair damage. J Cosmet Sci 2003;54(2):175-192.
Discussion: Hair Care |