About this blog

After seeing news articles say there was NO EVIDENCE that essential oils work for Ebola and hearing that the FDA has not approved any oils for any sort of disease, I decided to see what was out there and expose the essential oil industry. Instead, I found a mountain of peer reviewed studies for all kinds of serious diseases saying how well they work, even on Ebola! So, I decided to set up this blog to post a few studies a week to expose the real frauds and show the world what NO EVIDENCE looks like.
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Showing posts with label #essentailoilscam. Show all posts
Showing posts with label #essentailoilscam. Show all posts

Melaleuca Alternifolia, Peppermint, Lemon, Oregano, Eucalyptus Globulus, Ravensara, Rosemary, Lavender and Helicobacter pylori


Review

Antimicrobial activity of natural products against Helicobacter pylori: a review

Bruna Vidal Bonifácio1, Matheus Aparecido dos Santos Ramos1, Patricia Bento da Silva2 and Taís Maria Bauab1*

1Department of Biological Sciences, School of Pharmaceutical Sciences, São Paulo State University, Rodovia Araraquara-Jaú, km 01, Araraquara CEP 14801-902, SP, Brazil
2Department of Drugs and Medicine, School of Pharmaceutical Sciences, São Paulo State University, Rodovia Araraquara-Jaú, km 01, Araraquara CEP 14801-902, SP, Brazil
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Annals of Clinical Microbiology and Antimicrobials 2014, 13:54 doi:10.1186/s12941-014-0054-0
The electronic version of this article is the complete one and can be found online at: http://www.ann-clinmicrob.com/content/13/1/54

Received:20 August 2014
Accepted:24 October 2014
Published:19 November 2014
© 2014 Bonifácio et al.; licensee BioMed Central Ltd. 
This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.

Abstract

Throughout the genetic and physiological evolution of microorganisms, the microbiological sciences have been expanding the introduction of new therapeutic trials against microbial diseases. Special attention has been paid to the bacterium Helicobacter pylori, which induces gastric infections capable of causing damage, ranging from acute and chronic gastritis to the development of gastric cancer and death. The use of compounds with natural origins has gained popularity in scientific research focused on drug innovation against H. pylori because of their broad flexibility and low toxicity. The aim of this study was to describe the use of natural products against H. pylori in order to clarify important parameters for related fields. The study demonstrated the vast therapeutic possibilities for compounds originating from natural sources and revealed the need for innovations from future investigations to expand the therapeutic arsenal in the fight against H. pylori infection.

Relevant part of study included below but full study is available at link at the bottom of the page. 



Table 2. Anti-Helicobacter pyloriactivity of essential oils
Essential oils or scents are aromatic compounds found in different plant organs. They are also called volatile oils or ethereal oils, as they have a high degree of evaporation when exposed to air at room temperature; it is this feature that confers the significant odor to plants, both for attraction of pollinators and as insect and herbivore repellents [52]-[54]. These compounds have emerged in the medical field by presenting antimicrobial activities of extreme value with regards to drug action against pathogenic or opportunistic microorganisms, including antifungal and antibacterial action. Because the compounds have a complex constitution, the profile exerted against microorganisms is directly related to this feature; for example, the presence of terpenes, which are secondary metabolites of plants with interesting therapeutic properties, have been studied by the scientific community in recent years. The antimicrobial activity demonstrated by terpenes is attributed to their interference with the integrity and functioning of the cell membrane through induction of changes in membrane potential, loss of cytoplasmic material and inhibition of the respiratory chain [54],[55].
Studies with the aim to elucidate the anti-Helicobacter pylori profile presented by essential oils have been developed in recent years because of the need for further drug options in the treatment of disorders arising from this type of infection. This fact is justified by the increased number of strains resistant to the standard drug therapy used in clinical practice, such as clarithromycin, the drug most frequently used as a therapeutic agent, and the lack of an ideal drug regimen with 100% safe applicability [8].
To broaden the knowledge of the anti-H. pylori potential of essential garlic oil, Otha et al. [56] tested compounds isolated from crude oil and obtained MIC values ranging from 10 to 25 μg/mL.
Other antimicrobial profiles of essential oils are reported in the literature. For example, Kalputzakis et al. [57] observed antibacterial action against clinical H. pylori strains extracted from biopsies performed on adults and children from two species of plants from the Nepeta genus, Nepeta camphorata L. and Nepeta argolica ssp. dirphya, belonging to the Lamiaceae family. The profile established by the essential oils of the two species was shown to be relevant, with minimum inhibitory concentrations (MIC) of 128 and 64 μg/mL for N. camphorata and N. argolica ssp. dirphya, respectively. Four compounds of the two species were also isolated and tested, presenting MICs ranging from 16 to 64 μg/mL for the same strains. The results obtained from the isolated substances confirm that flavonoids are mainly responsible for the antimicrobial activity for products derived from plant sources, as these substances were characterized as flavonoid derivatives.
Ohno et al. [58] reported the action of 13 essential oils against strains of H. pylori from clinical and standard origin (ATCC). The study found activity against all strains tested with oils extracted from Cupressus sempervirens, Juniperus communis Melaleuca alternifolia, Lippia citriodora, Ocimum basilicum, Mentha piperita, Origanum majorana, Eucalyptus globulus., Ravensara aromatica, Citrus limonum, Cymbopogon citratus, Rosmarinus officinalis and Lavandula latifolia. The same sensitivity profile was observed by Deriu et al. [59] in 2007, who investigated the activity of the essential oil of Myrtus communis L. against ten clinical isolates of Helicobacter pylori with a resistant profile for triple therapy with metronidazole, clarithromycin and levofloxacin.
The essential oil of Sicilian lemon (Citrus lemon Burm. Rutaceae) is classified as a potentially promising product against gastrointestinal diseases [60]. A study regarding its antimicrobial potential against Helicobacter pylori by Rozza et al. [61] revealed a minimum inhibitory concentration of 125 μg/mL. Furthermore, the authors performed a phytochemical analysis to identify the compounds present in the oil. Approximately 17 compounds were identified, of which 13 were identified by gas chromatography. The authors characterized monoterpene limonene as the major constituent of the essential oil, equivalent to approximately 70.75% of the total product. Moreover, the presence of β -pinene was also detected at a concentration of 13.19%. The antimicrobial profile of the two major isolated compounds resulted in MICs of 75 μg/mL and 500 μg/mL for limonene and β-pinene, respectively. Thus, the results were able to attribute limonene as the main compound responsible for the anti-Helicobacter pyloriactivity.

Conclusion

This review demonstrates the grandiosity of the use of compounds derived from natural products against Helicobacter pylori and denotes the need for scientific and technological expansion regarding these agents. Future work focused on promoting a therapeutic arsenal endowed with significant pharmacological actions and low toxicity and cumulative effects is required.
Link to full article here.


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Neck Pain and Marjoram, Black pepper, Lavender and Peppermint



 2014 Oct;20(10):771-9. doi: 10.1089/acm.2013.0453. Epub 2014 Sep 5.

The effectiveness of essential oils for patients with neck pain: a randomized controlled study.

Abstract

Abstract Objectives: To assess the efficacy of aromatic essential oils on neck pain.

DESIGN: 

Sixty participants with a history of neck pain and Neck Disability Index (NDI) score >10% were selected and randomly divided into control and experimental groups.

SETTING: 

Motion analysis laboratory at Hungkuang University.

INTERVENTION: 

For the experimental group, the intervention included 3% concentration cream composed of four essential oils: marjoram, black pepper, lavender, and peppermint. For the control group, only an unscented cream was provided. For 4 weeks, all patients applied 2 g cream directly to the affected area daily after showering or bathing.

OUTCOME MEASURES: 

Assessment was performed by using a visual analogue scale (VAS), NDI, pressure pain threshold (PPT) evaluated with a pressure meter, and neck-joint range evaluated with Motion Analysis System (MAS).

RESULTS: 

A t-test statistical analysis by SPSS statistical software indicated that VAS scores improved significantly for both groups (p<0.05). In addition, the experimental group had improved pain tolerance in the left upper trapezius (mean±standard deviation, 2.96±2.54) and right upper trapezius (2.88±2.90) as measured by the PPT. According to the NDI, the experimental group also showed significant improvement (p=0.02). Comparison of MAS values before and after the intervention showed significant improvement in the 10 motion areas in the experimental group. This finding suggests that the experimental group had better results than the control group.

CONCLUSION: 

The essential oil cream developed in this study can be used to improve neck pain. This study appears to be the first to quantify this by using PPT and MAS.


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Arthritis, Muscle and Stomach Pain-Boswellia Sacra

Document heading

"The present study provided the scientific justification about the analgesic properties of the essential oils, extract, and various sub-fractions obtained from the resin of B. sacra, thus validating its use in traditional folk medicines and other products; and hence supporting the development in the analgesic properties of bioactive natural substances"
.

Analgesic effects of crude extracts and fractions of Omani frankincense obtained from traditional medicinal plant Boswellia sacra on animal models 


Abstract

Objective

To investigate the analgesic effect of Boswellia sacra (B. sacra), which could support the Omani traditional uses of frankincense for muscle, stomach, and arthritis pain.

Methods

The crude extract, the essential oils and various sub-fractions of the crude methanol extract (each 300 mg/kg of the body weight of the animal) obtained from the resin of B. sacra were administered orally, and were evaluated for their analgesic activities by using two well known models of pain in mice, viz. acetic acid induced writhing test and formalin induced pain test in mice.

Results

Of 13 samples, almost all of them were effective at an orally administered dose of 300 mg/kg of the body weight. The acetic acid induced writhes were inhibited in all the three phases with comparable values to the standard drug aspirin (300 mg/kg of body weight) with inhibition of 67.6% in phase I, 66.8% in phase II, and 37.9% in phase III. At the same time, all the tested samples were found effective in both the early and the late phases of formalin test. In formalin test, most of the tested samples showed more inhibitory effects as compared to the standard drug aspirin (300 mg/kg of body weight), which showed 36.2% and 29.6% inhibition in early and late phases respectively. Among the tested samples, the most significant inhibition was produced by Shabi frankincense oil (57.5% in early phase, and 55.6% in late phase). Interestingly, the extracts showed comparable percentage of inhibition to the oil and found in the following order: 60% chloroform/n-hexane sub-fraction (55.3% in early phase, and 66.7% in late phase), and 70% chloroform/n-hexane sub-fraction (59.6% in early phase, and 63.0% in late phase).

Conclusions

The present study provided the scientific justification about the analgesic properties of the essential oils, extract, and various sub-fractions obtained from the resin of B. sacra, thus validating its use in traditional folk medicines and other products; and hence supporting the development in the analgesic properties of bioactive natural substances.

Keywords

  • Frankincense; 
  • Essential oil; 
  • Boswellia sacra; 
  • Analgesic activity; 
  • Nociception

Full text to article here

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Research Council (Grant No. ORG/CBS/10/002) and University of Nizwa (Grant No. A109-10-UON/28/A & S/IF).

Corresponding author: Ahmad Al-Harrasi, Ph.D, Department of Biological Sciences and Chemistry, College of Arts and Sciences, University of Nizwa, Birkat Al-Mouz, Nizwa-616, Oman. Tel: +96825446329

Scabies and Clove


Acaricidal Activity of Eugenol Based Compounds against Scabies Mites

Cesar V. Munayco, Editor

Abstract

Backgound

Human scabies is a debilitating skin disease caused by the “itch mite” Sarcoptes scabiei. Ordinary scabies is commonly treated with topical creams such as permethrin, while crusted scabies is treated with topical creams in combination with oral ivermectin. Recent reports of acaricide tolerance in scabies endemic communities in Northern Australia have prompted efforts to better understand resistance mechanisms and to identify potential new acaricides. In this study, we screened three essential oils and four pure compounds based on eugenol for acaricidal properties.

Methodology/Principal Findings

Contact bioassays were performed using live permethrin-sensitive S. scabiei var suis mites harvested from pigs and permethrin-resistant S. scabiei var canis mites harvested from rabbits. Results of bioassays showed that clove oil was highly toxic against scabies mites. Nutmeg oil had moderate toxicity and ylang ylang oil was the least toxic. Eugenol, a major component of clove oil and its analogues –acetyleugenol and isoeugenol, demonstrated levels of toxicity comparable to benzyl benzoate, the positive control acaricide, killing mites within an hour of contact.

Conclusions

The acaricidal properties demonstrated by eugenol and its analogues show promise as leads for future development of alternative topical acaricides to treat scabies.

Head Lice and Melaleuca Alternifolia


Activity of tea tree oil and nerolidol alone or in combination against Pediculus capitis (head lice) and its eggs.

Abstract
Head lice infestation is an emerging social problem in undeveloped and developed countries. Because of louse resistance increasing, several long-used insecticidal compounds have lost their efficacy, and alternatives, such as essential oils, have been proposed to treat this parasitic infestation. The present study investigated the efficacy of two natural substances: tea tree (Melaleuca alternifolia) oil and nerolidol (3,7,11-trimethyl-1,6,10-dodecatrien-3-ol) against lice and its eggs. Products were used alone and in combination (ratio 1:1 and 1:2) from 8 % dilution. The in vitro effect of natural substances at different concentrations were evaluated against 69 head lice (adults and nymphs) and 187 louse eggs collected from school children in Chieti-Pescara (Central Italy) over a 6-month period. The lice mortality was evaluated for 24 h by a stereo light microscope. The ovicidal activity was monitored by microscopic inspections for 15 days. Tea tree oil was more effective than nerolidol against head lice with 100 % mortality at 30 min and 1 % concentration. On the contrary, nerolidol expressed a more pronounced ovicidal activity inducing the failure of 50 % of the eggs to hatch at 1 % concentration after 4 days; the same effect was achieved by using a twice concentration of tea tree oil. The association of the two substances both in ratios 1:1 and 1:2 combined efficaciously their insecticidal and ovicidal effect; in particular, the ratio 1:2 (tea tree oil 0.5 % plus nerolidol 1 %) acted producing both the death of all head lice at 30 min and the abortive effect of louse eggs after 5 days. These results offer new potential application of natural compounds and display a promising scenario in the treatment of pediculosis resistant cases. The development of novel pediculicides containing essential oils could be, in fact, an important tool to control the parasitic infestation.
PMID:
 
22847279
 
[PubMed - indexed for MEDLINE] 
PMCID:
 
PMC3480584
Link to Full Text

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Cancer and Cinnamon Bark Oil

Conclusion

Our study suggests that anti-tumor effect of cinnamon extracts is directly linked with enhanced pro-apoptotic activity and inhibition of NFκB and AP1 activities and their target genes in vitro and in vivo mouse melanoma model. Hence, further elucidation of active components of cinnamon extract could lead to development of potent anti-tumor agent or complementary and alternative medicine for the treatment of diverse cancers.

Cinnamon extract induces tumor cell death through inhibition of NFκB and AP1

Ho-Keun Kwon1, Ji-Sun Hwang1, Jae-Seon So1, Choong-Gu Lee1, Anupama Sahoo1, Jae-Ha Ryu1, Won Kyung Jeon2, Byoung Seob Ko2, Chang-Rok Im3, Sung Haeng Lee4, Zee Yong Park1 and Sin-Hyeog Im1*



1School of Life Sciences and Immune Synapse Research Center, Gwangju Institute of Science and Technology (GIST), 1 Oryong-dong, Puk-ku, Gwangju 500-712, Republic of Korea
2Korea Institute of Oriental Medicine, Daejeon 305-811, Republic of Korea
3Global leader program, Bugil Academy, Cheonan, Gyeonggido 330-941, Republic of Korea
4Chosun University School of Medicine, Gwangju 501-759, Republic of Korea
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BMC Cancer 2010, 10:392  doi:10.1186/1471-2407-10-392

Received:10 December 2009
Accepted:24 July 2010
Published:24 July 2010
© 2010 Kwon et al; licensee BioMed Central Ltd. 
This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Abstract

Background

Cinnamomum cassia bark is the outer skin of an evergreen tall tree belonging to the family Lauraceae containing several active components such as essential oils (cinnamic aldehyde and cinnamyl aldehyde), tannin, mucus and carbohydrate. They have various biological functions including anti-oxidant, anti-microbial, anti-inflammation, anti-diabetic and anti-tumor activity. Previously, we have reported that anti-cancer effect of cinnamon extracts is associated with modulation of angiogenesis and effector function of CD8+ T cells. In this study, we further identified that anti-tumor effect of cinnamon extracts is also link with enhanced pro-apoptotic activity by inhibiting the activities NFκB and AP1 in mouse melanoma model.

 
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