The instant application is directed to a formulation for a topical insect repellent for animals.
Insect bites often cause annoying reactions in animals. Additionally, insect bites are a vector for many types of disease including: malaria, Dengue Fever, Chikungunya, West Nile and Zika viruses as well as other forms of disease.
There is a need to prevent insects from biting a host to lessen the discomfort of a bite reaction and to prevent the potential spread of a disease.
Accordingly, a natural non-toxic ingredient based topical product that prevents bites to animals would be desirable.
In one aspect, there is disclosed a topical insect repellent composition for animals that includes a lotion including active and inert ingredients. The active ingredients include geraniol, clove oil, rosemary oil, and peppermint oil and the inert ingredients include sunflower oil, isopropyl myristate, decanoic acid, lauric acid, octanoic acid, water, vanillin, lecithin, and triethyl citrate.
In another aspect, there is disclosed a topical insecticide composition for animals that includes a lotion including active and inert ingredients. The active ingredients include geraniol, clove oil, rosemary oil, and peppermint oil and the inert ingredients include sunflower oil, isopropyl myristate, decanoic acid, lauric acid, octanoic acid, water, vanillin, lecithin, and triethyl citrate.
In a further aspect, there is disclosed a method of repelling insects on animals applying a lotion composition to an animal and exposing insects to the lotion, the lotion including active and inert ingredients, wherein the active ingredients include geraniol, clove oil, rosemary oil, and peppermint oil and the inert ingredients include sunflower oil, isopropyl myristate, decanoic acid, lauric acid, octanoic acid, water, vanillin, lecithin, and triethyl citrate.
Insect bites may transmit diseases and cause reactions to animals that are bitten. Various repellant compositions have been utilized in prior art repellant compositions. One such repellant, DEET, is often used in mosquito repellant compositions. DEET has been questioned as to its toxicity in higher amounts. There is therefore a need in the art for an improved and safe topical insect repellant composition.
In one aspect, there is disclosed herein a formulation that may be utilized as a topical lotion or spray to repel insects. The formulation may include organic and chemical-free compositions that will protect animals from biting and blood-seeking insects such as mosquitos, flies and other biting insects.
Example 1
The composition may include edible oil such as sunflower oil, peppermint oil, clove oil, rosemary oil, Geraniol, isopropyl myristate, decanoic acid, lauric acid, vanillin, octanoic acid, triethyl citrate, and lecithin.
The sunflower oil may be present in an amount of from 20 to 40% by weight. The Geraniol may be present in an amount of from 3 to 7% by weight. The clove oil may also be present in an amount of from 2 to 4% by weight. The rosemary oil may also be present in an amount of from 1 to 3% by weight. The peppermint oil may also be present in an amount of from 1 to 3% by weight. The decanoic acid may be present in an amount of from 3 to 7% by weight. Laurie acid may be present in an amount of from 3 to 7% by weight. Isopropyl myristate may be present in an amount of from 15 to 25% by weight. Vanillin may be present in an amount of from 3 to 7% by weight. Octanoic acid may be present in an amount of from 2 to 4% by weight. Triethyl citrate may be present in an amount of from 2 to 4% by weight. Lecithin may be present in an amount of from 0.3 to 0.7% by weight. The weight percentages are based on a total weight of the composition.
As described above, the composition may include active ingredients and inactive ingredients. The peppermint oil, clove oil, rosemary oil, and Geraniol may be classified as active ingredients wherein isopropyl myristate, decanoic acid, lauric acid, vanillin, octanoic acid, triethyl citrate, and lecithin may be considered inert or inactive ingredients.
The composition was made according to the following procedure. The Sunflower oil was heated from room temperature to 145 to 160 degrees F. in a mixing vat under agitation. The lecithin, and vanillin were added to the composition when the temperature approaches 100 F. The mixture is heated and agitated until about 125 degrees F. and a shearing mechanism is activated and maintained until the mixture contains no grit. Next, decanoic acid, lauric acid, octanoic acid isopropyl myristate, and triethyl citrate, are added to the composition under agitation. The composition is maintained under agitation. Peppermint oil, clove oil, rosemary oil, and Geraniol, then added and the composition cools to about 125-130 F. The composition is agitated and sheared for a specified time dependent upon the size of the batch.
The efficacy of the formulas provided in the examples may be attributed to various properties. In one aspect, the fatty acids and isopropyl myristate present in the composition are not volatile and provide a long lasting product when applied. Further, the acids Decanoic Acid (C10:0), Laurie Acid (C12:0), octanoic acid C8:0) may have properties that deter or repel insects.
Testing
The deterrent effect of the above-described compositions (represented as ST-S (example 1) in
Normality Tests:
Biting counts by treatment were found to follow closer to a normal distribution compared to log or square root transformed data. Consequently, all statistical analysis was conducted on non-transformed data.
Biting Count and Repellency:
There were no significant differences in average biting counts among the nine K&D modules. Biting counts in the controls were significantly greater than all formulations at 0, 1, 2, 6, and 8 hrs. post-treatment (
Insect and Tick Testing
Testing was performed on the formula of example 1 for its repellency and insecticidal properties.
Various live tick species were purchased from Oklahoma State University. Five ticks of the identified species were placed in containers and then exposed to the formula of example 1. The species of tick and results are presented in Table 2 below.
Dermacentor
variabilis
Amblyomma
americanum
Rhipicephalus
sanguineus
Ixodes scapularis
As can be seen from the above results, the formula of example 1 acts as an insecticide for ticks that have been sprayed with the composition of formula 1.
The formula of example 1 was applied to horses and cows. After application to the animals, it was observed that the horses were protected from biting insects such as biting flies, and mosquitos for 2 to 3 days. The long lasting affect of the repellent is a significant improvement over prior art repellents that easily evaporate. The formula of Example 1 provides a natural repellant and insecticide composition for animals. The formula of Example 1 is not toxic to humans and can be applied without protection to the human.
The instant application claims priority to U.S. Provisional Application Ser. No. 63/125,686 filed Dec. 15, 2020 the entire contents of which are incorporated herein by reference.
Number | Date | Country | |
---|---|---|---|
63125686 | Dec 2020 | US |