Compositions for the delivery of therapeutic agents and methods of use and making thereof
Some embodiments pertain to nanoparticle-based compositions and their use in methods for the delivery of CBD to subjects. In some embodiments, the compositions are stable for prolonged periods of time and provide enhanced bioavailability.
1. A lipid-based nanoparticle composition, comprising:
cannabidiol (CBD) at a weight percent in the composition ranging from 1% to 10%;
a phosphatidylcholine at a weight percent in the composition ranging from 2.5% to 15%;
a sterol at a weight percent in the composition ranging from 0.5% to 5%; and
a medium chain triglyceride at a weight percent in the composition ranging from 2.5% to 15%; and
water at a weight percent in the composition ranging from 60% to about 80%;
wherein nanoparticles of the composition have an average size ranging from about 75 nm to about 200 nm;
wherein, when exposed to simulated gastric fluid at a pH of 1.6 and a temperature of 37° C. for a period of at least 1 hour, the average size of the nanoparticles changes less than or equal to 10%; and
wherein, when exposed to simulated intestinal fluid at a pH of 6.5 and a temperature of 37° C. for a period of at least 1 hour, the average size of the nanoparticles changes less than or equal to 10%,
wherein the lipid-based nanoparticle composition is free of surfactants and is free of emulsifiers other than phosphatidylcholine, and
wherein the lipid-based nanoparticle composition is an oil in water nanoemulsion.
2. The lipid-based nanoparticle composition of claim 1 , wherein an appreciable amount of the composition does not settle and/or separate from the water upon standing for a period of at least about one month at room temperature.
3. The lipid-based nanoparticle composition of claim 1 , wherein the composition has a Tmax for CBD by oral administration of less than 4.5 hours.
4. The lipid-based nanoparticle composition of claim 1 , wherein, upon storage for a period of one month at room temperature, the average size of the nanoparticles changes by less than 20%.
5. The lipid-based nanoparticle composition of claim 1 , wherein the polydispersity of the nanoparticles in the composition is less than or equal to 0.20.
6. The lipid-based nanoparticle composition of claim 1 , wherein upon 90 days of storage at 25° C. and 60% relative humidity, the polydispersity of the nanoparticles changes by less than or equal to 100%.
7. The lipid-based nanoparticle composition of claim 1 , wherein upon 90 days of storage at 25° C. and 60% relative humidity, the polydispersity of the nanoparticles changes by less than or equal to 0.1.
8. The lipid-based nanoparticle composition of claim 1 , upon 90 days of storage at 25° C. and 60% relative humidity, the D90 of the nanoparticles changes less than or equal to 10%.
9. The lipid-based nanoparticle composition of claim 1 , wherein the composition comprises the CBD at a weight percent in the composition ranging from 0.5% to 4%.
10. The lipid-based nanoparticle composition of claim 1 , wherein the composition comprises the phosphatidylcholine at a weight percent in the composition ranging from 7.5% to 12.5%.
11. The lipid-based nanoparticle composition of claim 1 , wherein the sterol is cholesterol or a phytosterol; and the composition comprises the sterol at a weight percent in the composition ranging from 0.5% to 2%.
12. The lipid-based nanoparticle composition of claim 1 , wherein the composition comprises the medium chain triglyceride at a weight percent in the composition ranging from 7.5% to 12.5%.
13. The lipid-based nanoparticle composition of claim 1 , wherein the composition has a concentration max (Cmax) of at least 80 ng/ml after oral administration of 15 mg/kg.
14. A method comprising administering an amount of the composition of claim 1 to a patient.
15. A method of manufacturing the lipid-based nanoparticle composition of claim 1 , the method comprising:
providing cannabidiol;
providing a phosphatidylcholine;
providing a sterol:
providing a medium chain triglyceride;
providing water;
mixing the water with the medium chain triglyceride, phosphatidylcholine, sterol, and cannabidiol to provide a mixture; and
passing the solution through a high pressure or high shear homogenizer to provide a lipid-based particle composition.