Flavoured nicotine powder inhaler
This disclosure relates to flavoured nicotine powder inhalers where the nicotine powder is delivered at air flow rates that mimic a smoking regime.
1 . A nicotine powder inhaler comprising:
a body extending between a proximal mouthpiece end and a distal end;
an airflow channel extending along the body, the airflow channel comprising a plurality of inlet channels and an outlet channel;
a capsule containing nicotine powder and disposed along the airflow channel;
a swirl generator element disposed in the body and constructed to induce rotational movement in the airflow moving through the body, the swirl generator element connecting the plurality of inlet channels to the outlet channel; and
the outlet channel extending from the swirl generator element to an outlet at the proximal mouthpiece end;
wherein the inhaler is constructed to deliver a dose of nicotine powder via air flow created by inhalation at the proximal mouthpiece end at an inhalation rate of less than about 5 L/min.
2 . A nicotine powder inhaler according to claim 1 , wherein the outlet channel has a volume being greater than a volume of the airflow channels.
3 . A nicotine powder inhaler according to claim 1 , further comprising a piercing element configured to extend into the nicotine powder receptacle.
4 . A nicotine powder inhaler according to claim 1 , wherein the inlet channels comprise three airflow channels.
5 . A nicotine powder inhaler according to claim 1 , comprising a cylindrical mouthpiece portion.
6 . A nicotine powder inhaler according to claim 1 , wherein the nicotine powder receptacle defines a cylindrical shape.
7 . A nicotine powder inhaler according to claim 1 , wherein the body has a transverse cross-section shape having a major axis and a minor axis, and the major axis is longer than the minor axis.
8 . The system of claim 1 , wherein the capsule further comprises a flavourant powder.
9 . The system of claim 1 , wherein the capsule further comprises an active agent.
10 . The system of claim 1 , wherein the nicotine powder has a mean average particle size in a range from 1 micrometer to 7 micrometers.
11 . The system of claim 10 , wherein at least 90% of the nicotine powder has a particle size of 7 micrometers or less.
12 . The system of claim 1 , wherein the nicotine powder comprises L-Leucine.
13 . The system of claim 1 , wherein the nicotine powder comprises nicotine bitartrate.
14 . The system of claim 1 , wherein the nicotine powder comprises nicotine glutamate.
15 . The system of claim 1 , wherein nicotine comprises an amount of nicotine powder sufficient to deliver from 10 to 30 inhalations of nicotine, each inhalation of nicotine comprising 0.5 mg to 3 mg of nicotine.
16 . A method of inhaling nicotine into lungs of a user:
inhaling air through the system of claim 1 at a flow rate of less than about 2 L/min to deliver powder nicotine into lungs of a user.
17 . The method of claim 16 , wherein the inhaling air through the system induces rotational movement of air flowing through the nicotine powder inhaler.
18 . The method of claim 16 , wherein the inhaling air through the system induces rotational movement of air flowing through the nicotine powder inhaler and delivers nicotine powder and flavourant powder into lungs of a user.
19 . The system of claim 1 , wherein the plurality of inlet channels extends from the distal end to the swirl generator element.