Methods and adapters for mixing pharmaceutical complexes
Embodiments of an adapter, a system including the adapter, and methods of using the adapter may be for mixing a first substance and a second substance. The adapter may include a body having a first port configured to connect with a first container to receive a first substance, a second port configured to connect with a second container to receive a second substance, a third port configured to connect with a recipient container to output a mixture of the first substance and the second substance, and a mixing chamber having a first portion in communication with the first port and the second port and a second portion in communication with the third port. The adapter may further include a mixing pin inserted into the mixing chamber. In some embodiments, the mixing pin at least partially defines at least one microfluidic path for mixing the first substance and the second substance. In some embodiments, at least one of the first channel and the second channel are oriented offset of a central plane of the body.
1 . An adapter comprising:
a body comprising:
a first port configured to connect with a first container to receive a first substance,
a first branch channel in communication with the first port,
a second port configured to connect with a second container to receive a second substance,
a second branch channel in communication with the second port,
a third port configured to connect with a recipient container to output a mixture of the first substance and the second substance,
a mixing chamber having a first portion in communication with the first branch channel and the second branch channel and a second portion in communication with the third port;
a first plug inserted into an end of the first branch channel;
a second plug inserted into an end of the second branch channel; and
a mixing pin inserted into the mixing chamber,
wherein the mixing pin at least partially defines at least one microfluidic path for mixing the first substance and the second substance.
2 . The adapter of claim 1 , wherein the body further comprises an opening in the first portion of the mixing chamber configured to receive the mixing pin.
3 . The adapter of claim 1 , wherein the mixing pin is removable from the mixing chamber.
4 . The adapter of claim 1 , wherein the mixing pin has a flange, and the body has a recess configured to receive the flange.
5 . The adapter of claim 1 , wherein the mixing pin includes a sealing portion configured to seal the first portion of the mixing chamber.
6 . The adapter of claim 1 , wherein the first port and/or the second port are substantially parallel to the mixing chamber.
7 . The adapter of claim 1 , wherein:
the first branch channel extends at a first angle relative to the mixing chamber, and
the second branch channel extends at a second angle relative to the mixing chamber.
8 . The adapter of claim 7 , wherein the first angle and/or the second angle is greater than 90 degrees.
9 . The adapter of claim 8 , wherein the first angle and/or the second angle is about 120 to about 160 degrees.
10 . The adapter of claim 1 , wherein the first branch channel is configured to guide the first substance toward the mixing pin, and the second branch channel is configured to guide the second substance toward the mixing pin.
11 . The adapter of claim 1 , wherein the mixing pin defines a first edge surface formed by a first surface and a second surface and a second edge formed by a third surface and a fourth surface, the first edge is configured to divide the first substance, and the second edge is configured to divide the second substance.
12 . The adapter of claim 1 , wherein the first port is a female Luer connector, the second port is a female Luer connector, and the third port is a male Luer connector.
13 . The adapter of claim 1 , wherein the at least one microfluidic path is tortuous.
14 . The adapter of claim 1 , wherein the at least microfluidic path is formed by at least one channel.
15 . The adapter of claim 14 , wherein at least one channel has a dimension of about 200 μm to about 1000 μm.
16 . The adapter of claim 15 , wherein the at least one channel has a dimension of about 400 μm to about 600 μm.
17 . The adapter of claim 14 , wherein the at least one channel includes at least one helical channel.
18 . The adapter of claim 17 , wherein the at least one helical channel includes a first helical channel and a second helical channel, wherein the first helical channel and the second helical channel intersect along a longitudinal length of the mixing pin at a plurality of intersection points.
19 . The adapter of claim 14 , wherein the at least one channel extends through the mixing pin.
20 . The adapter of claim 14 , wherein the mixing pin includes a plurality of protrusions that extend at least partially around a circumference of the mixing pin and define at least a portion of the at least one channel.
21 . The adapter of claim 20 , wherein the plurality of protrusions extends uniformly around the circumference of the mixing pin and forms at least one radial gap with respect to an inner surface of the body, the at least one radial gap forming at least a portion of the at least one channel.
22 . The adapter of claim 20 , wherein each of the plurality of protrusions have at least one first surface configured to create a seal against an inner surface of the body and at least one second surface forming at least one radial gap with respect to the inner surface of the body, the at least one radial gap forming at least a portion of the at least one channel.
23 . A system comprising:
a first container storing an aqueous solution;
a second container storing a lipid solution;
a recipient container; and
the adapter of claim 1 .
24 . The adapter of claim 1 , wherein the first plug is removable from the first branch channel.
25 . The adapter of claim 1 , wherein the second plug is removable from the second branch channel.
26 . The system of claim 23 , further comprising a second pin configured to be inserted into the mixing chamber, wherein the second mixing pin has a different geometry than the mixing pin.
27 . A method for producing a pharmaceutical complex using the adapter of claim 1 , the method comprising:
introducing the first substance into the first port;
introducing the second substance into the second port; and
mixing the first substance and the second substance in the at least microfluidic path through, along, and/or around the mixing pin to produce the pharmaceutical complex.
28 . The method of claim 27 , wherein the first substance is an aqueous solution, the second substance is a lipid solution, and the pharmaceutical complex includes lipid nanoparticles.