IP Library › Patent Application 19335431
Patent Application
App. No. 19/335,431

MICROFLUIDIC APPARATUS AND METHODS OF USE THEREOF

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Quick Facts
Patent No.
US None
App. No.
19/335,431
Abstract

Apparatuses and methods are described herein for processing polynucleotides in a scaled path environment. The apparatuses include optical sensors to monitor operations and to track material usage for good manufacturing practice.

Claims (52)

1 - 97 . (canceled)

98 . A microfluidic apparatus for forming a therapeutic polynucleotide, the apparatus comprising:

(a) a seating mount for removably holding a microfluidic path device;

(b) a plurality of pressure lines, each pressure line being operable to provide pneumatic pressure to a microfluidic path device held in the seating mount;

(c) a plurality of fluidic lines, each fluidic line being operable to provide fluid to a microfluidic path device held in the seating mount to form a closed fluid path; and

(d) a controller comprising one or more processors, the one or more processors programmed to drive fluidic movement in a flow, from one region of the microfluidic path device to at least one other region of the microfluidic path device when the microfluidic path device is held in the seating mount, to thereby provide one or more of the following:

(i) direct the synthesis of a synthetic template in one or more microfluidic path devices held in the seating mount,

(ii) direct an in vitro transcription (IVT) reaction using the template to form a therapeutic polynucleotide in one or more microfluidic path devices held in the seating mount, or

(iii) direct purification of the therapeutic polynucleotide in one or more microfluidic path devices held in the seating mount.

99 . The microfluidic apparatus of claim 98 , the one or more processors further programmed to control application of pressure through the pressure lines to thereby apply pneumatic pressure to a microfluidic path device held in the seating mount.

100 . The microfluidic apparatus of claim 98 , further comprising a microfluidic path device configured to fit in the seating mount.

101 . The microfluidic apparatus of claim 100 , the microfluidic path device including:

(i) a first chamber,

(ii) a second chamber, and

(iii) a channel providing a path for communication of fluid from the first chamber to the second chamber;

the or more processors programmed to drive fluidic movement in a flow from the first chamber to the second chamber via the channel.

102 . The microfluidic apparatus of claim 98 , further comprising a plurality of fluid containers coupled with the plurality of fluidic lines.

103 . The microfluidic apparatus of claim 102 , the plurality of fluid containers comprising a plurality of vials.

104 . The microfluidic apparatus of claim 102 , further comprising a plurality of sensors configured to monitor fluid levels within the plurality of fluid containers.

105 . The microfluidic apparatus of claim 104 , the plurality of sensors including one or more optical sensors.

106 . The microfluidic apparatus of claim 98 , at least one fluidic line of the plurality of fluidic lines being configured to be biased against a microfluidic path device held in the seating mount.

107 . The microfluidic apparatus of claim 98 , at least one pressure line of the plurality of pressure lines being configured to be biased against a microfluidic path device held in the seating mount.

108 . The microfluidic apparatus of claim 98 , further comprising one or more optical sensors, and an optical sensor drive operable to move at least one of the one or more optical sensors relative to a microfluidic path device held in the seating mount.

109 . The microfluidic apparatus of claim 98 , further comprising one or more alignment features configured to align the microfluidic path device in the seating mount.

110 . The microfluidic apparatus of claim 98 , further comprising a fluid interface assembly comprising the plurality of pressure lines and the plurality of fluidic lines.

111 . The microfluidic apparatus of claim 110 , the fluid interface assembly having a central opening, each pressure line of the plurality of pressure lines and each fluidic line of the plurality of fluidic lines having a respective sealing end arranged around a periphery of the central opening.

112 . The microfluidic apparatus of claim 111 , the fluid interface assembly including a plurality of sealing end exit points arranged around the periphery of the central opening, each fluidic line of the plurality of fluidic lines extending at least partially through a corresponding sealing end exit point of the plurality of sealing end exit points.

113 . A microfluidic apparatus for forming a therapeutic polynucleotide, the apparatus comprising:

(a) a seating mount for removably holding a microfluidic path device;

(b) a plurality of pressure lines, each pressure line being operable to provide pneumatic pressure to a microfluidic path device held in the seating mount;

(c) a plurality of fluidic lines, each fluidic line being operable to provide fluid to a microfluidic path device held in the seating mount to form a closed fluid path;

(d) a microfluidic path device configured to fit in the seating mount, the microfluidic path device including:

(i) a first chamber,

(ii) a second chamber, and

(iii) a channel providing a path for communication of fluid from the first chamber to the second chamber; and

(e) a controller comprising one or more processors, the or more processors programmed to drive fluidic movement in a flow from the first chamber to the second chamber via the channel to thereby form a therapeutic polynucleotide in the microfluidic path device while the microfluidic path device is held in the seating mount.

114 . The microfluidic apparatus of claim 113 , further comprising a fluid interface assembly comprising the plurality of pressure lines and the plurality of fluidic lines.

115 . The microfluidic apparatus of claim 114 , the fluid interface assembly having a central opening, each pressure line of the plurality of pressure lines and each fluidic line of the plurality of fluidic lines having a respective sealing end arranged around a periphery of the central opening.

116 . The microfluidic apparatus of claim 115 , the fluid interface assembly including a plurality of sealing end exit points arranged around the periphery of the central opening, each fluidic line of the plurality of fluidic lines extending at least partially through a corresponding sealing end exit point of the plurality of sealing end exit points.

117 . An apparatus for forming a therapeutic polynucleotide, the apparatus comprising:

(a) at least one process chip, including:

(i) a first chamber,

(ii) a second chamber, and

(iii) a channel providing a path for communication of fluid from the first chamber to the second chamber

(b) a plurality of fluid containers;

(c) a seating mount removably holding the at least one process chip;

(d) a plurality of pressure lines, each pressure line being operable to provide pneumatic pressure to the at least one process chip held in the seating mount;

(e) a plurality of fluidic lines coupled with the plurality of fluid containers, each fluidic line being operable to provide fluid to the at least one process chip held in the seating mount such that the plurality of fluidic lines, the plurality of fluid containers, and the at least one process chip collectively form a closed fluid path so that fluid within the closed fluid path is isolated from atmosphere; and

(f) a controller comprising one or more processors, the one or more processors programmed to drive fluidic movement in a flow, from the first chamber to the second chamber when the at least one process chip is held in the seating mount, to thereby provide one or more of the following:

(i) direct the synthesis of a synthetic template in the at least one process chip held in the seating mount,

(ii) direct an in vitro transcription (IVT) reaction using the template to form a therapeutic polynucleotide in the at least one process chip held in the seating mount, or

(iii) direct purification of the therapeutic polynucleotide in the at least one process chip held in the seating mount.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2026
From: ELDRIDGE, BENJAMIN; WEN, XIMIAO
To: NUTCRACKER THERAPEUTICS, INC.
Reel/Frame 074377/0592 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2026
From: NUTCRACKER THERAPEUTICS, INC.
To: MEDICI THERAPEUTICS, INC.
Reel/Frame 074407/0403 →