Patents Assigned to WATERS TECHNOLOGY CORPORATION
  • Patent number: 12117427
    Abstract: The present disclosure discusses a method of separating a sample (e.g., small organic acid metabolite) including coating a flow path of a chromatographic system. The coating along the flow path is vapor deposited and prevents or severely decreases metal interactions between the metallic chromatographic system and the sample.
    Type: Grant
    Filed: June 29, 2023
    Date of Patent: October 15, 2024
    Assignee: Waters Technologies Corporation
    Inventors: Kerri M. Smith, Paul Rainville
  • Patent number: 12117445
    Abstract: The present disclosure relates to a method of separating a sample including a mycotoxin. The method includes flowing the sample through a column to load the sample on the column, washing the column to reduce impurities, eluting the mycotoxin from the column, collecting an eluted sample with the mycotoxin in a sample plate, sealing the eluted sample in the sample plate, transferring the sealed sample plate, removing the eluted sample from the transferred sample plate; and analyzing the removed eluted sample. The column can include an affinity resin, such as, for example, an immunoaffinity resin. The sample plate can be a 96-well plate.
    Type: Grant
    Filed: March 17, 2021
    Date of Patent: October 15, 2024
    Assignee: Waters Technologies Corporation
    Inventors: Lingyun Chen, Jianmin Liu
  • Publication number: 20240335830
    Abstract: A sample preparation device is provided for enriching a component of a sample. The sample preparation device includes a surface in fluid communication with the sample, an alkylsilyl coating disposed on the surface, and an affinity ligand or an enzyme covalently bonded to the alkylsilyl coating.
    Type: Application
    Filed: June 21, 2024
    Publication date: October 10, 2024
    Applicant: Waters Technologies Corporation
    Inventors: Matthew A. Lauber, Mathew H. DeLano, Beatrice Muriithi, Anna Boardman
  • Publication number: 20240326019
    Abstract: The present disclosure is directed to stationary phase materials (e.g., porous inorganic-organic hybrid particles) for performing size exclusion chromatography. Embodiments of the present disclosure feature hydroxy-terminated polyethylene glycol surface modified stationary phase materials.
    Type: Application
    Filed: June 11, 2024
    Publication date: October 3, 2024
    Applicant: Waters Technologies Corporation
    Inventors: Yeliz Tunc Sarisozen, Nicole L. Lawrence, Darryl W. Brousmiche, Andrew Wyatt Schmudlach, Matthew A. Lauber
  • Patent number: 12091433
    Abstract: In various aspects, the present disclosure pertains to sorbents for isolating at least one target protein from a liquid sample, the sorbents comprising a solid support comprising attached at least one attached high affinity reagent with an affinity for the at least one target protein. Other aspects of the present disclosure include kit that contain such sorbents and methods of treating samples using the same.
    Type: Grant
    Filed: September 24, 2021
    Date of Patent: September 17, 2024
    Assignee: WATERS TECHNOLOGIES CORPORATION
    Inventors: Laks Iyer, Beatrice W. Muriithi
  • Patent number: 12092171
    Abstract: Described is a rotary coupling that includes a pair of coupling bodies having parallel (preferably coincident) rotation axes, two cylindrical elements and a preload mechanism. A gap is provided between surfaces on the first and second coupling bodies. The first cylindrical element is disposed on the first coupling body and has a first cylinder axis, and the second cylindrical element is disposed on the second coupling body adjacent to the first cylindrical element and has a second cylinder axis that is perpendicular to the first cylinder axis. The preload mechanism imparts a force to each of the first and second coupling bodies and thereby preloads the first and second cylindrical elements against each other at a point of contact. One example of the preload mechanism includes a pair of magnets disposed opposite each other across the gap and another example of the preload mechanism includes an air bearing.
    Type: Grant
    Filed: September 2, 2022
    Date of Patent: September 17, 2024
    Assignee: Waters Technologies Corporation
    Inventors: Gurpreet Singh, Colin F. Fredette, Dan Sullivan, Neal Pugh
  • Publication number: 20240301097
    Abstract: The current invention provides a novel method to synthesize a mono-disperse non-porous polymer particles with a unique gradient composition from the core to the shell. In particular, the present invention offers the flexibility to design the chemical and physical properties of different sections of the particle. This flexibility allows for significant latitude in the design of particles for analyzing a large variety of samples in different fields—through using these particles in different chromatography techniques including, but not limited to, ion exchange HPLC (e.g., bio-separation at different modes), reversed-phase HPLC, narrow bore and capillary HPLC, hydrophilic/hydrophobic interaction liquid chromatography, capillary electrochromatography separation, and two dimensional liquid chromatography.
    Type: Application
    Filed: May 13, 2024
    Publication date: September 12, 2024
    Applicant: Waters Technologies Corporation
    Inventors: Darryl W. Brousmiche, Kevin Daniel Wyndham, Mingcheng Xu, Michael F. Morris
  • Publication number: 20240302334
    Abstract: The present disclosure is directed to methods of separating one or more non-modified oligosaccharide(s) with degree of polymerization 6 or higher from a sample using a hydrophilic interaction liquid chromatography (HILIC) column connected to a liquid chromatography system that includes coated flow paths. The methods disclosed herein requires, inter alia, a liquid chromatography system, wherein at least one component of the LC system includes a fluid-contacting alkylsilyl coating. When implementing a standard HILIC method, the methods of the present technology can be used to decrease the analyte loss and/or carry-over of the separation leading to improved analysis.
    Type: Application
    Filed: March 8, 2024
    Publication date: September 12, 2024
    Applicant: Waters Technologies Corporation
    Inventors: Jinchuan Yang, Paul Rainville
  • Publication number: 20240302333
    Abstract: The present disclosure relates to the determination of analytes in a sample using chromatography. The present disclosure provides methods of separating an analyte from a sample. The method includes introducing a sample comprising the analytes into a chromatographic system. The chromatographic system has a flow path disposed in an interior of the chromatographic system, at least a portion of the flow path having an active coating, and a chromatographic column having a stationary phase material in an interior of the chromatographic column that facilitates separation of the analytes in the sample through interaction with at least one analyte in the sample. The active coating is selected to interact with at least one analyte in the sample through (1) a repulsive force, (2) a secondary interaction, or (3) a retention mechanism distinct from the interaction with the stationary phase material.
    Type: Application
    Filed: April 25, 2024
    Publication date: September 12, 2024
    Applicant: Waters Technologies Corporation
    Inventors: Matthew A. Lauber, Martin Gilar, Mathew H. DeLano, Michael Donegan
  • Patent number: 12083498
    Abstract: The present disclosure relates to a method of separating a compound of interest, particularly unsaturated compound(s) of interest, from a mixture. The compound is separated using a column having a chromatographic stationary phase material for various different modes of chromatography containing a first substituent and a second substituent. The first substituent minimizes compound retention variation over time under chromatographic conditions. The second substituent chromatographically and selectively retains the compound by incorporating one or more aromatic, polyaromatic, heterocyclic aromatic, or polyheterocyclic aromatic hydrocarbon groups, each group being optionally substituted with an aliphatic group. In some examples, the present disclosure can include a chromatographic system having a chromatographic column having a stationary phase with a chromatographic substrate containing silica, metal oxide, an inorganic-organic hybrid material, a group of block copolymers, or a combination thereof.
    Type: Grant
    Filed: July 10, 2020
    Date of Patent: September 10, 2024
    Assignee: Waters Technologies Corporation
    Inventors: Darryl W. Brousmiche, Jacob N. Fairchild, Jason F. Hill, Giorgis Isaac, Michael F. Morris, Kevin D. Wyndham
  • Patent number: 12085584
    Abstract: Described is a method for loading a sample-vial carrier into a sample manager of a liquid chromatography system. The method includes placing a sample-vial carrier onto a transfer drawer having first and second drawer magnets. The transfer drawer is transported into a sample tray of a sample manager using a drawer drive system of a transfer drawer receiving apparatus. The drawer drive system has a drive magnet that is engaged with the first drawer magnet during transport. The transport of the transfer drawer is terminated when the second drawer magnet is engaged with a sample tray magnet on the sample tray. The sample tray is rotated about an axis substantially perpendicular to a direction of transport of the transfer drawer to provide a shear force to disengage the first drawer magnet from the drive magnet.
    Type: Grant
    Filed: July 27, 2020
    Date of Patent: September 10, 2024
    Assignee: Waters Technologies Corporation
    Inventor: Jeffrey Musacchio
  • Publication number: 20240293799
    Abstract: In one aspect, the present invention provides a chromatographic stationary phase material for various different modes of chromatography represented by Formula 1: [X](W)a(Q)b(T)c (Formula 1). X can be a high purity chromatographic core composition having a surface comprising a silica core material, metal oxide core material, an inorganic-organic hybrid material or a group of block copolymers thereof. W can be absent and/or can include hydrogen and/or can include a hydroxyl on the surface of X. Q can be a functional group that minimizes retention variation over time (drift) under chromatographic conditions utilizing low water concentrations. T can include one or more hydrophilic, polar, ionizable, and/or charged functional groups that chromatographically interact with the analyte. Additionally, b and c can be positive numbers, with the ratio 0.05?(b/c)?100, and a?0.
    Type: Application
    Filed: April 24, 2024
    Publication date: September 5, 2024
    Applicant: Waters Technologies Corporation
    Inventors: Kevin D. Wyndham, Michael F. Morris, Darryl W. Brousmiche, Jason F. Hill, Jacob N. Fairchild
  • Patent number: 12077560
    Abstract: The present disclosure provides devices, systems, kits and methods useful for quantitation of biomolecules such as intact proteins and nucleic acids.
    Type: Grant
    Filed: March 24, 2021
    Date of Patent: September 3, 2024
    Assignee: Waters Technologies Corporation
    Inventors: Jennifer M. Nguyen, Matthew A. Lauber, Yun Wang Alelyunas, Gregory T. Roman, Henry Y. Shion
  • Patent number: 12078621
    Abstract: The disclosure relates to a gradient twin column recycling chromatography method that is used to separate a mixture containing closely eluting compounds. In one embodiment, a sample includes a primary organic compound and one or more impurities that closely elute with the primary organic compound. A gradient mobile phase is initially used to remove unwanted early eluting and late eluting impurities from the sample. After the gradient removal of some of the impurities is complete, the remaining mixture of the primary organic compound and the closely eluting impurities are separated using recycle chromatography methodology with an isocratic mobile phase.
    Type: Grant
    Filed: March 21, 2022
    Date of Patent: September 3, 2024
    Assignee: Waters Technologies Corporation
    Inventor: Fabrice Gritti
  • Publication number: 20240280450
    Abstract: The present technology relates to a method for improved recovery of phosphorylated compounds (e.g., phosphorylated glycans). In particular, the present technology utilizes certain chelator additives in a solution to wash and elute the phosphorylated compounds from a solid phase extraction cartridge.
    Type: Application
    Filed: April 23, 2024
    Publication date: August 22, 2024
    Applicant: Waters Technologies Corporation
    Inventors: Xiaoxiao Liu, Matthew Lauber, Michael Donegan
  • Patent number: 12066117
    Abstract: Described is a check valve having a valve housing, a valve seat, a ball and a spherical loading element. The valve seat is disposed proximate to a first end of the bore. The ball is disposed in the bore and is movable between a closed position in which the ball is received against the valve seat and prevents a flow of fluid through the bore and an open position in which the ball is displaced from the valve seat and allows fluid to flow through the bore. The spherical loading element is disposed in the bore and is movable between the ball and the second end of the bore. The spherical loading element applies a supplemental force to move the ball against the valve seat during closing of the check valve. The check valve provides a low and predictable cracking pressure which does not vary significantly between similarly manufactured valves.
    Type: Grant
    Filed: May 6, 2022
    Date of Patent: August 20, 2024
    Assignee: Waters Technologies Corporation
    Inventor: Christopher Walden
  • Patent number: 12059659
    Abstract: A solvent mixing system includes a mixing tee, a centrifugal mixing path, and a low frequency blending mixer. The mixing tee has at least two solvent input ports and a solvent output port in fluid communication with one another. The centrifugal mixing path has a mixing path inlet in fluid communication with the solvent output port of the mixing tee. The centrifugal mixing path includes at least one coiled segment between the mixing path inlet and a mixing path outlet. The low frequency blending mixer is in fluid communication with the outlet of the centrifugal mixing path.
    Type: Grant
    Filed: April 27, 2021
    Date of Patent: August 13, 2024
    Assignee: Waters Technologies Corporation
    Inventor: Neal Almeida
  • Patent number: 12053781
    Abstract: Disclosed herein are solvent reservoir systems for steady flow delivery and simultaneous monitoring of solvent level and solvent density within the solvent reservoir systems and methods for monitoring the solvent reservoir systems and providing feedback to a user or adjusting the systems in response to the monitored characteristics.
    Type: Grant
    Filed: September 1, 2023
    Date of Patent: August 6, 2024
    Assignee: Waters Technologies Corporation
    Inventor: Sean Eric Anderson
  • Patent number: 12051582
    Abstract: Exemplary embodiments may deploy a valve that introduces a sample of a calibrant coaxially with flow exiting a source of a mobile phase flow, such as a liquid chromatography (LC) column, on a path to an ion source for the mass spectrometer (MS). The valve may be positioned remotely on a branch that has a junction with the path leading form the source of the mobile phase flow to the ion source. Alternatively, the valve may be positioned in line on the flow path from the source of the mobile phase flow to the ion source of the MS. A novel five port valve design may be employed. With this valve design, a first position of the valve allows a sample loop for the calibrant to be filled. In a second position, the calibrant is added coaxially to the flow from the source of the mobile phase to the MS. In a third position of the valve, diversion of or infusion to a post-source flow is enabled.
    Type: Grant
    Filed: September 15, 2023
    Date of Patent: July 30, 2024
    Assignee: Waters Technologies Corporation
    Inventors: Michael O. Fogwill, Joseph D. Michienzi, Sylvain Gilles Cormier
  • Patent number: 12048926
    Abstract: A sample preparation device is provided for enriching a component of a sample. The sample preparation device includes a surface in fluid communication with the sample, an alkylsilyl coating disposed on the surface, and an affinity ligand or an enzyme covalently bonded to the alkylsilyl coating.
    Type: Grant
    Filed: June 26, 2020
    Date of Patent: July 30, 2024
    Assignee: Waters Technologies Corporation
    Inventors: Matthew A. Lauber, Mathew H. DeLano, Beatrice Muriithi, Xiaoxiao Liu, Anna Boardman