Patents by Inventor Carina Zweigart
Carina Zweigart has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12059657Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: GrantFiled: May 4, 2023Date of Patent: August 13, 2024Assignee: GAMBRO LUNDIA ABInventors: Markus Hornung, Bernd Krause, Markus Storr, Philipp Herbst, Arnd Wochner, Adriana Boschetti-De-Fierro, Manuel Voigt, Carina Zweigart, Joachim Loercher, Reinhold Buck, Heinrich Behr, Werner Beck
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Patent number: 12059658Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: GrantFiled: May 4, 2023Date of Patent: August 13, 2024Assignee: GAMBRO LUNDIA ABInventors: Adriana Boschetti-De-Fierro, Manuel Voigt, Bernd Krause, Markus Hornung, Markus Storr, Heinrich Behr, Werner Beck, Carina Zweigart, Reinhold Buck, Philipp Herbst, Joachim Loercher, Arnd Wochner
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Publication number: 20240050907Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: ApplicationFiled: May 4, 2023Publication date: February 15, 2024Inventors: Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Bernd KRAUSE, Markus HORNUNG, Markus STORR, Heinrich BEHR, Werner BECK, Carina ZWEIGART, Reinhold BUCK, Philipp HERBST, Joachim LOERCHER, Arnd WOCHNER
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Publication number: 20230271146Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: ApplicationFiled: May 4, 2023Publication date: August 31, 2023Inventors: Markus HORNUNG, Bernd KRAUSE, Markus STORR, Philipp HERBST, Arnd WOCHNER, Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Carina ZWEIGART, Joachim LOERCHER, Reinhold BUCK, Heinrich BEHR, Werner BECK
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Patent number: 11712668Abstract: The present disclosure relates to a microporous hollow fiber filter membrane having a large inner diameter and a thin wall. The fiber can be used for sterile filtration of liquids or removal of particles from liquids. The disclosure further relates to a method for producing the membrane and a filter device comprising the membrane.Type: GrantFiled: July 18, 2018Date of Patent: August 1, 2023Assignee: GAMBRO LUNDIA ABInventors: Ralf Menda, Evelyn Grossmann, Carina Zweigart, Bernd Bauer, Michael Schuster
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Patent number: 11666869Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: GrantFiled: February 1, 2022Date of Patent: June 6, 2023Assignee: GAMBRO LUNDIA ABInventors: Markus Hornung, Bernd Krause, Markus Storr, Philipp Herbst, Arnd Wochner, Adriana Boschetti-De-Fierro, Manuel Voigt, Carina Zweigart, Joachim Loercher, Reinhold Buck, Heinrich Behr, Werner Beck
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Patent number: 11666868Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: GrantFiled: February 1, 2022Date of Patent: June 6, 2023Assignee: GAMBRO LUNDIA ABInventors: Adriana Boschetti-De-Fierro, Manuel Voigt, Bernd Krause, Markus Hornung, Markus Storr, Heinrich Behr, Werner Beck, Carina Zweigart, Reinhold Buck, Philipp Herbst, Joachim Loercher, Arnd Wochner
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Publication number: 20220152562Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: ApplicationFiled: February 1, 2022Publication date: May 19, 2022Inventors: Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Bernd KRAUSE, Markus HORNUNG, Markus STORR, Heinrich BEHR, Werner BECK, Carina ZWEIGART, Reinhold BUCK, Philipp HERBST, Joachim LOERCHER, Arnd WOCHNER
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Publication number: 20220152563Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: ApplicationFiled: February 1, 2022Publication date: May 19, 2022Inventors: Markus HORNUNG, Bernd KRAUSE, Markus STORR, Philipp HERBST, Arnd WOCHNER, Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Carina ZWEIGART, Joachim LOERCHER, Reinhold BUCK, Heinrich BEHR, Werner BECK
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Patent number: 11273416Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: GrantFiled: April 17, 2020Date of Patent: March 15, 2022Assignee: GAMBRO LUNDIA ABInventors: Adriana Boschetti-De-Fierro, Manuel Voigt, Bernd Krause, Markus Hornung, Markus Storr, Heinrich Behr, Werner Beck, Carina Zweigart, Reinhold Buck, Philipp Herbst, Joachim Loercher, Arnd Wochner
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Patent number: 11273417Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: GrantFiled: April 17, 2020Date of Patent: March 15, 2022Assignee: GAMBRO LUNDIA ABInventors: Markus Hornung, Bernd Krause, Markus Storr, Philipp Herbst, Arnd Wochner, Adriana Boschetti-De-Fierro, Manuel Voigt, Carina Zweigart, Joachim Loercher, Reinhold Buck, Heinrich Behr, Werner Beck
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Publication number: 20200316533Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: ApplicationFiled: April 17, 2020Publication date: October 8, 2020Inventors: Markus HORNUNG, Bernd KRAUSE, Markus STORR, Philipp HERBST, Arnd WOCHNER, Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Carina ZWEIGART, Joachim LOERCHER, Reinhold BUCK, Heinrich BEHR, Werner BECK
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Publication number: 20200269197Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: ApplicationFiled: April 17, 2020Publication date: August 27, 2020Inventors: Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Bernd KRAUSE, Markus HORNUNG, Markus STORR, Heinrich BEHR, Werner BECK, Carina ZWEIGART, Reinhold BUCK, Philipp HERBST, Joachim LOERCHER, Arnd WOCHNER
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Publication number: 20200222858Abstract: The present disclosure relates to a microporous hollow fiber filter membrane having a large inner diameter and a thin wall. The fiber can be used for sterile filtration of liquids or removal of particles from liquids. The disclosure further relates to a method for producing the membrane and a filter device comprising the membrane.Type: ApplicationFiled: July 18, 2018Publication date: July 16, 2020Inventors: Ralf MENDA, Evelyn HARTMANN, Carina ZWEIGART, Bernd BAUER, Michael SCHUSTER
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Patent number: 10661231Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: GrantFiled: February 5, 2015Date of Patent: May 26, 2020Assignee: GAMBRO LUNDIA ABInventors: Adriana Boschetti-De-Fierro, Manuel Voigt, Bernd Krause, Markus Hornung, Markus Storr, Heinrich Behr, Werner Beck, Carina Zweigart, Reinhold Buck, Philipp Herbst, Joachim Loercher, Arnd Wochner
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Patent number: 10661230Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: GrantFiled: February 5, 2015Date of Patent: May 26, 2020Assignee: GAMBRO LUNDIA ABInventors: Markus Hornung, Bernd Krause, Markus Storr, Philipp Herbst, Arnd Wochner, Adriana Boschetti-De-Fierro, Manuel Voigt, Carina Zweigart, Joachim Loercher, Reinhold Buck, Heinrich Behr, Werner Beck
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Publication number: 20200147287Abstract: The present disclosure concerns a hemodialyzer for the purification of blood and use thereof. The hemodialyzer comprises a bundle of hollow fiber membranes, wherein the hollow fiber membranes have an inner diameter (dB) within the range of 168-175 ?m, a fiber wall thickness (?m) within the range of 25-26 ?m, and an effective length (L) within the hemodialyzer within the range of 207-287 mm. The bundle of hollow fiber membranes has a packing density within the range of 57.5-60.0%, and a total membrane surface area (Atot) within the range of from 1.64 to 1.73 m2.Type: ApplicationFiled: March 29, 2018Publication date: May 14, 2020Inventors: Danilo DONATO, Sunny ELOOT, Carina ZWEIGART, Adriana BOSCHETTI-DE-FIERRO, Michael KOLB, Bernd KRAUSE, Markus STORR
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Publication number: 20170165616Abstract: The present disclosure relates to semipermeable membranes which are suitable for blood purification, e.g. by hemodialysis, which have an increased ability to remove larger molecules while at the same time effectively retaining albumin. The membranes are characterized by a molecular retention onset (MWRO) of between 9.0 kD and 14.5 kD and a molecular weight cut-off (MWCO) of between 55 kD and 130 kD as determined by dextran sieving curves and can be prepared by industrially feasible processes excluding a treatment with salt before drying. The invention therefore also relates to a process for the production of the membranes and to their use in medical applications.Type: ApplicationFiled: February 5, 2015Publication date: June 15, 2017Inventors: Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Bernd KRAUSE, Markus HORNUNG, Markus STORR, Heinrich BEHR, Werner BECK, Carina ZWEIGART, Reinhold BUCK, Philipp HERBST, Joachim LOERCHER, Arnd WOCHNER
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Publication number: 20170165615Abstract: The present disclosure relates to a dialyzer comprising a bundle of semipermeable hollow fiber membranes which is suitable for blood purification, wherein the dialyzer has an increased ability to remove larger molecules while at the same time it is able to effectively remove small uremic toxins and efficiently retain albumin and larger proteins. The invention also relates to using said dialyzer in hemodialysis.Type: ApplicationFiled: February 5, 2015Publication date: June 15, 2017Inventors: Markus HORNUNG, Bernd KRAUSE, Markus STORR, Philipp HERBST, Arnd WOCHNER, Adriana BOSCHETTI-DE-FIERRO, Manuel VOIGT, Carina ZWEIGART, Joachim LOERCHER, Reinhold BUCK, Heinrich BEHR, Werner BECK
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Patent number: 9527040Abstract: Continuous processes for depleting residuals in hollow fiber membranes comprising polysulfone or polyethersulfone and polyvinylpyrrolidone by rinsing the membranes while compressing them in a pinching device comprising grooved rollers.Type: GrantFiled: October 18, 2012Date of Patent: December 27, 2016Assignee: GAMBRO LUNDIA ABInventors: Bernd Krause, Carina Zweigart, Christof Beck, Bernd Hertzler, Steffen Wagner, Joachim Loercher