JP2017522113A5 - - Google Patents
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- JP2017522113A5 JP2017522113A5 JP2017502712A JP2017502712A JP2017522113A5 JP 2017522113 A5 JP2017522113 A5 JP 2017522113A5 JP 2017502712 A JP2017502712 A JP 2017502712A JP 2017502712 A JP2017502712 A JP 2017502712A JP 2017522113 A5 JP2017522113 A5 JP 2017522113A5
- Authority
- JP
- Japan
- Prior art keywords
- microgel particles
- gel system
- microporous gel
- annealing
- microporous
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
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Applications Claiming Priority (7)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201462025844P | 2014-07-17 | 2014-07-17 | |
| US62/025,844 | 2014-07-17 | ||
| US201462059463P | 2014-10-03 | 2014-10-03 | |
| US62/059,463 | 2014-10-03 | ||
| US201562103002P | 2015-01-13 | 2015-01-13 | |
| US62/103,002 | 2015-01-13 | ||
| PCT/US2015/040962 WO2016011387A1 (en) | 2014-07-17 | 2015-07-17 | Controllable self-annealing microgel particles for biomedical applications |
Related Child Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP2020008247A Division JP7188779B2 (ja) | 2014-07-17 | 2020-01-22 | 生物医学的応用のための制御可能な自己アニーリング型ミクロゲル粒子 |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| JP2017522113A JP2017522113A (ja) | 2017-08-10 |
| JP2017522113A5 true JP2017522113A5 (https=) | 2018-08-30 |
| JP6651500B2 JP6651500B2 (ja) | 2020-02-19 |
Family
ID=55079098
Family Applications (3)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP2017502712A Active JP6651500B2 (ja) | 2014-07-17 | 2015-07-17 | 生物医学的応用のための制御可能な自己アニーリング型ミクロゲル粒子 |
| JP2020008247A Active JP7188779B2 (ja) | 2014-07-17 | 2020-01-22 | 生物医学的応用のための制御可能な自己アニーリング型ミクロゲル粒子 |
| JP2022134723A Active JP7627498B2 (ja) | 2014-07-17 | 2022-08-26 | 生物医学的応用のための制御可能な自己アニーリング型ミクロゲル粒子 |
Family Applications After (2)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP2020008247A Active JP7188779B2 (ja) | 2014-07-17 | 2020-01-22 | 生物医学的応用のための制御可能な自己アニーリング型ミクロゲル粒子 |
| JP2022134723A Active JP7627498B2 (ja) | 2014-07-17 | 2022-08-26 | 生物医学的応用のための制御可能な自己アニーリング型ミクロゲル粒子 |
Country Status (11)
| Country | Link |
|---|---|
| US (7) | US20160279283A1 (https=) |
| EP (1) | EP3169372B1 (https=) |
| JP (3) | JP6651500B2 (https=) |
| KR (4) | KR102264607B1 (https=) |
| CN (2) | CN111939316B (https=) |
| AU (1) | AU2015289474B2 (https=) |
| BR (1) | BR112017000813B1 (https=) |
| CA (1) | CA2955357A1 (https=) |
| ES (1) | ES3002759T3 (https=) |
| IL (2) | IL282559B (https=) |
| WO (1) | WO2016011387A1 (https=) |
Families Citing this family (40)
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|---|---|---|---|---|
| WO2009134354A1 (en) | 2008-04-30 | 2009-11-05 | Flanigan Theodore P | System and method for pre-treatment of rubber-modified asphalt cement, and emulsions thereof |
| EP2346940A4 (en) | 2008-09-24 | 2013-04-24 | Wright Advanced Asphalt Systems | SYSTEM AND METHOD FOR THE PRODUCTION OF RUBBER-MODIFIED ASPHALT CEMENT HIGH-PERFORMANCE |
| KR102264607B1 (ko) | 2014-07-17 | 2021-06-14 | 더 리전트 오브 더 유니버시티 오브 캘리포니아 | 생물의학적 적용을 위한 제어가능한 자기-어닐링 마이크로겔 입자 |
| GB201514788D0 (en) | 2015-08-20 | 2015-10-07 | Ecole Polytech | Malleable scaffold material and uses thereof |
| WO2017136427A1 (en) * | 2016-02-02 | 2017-08-10 | The Regents Of The University Of California | Hydrogel for endogenous neuroprogenitor cell recruitment |
| WO2017142879A1 (en) | 2016-02-16 | 2017-08-24 | The Regents Of The University Of California | Methods for immune system modulation with microporous annealed particle gels |
| ES2989467T3 (es) | 2016-04-08 | 2024-11-26 | Univ California | Hidrogel para la respuesta inmune diseñada a péptidos con D-quiralidad |
| WO2018013726A1 (en) * | 2016-07-12 | 2018-01-18 | Northeastern University | Single cell fluorescence in situ hybridization in microfluidic droplets |
| JP6345736B2 (ja) * | 2016-07-15 | 2018-06-20 | 国立研究開発法人科学技術振興機構 | 液滴安定化装置、液滴分取装置及びそれらの方法 |
| CN110446508A (zh) * | 2016-12-29 | 2019-11-12 | 泰普治疗公司 | 用于治疗医疗植入物部位的方法和系统 |
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| WO2018156935A1 (en) | 2017-02-24 | 2018-08-30 | The Regents Of The University Of California | Particle-drop structures and methods for making and using the same |
| US11131673B2 (en) | 2017-04-27 | 2021-09-28 | Northeastern University | Live single-cell bioassay in microdroplets |
| US11129790B2 (en) | 2017-05-19 | 2021-09-28 | Northeastern University | Chemo-enzymatic site-specific modification of peptides and proteins to form cleavable conjugates |
| US11926091B2 (en) | 2018-03-27 | 2024-03-12 | UNITED STATES OF AMERICA has certain rights in the invention from DOE Grant No. DE-SC0008581 | In situ partially degradable separation interface for fabrication of complex near net shape objects by pressure assisted sintering |
| CA3097047A1 (en) | 2018-04-13 | 2019-10-17 | University Of Virginia Patent Foundation | Compositions and methods for preparing and using non-immunogenic fast annealing microporous annealed particle hydrogels |
| US11998654B2 (en) | 2018-07-12 | 2024-06-04 | Bard Shannon Limited | Securing implants and medical devices |
| EP3866867A4 (en) * | 2018-10-18 | 2022-07-13 | The Regents of the University of California | PROCESS FOR THE PREPARATION OF MODULAR HYDROGELS FROM MACROMOLECULES WITH ORTHOGONAL PHYSICOCHEMICAL REACTION |
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| EP3789049A1 (en) * | 2019-09-06 | 2021-03-10 | QGel SA | Method for obtaining healthy intestinal organoids |
| US20230001055A1 (en) * | 2019-12-06 | 2023-01-05 | University Of Virginia Patent Foundation | Injectable micro-annealed porous scaffold for articular cartilage regeneration |
| WO2021174008A1 (en) * | 2020-02-28 | 2021-09-02 | University Of Florida Research Foundation | Compositions, methods, kits, and systems relating to charge-neutral microgels for 3d cell culture and printing |
| JP2021171180A (ja) * | 2020-04-21 | 2021-11-01 | 株式会社ユニバーサルエンターテインメント | 遊技機 |
| WO2022016013A1 (en) * | 2020-07-16 | 2022-01-20 | The Regents Of The University Of California | Injectable drug-releasing microporous annealed particle scaffolds for treating myocardial infarction |
| US12280540B2 (en) | 2020-09-27 | 2025-04-22 | San Diego State University Research Foundation | In situ partially degradable separation interface for fabrication of complex near net shape objects by pressure assisted sintering |
| US11879118B2 (en) * | 2020-11-10 | 2024-01-23 | C.C. Imex | Gel tray for bacteria transformation lab |
| CA3215070A1 (en) | 2021-04-14 | 2022-10-20 | Joseph DE RUTTE | Nanoscale reaction chambers and methods of using the same |
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| KR20230059380A (ko) * | 2021-10-26 | 2023-05-03 | 강원대학교산학협력단 | 피부 복원용 3차원 스캐폴드 |
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| WO2024015656A1 (en) * | 2022-07-11 | 2024-01-18 | The Regents Of The University Of California | Cell-microgel encapsulation in injectable formulations |
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| WO2024036108A1 (en) * | 2022-08-09 | 2024-02-15 | Bionaut Labs Ltd. | Devices, systems, and methods for the treatment of malignant neoplasm disorders using controlled release devices |
| CN116077736A (zh) * | 2022-09-26 | 2023-05-09 | 四川大学 | 基于多孔明胶复合微球的可注射骨修复支架及其制备方法 |
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| CN117462751A (zh) * | 2023-10-30 | 2024-01-30 | 南京鼓楼医院 | 一种甲基丙烯酰化明胶微孔退火颗粒支架及其制备方法 |
| WO2025096900A1 (en) * | 2023-11-03 | 2025-05-08 | Board Of Regents, The University Of Texas System | Synthetic network materials and methods of making and use thereof |
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| US20200305773A1 (en) | 2016-01-21 | 2020-10-01 | The Regents Of The University Of California | Device and method for analyte sensing with microporous annealed particle gels |
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| WO2017142879A1 (en) | 2016-02-16 | 2017-08-24 | The Regents Of The University Of California | Methods for immune system modulation with microporous annealed particle gels |
| CN110446508A (zh) | 2016-12-29 | 2019-11-12 | 泰普治疗公司 | 用于治疗医疗植入物部位的方法和系统 |
-
2015
- 2015-07-17 KR KR1020177004012A patent/KR102264607B1/ko active Active
- 2015-07-17 WO PCT/US2015/040962 patent/WO2016011387A1/en not_active Ceased
- 2015-07-17 AU AU2015289474A patent/AU2015289474B2/en active Active
- 2015-07-17 ES ES15821310T patent/ES3002759T3/es active Active
- 2015-07-17 KR KR1020237043035A patent/KR102758574B1/ko active Active
- 2015-07-17 KR KR1020217017499A patent/KR102421923B1/ko active Active
- 2015-07-17 KR KR1020227024066A patent/KR102614915B1/ko active Active
- 2015-07-17 BR BR112017000813-0A patent/BR112017000813B1/pt active IP Right Grant
- 2015-07-17 CN CN202010830676.9A patent/CN111939316B/zh active Active
- 2015-07-17 CN CN201580049478.6A patent/CN106714854B/zh active Active
- 2015-07-17 EP EP15821310.8A patent/EP3169372B1/en active Active
- 2015-07-17 JP JP2017502712A patent/JP6651500B2/ja active Active
- 2015-07-17 IL IL282559A patent/IL282559B/en unknown
- 2015-07-17 CA CA2955357A patent/CA2955357A1/en active Pending
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2016
- 2016-06-10 US US15/179,151 patent/US20160279283A1/en not_active Abandoned
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2017
- 2017-01-12 IL IL250092A patent/IL250092B/en active IP Right Grant
- 2017-09-11 US US15/701,113 patent/US10912860B2/en active Active
- 2017-12-01 US US15/829,440 patent/US20180078671A1/en not_active Abandoned
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2019
- 2019-01-31 US US16/264,466 patent/US20190151497A1/en not_active Abandoned
- 2019-10-08 US US16/596,312 patent/US20200085859A1/en not_active Abandoned
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2020
- 2020-01-22 JP JP2020008247A patent/JP7188779B2/ja active Active
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2021
- 2021-01-08 US US17/144,158 patent/US11464886B2/en active Active
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2022
- 2022-08-26 JP JP2022134723A patent/JP7627498B2/ja active Active
- 2022-09-24 US US17/935,096 patent/US20230190995A1/en not_active Abandoned
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