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US Patent 10023536 Suprametallogels and uses thereof

Patent 10023536 was granted and assigned to Massachusetts Institute of Technology on July, 2018 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Patent Applicant
Massachusetts Institute of Technology
Massachusetts Institute of Technology
Current Assignee
Massachusetts Institute of Technology
Massachusetts Institute of Technology
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10023536
Patent Inventor Names
Jeremiah A. Johnson0
Niels Holten-Andersen0
Scott Charles Grindy0
Aleksandr V. Zhukhovitskiy0
Ken Kawamoto0
Date of Patent
July 17, 2018
Patent Application Number
15270959
Date Filed
September 20, 2016
Patent Citations Received
‌
US Patent 12084415 Biomolecule-polymer-pharmaceutical agent conjugates for delivering the pharmaceutical agent
0
‌
US Patent 10793683 Block co-poly(metal organic nanostructures) (BCPMONs) and uses thereof
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US Patent 10799594 Drug delivery polymer and uses thereof
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US Patent 10961338 Bottlebrush polymers and uses thereof
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US Patent 10973847 Core-to-surface polymerization for the synthesis of star polymers and uses thereof
0
‌
US Patent 10988491 Degradable polymers of a cyclic silyl ether and uses thereof
0
‌
US Patent 11752221 Brush-arm star polymer imaging agents and uses thereof
‌
US Patent 11338038 Branched multi-functional macromonomers and related polymers and uses thereof
0
...
Patent Primary Examiner
‌
Timothy R Rozof
Patent abstract

The disclosure provides nanostructures (e.g., nanospheres and nano-paddlewheels) formed through transition metal-ligand (e.g., Pd(II)-, Ni(II)-, or Fe(II)-ligand of Formula (A)) coordination and junction self-assembly. The disclosure also provides supramolecular complexes that include the nanostructures connected by divalent linkers Y. The provided supramolecular complexes are able to form gels (e.g., hydrogels). The gels are suprametallogels and exhibited excellent mechanical properties without sacrificing self-healing and showed high robustness and storage modulus. The present disclosure further provides compositions (e.g., gels) that include the nanostructures or supramolecular complexes and optionally an agent (e.g., small molecule), where the nanostructures and the nanostructure moieties of the supramolecular complexes may encapsulate and slowly release the agent. The nanostructures, supramolecular complex, and compositions may be useful in delivering an agent to a subject, tissue, or cell, as super-absorbent materials, and in treating a disease (e.g., a genetic diseases, proliferative disease (e.g., cancer or benign neoplasm), hematological disease, neurological disease, gastrointestinal disease (e.g., liver disease), spleen disease, respiratory disease (e.g., lung disease), painful condition, genitourinary disease, musculoskeletal condition, infectious disease, inflammatory disease, autoimmune disease, psychiatric disorder, or metabolic disorder).

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