US2020255976A1PendingUtilityA1
Single- and mixed-metal nanoparticles, nanoparticle conjugates, devices for making nanoparticles, and related methods of use
Est. expiryOct 23, 2037(~11.2 yrs left)· nominal 20-yr term from priority
B22F 1/102B22F 1/056B22F 1/17B22F 1/054B22F 9/24B82Y 15/00H01F 1/0054B82Y 25/00G01N 33/54346G01N 33/5434A61K 51/1251A61K 49/0093A61K 49/0021B82Y 5/00C30B 29/02B82Y 30/00C30B 29/52B82Y 40/00C30B 29/60B22F 9/16B22F 2301/255B22F 2301/30B22F 2301/40B22F 2302/45B22F 2303/15B22F 2303/20B22F 2999/00
48
PatentIndex Score
0
Cited by
0
References
0
Claims
Abstract
Nanoparticles, nanoparticle conjugates, devices for making nanoparticles and nanoparticle conjugates, and related methods of use and synthesis are described.
Claims
exact text as granted — not AI-modified1 . A nanoparticle comprising a solid metal core free or substantially free of ligands and non-metallic bonds; and
2 . The nanoparticle of claim 1 , further comprising an organic shell coupled to an outer surface of the solid metal core.
3 . The nanoparticle of claim 1 , wherein the solid metal core comprises a metal chosen from an alkali metal, an alkaline earth metal, a transition metal, a post-transition metal, a lanthanide metal, an actinide metal, and a metalloid.
4 . The nanoparticle of claim 1 , wherein the solid metal core comprises a plurality of metal atoms of a single element.
5 . The nanoparticle of claim 1 , wherein the solid metal core is a mixed-metal core comprising two or more metal elements.
6 . The nanoparticle of claim 5 , wherein one or more of the two or more metal elements is radioactive.
7 . The nanoparticle of claim 6 , wherein the radioactive element is chosen from a radio-isotope of gold, indium, gadolinium, and platinum
8 . The nanoparticle of claim 1 , wherein the solid metal core is magnetic.
9 . (canceled)
10 . The nanoparticle of claim 8 , wherein the solid metal core comprises one or more magnetic elements chosen from cobalt, iron, nickel, manganese, and europium.
11 - 12 . (canceled)
13 . The nanoparticle of claim 2 , wherein the organic shell is coupled directly to the solid metal core.
14 . The nanoparticle of claim 13 , wherein there is no ligand between the organic shell and the solid metal core.
15 . The nanoparticle of claim 13 , wherein the outer surface of the solid metal core has a zero valence state.
16 . The nanoparticle of claim 13 , wherein the outer surface of the solid metal core does not include metal oxides.
17 . The nanoparticle of claim 2 , further comprising a secondary shell coupled to an outer surface of the organic shell.
18 . (canceled)
19 . The nanoparticle of claim 17 , wherein the secondary shell further comprises a plurality of metal nanoparticles coupled to the outer surface of the organic shell.
20 . The nanoparticle of claim 2 , wherein the organic shell further comprises a targeting moiety coupled to the nanoparticle, wherein the targeting moiety is configured to selectively bind to a target substrate.
21 . (canceled)
22 . The nanoparticle of claim 20 , wherein the targeting moiety includes components chosen from one or more of a restriction enzyme, an RNA/DNA modifying protein, an endonuclease, an RNA/DNA guided endonuclease, an exonuclease, a polymerase, a TALENS, an aptamer, an antibody, and a functional antibody fragment or derivative, Cas-9 and dCas-9.
23 - 24 . (canceled)
25 . The nanoparticle of claim 20 , wherein the targeting moiety is coupled to the nanoparticle through a linker.
26 - 27 . (canceled)
28 . A device for low-pressure, solution-phase synthesis of metal nanoparticles, the device comprising:
a single Schlenk line assembly; and an all-glass chemical reaction environment coupled to the single Schlenk line assembly including:
a vacuum-stopped back pressure overload valve;
a plurality of back pressure-loaded injectors; and
a reaction vessel.
29 - 34 . (canceled)
35 . A method of tagging a target nucleic acid substrate with a nanoparticle, the method comprising assembling a targeted nanoparticle construct on the target nucleic acid substrate, wherein the targeted nanoparticle construct comprises a nanoparticle of claim 1 and a targeting moiety coupled thereto, wherein the targeting moiety selectively binds to a sequence in the target nucleic acid substrate.
36 - 52 . (canceled)Join the waitlist — get patent alerts
Track US2020255976A1 — get alerts on status changes and closely related new filings.
We store only your email — no account needed. See our privacy policy.