IP Library Granted Patent US 11,504,431
Granted Patent B2
US 11,504,431 · App. 16/318,804 · Granted Nov 22, 2022

Formulations for the suprachoroidal space of an eye and methods

Inventors: Mark R. Prausnitz (Atlanta, GA); Bryce Chiang (Atlanta, GA)
Assignees: Emory University; Georgia Tech Research Corporation
A61K47/38A61K9/0021A61K9/0048A61K9/06A61K9/08A61K47/10A61P27/02C07K16/00A61M5/31531
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Quick Facts
Patent No.
US 11,504,431
App. No.
16/318,804
Granted
Nov 22, 2022
Kind
B2
Abstract

Provided herein are fluid formulations for administration to a suprachoroidal space of an eye of a patient. The fluid formulations may include a pharmaceutical agent, a binding molecule, or a combination thereof. The pharmaceutical agent and the binding molecule may be bonded to each other covalently, non-covalently, or a combination thereof. The pharmaceutical agent may be configured to bond to an ocular tissue. The binding molecule may be configured to bond to an ocular tissue. Methods of administering the fluid formulations, methods of expanding a suprachoroidal space, and methods of reducing the minimum force to separate the sclera and choroid are provided.

Claims (24)

1. A fluid formulation for administration to a suprachoroidal space of an eye of a patient comprising:

a pharmaceutical agent and a binding molecule to which the pharmaceutical agent is directly and covalently bonded;

wherein the binding molecule has a non-particulate structure; and

wherein the pharmaceutical agent and the binding molecule together have (i) a hydrodynamic radius of at least 7 nm, (ii) a combined molecular weight of at least 500 kDa, or (iii) a combination thereof.

2. The fluid formulation of claim 1 , wherein the pharmaceutical agent and the binding molecule have a combined molecular weight of at least 1 MDa.

3. The fluid formulation of claim 1 , wherein the pharmaceutical agent and the binding molecule have a combined molecular weight of at least 2 MDa.

4. The fluid formulation of claim 1 , wherein the pharmaceutical agent and the binding molecule together have a hydrodynamic radius of at least 10 nm.

5. The fluid formulation of claim 1 , wherein the pharmaceutical agent and the binding molecule are components of a gel.

6. The fluid formulation of claim 1 , wherein the binding molecule is configured to bond to an ocular tissue covalently, non-covalently, or a combination thereof.

7. The fluid formulation of claim 1 , wherein the binding molecule is a polymer.

8. The fluid formulation of claim 7 , wherein the polymer is configured to crosslink in the suprachoroidal space.

9. The fluid formulation of claim 7 , wherein the polymer is configured to form a gel in the suprachoroidal space.

10. The fluid formulation of claim 1 , wherein the pharmaceutical agent comprises a monoclonal antibody.

11. The fluid formulation of claim 1 , wherein the binding molecule comprises carboxymethylcellulose, dextran, hyaluronic acid, polyethylene glycol, chondroitin sulfate, or a combination thereof.

12. The fluid formulation of claim 1 , wherein the pharmaceutical agent and the binding molecule comprise a prodrug, wherein, after administration to the suprachoroidal space, the pharmaceutical agent and the binding molecule disassociate by chemical reaction, enzymatic activity, an alteration of an attractive and/or repulsive interaction, or a combination thereof.

13. The fluid formulation of claim 12 , wherein the attractive and/or repulsive interaction comprises an electrostatic interaction, a hydrophobic interaction, or a combination thereof.

14. The fluid formulation of claim 1 , wherein the binding molecule is configured to precipitate in the suprachoroidal space.

15. A method for administering a pharmaceutical agent to an eye of a patient comprising:

inserting a microneedle into the eye at an insertion site; and

infusing a volume of the fluid formulation of claim 1 through the microneedle into the suprachoroidal space of an eye at the insertion site,

wherein the pharmaceutical agent administered by the method has a clearance time that is at least 2 times greater than a comparative pharmaceutical agent administered in the absence of the binding molecule.

16. The method of claim 15 , wherein the pharmaceutical agent administered by the method has a clearance time that is at least 10 times greater than a comparative pharmaceutical agent administered in the absence of the binding molecule.

17. The method of claim 15 , wherein the pharmaceutical agent has a clearance time from the suprachoroidal space of 3 days to 365 days.

18. The method of claim 15 , wherein the pharmaceutical agent has a clearance time from the suprachoroidal space of 1 day to 21 days.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2022
From: PRAUSNITZ, MARK R.
To: GEORGIA TECH RESEARCH CORPORATION
Reel/Frame 061343/0790 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2022
From: CHIANG, BRYCE
To: EMORY UNIVERSITY
Reel/Frame 061627/0126 →
RELEASE OF SECURITY INTEREST Recorded Jul 7, 2020
From: SILICON VALLEY BANK
To: CLEARSIDE BIOMEDICAL, INC.
Reel/Frame 053139/0929 →
SECURITY INTEREST Recorded Aug 29, 2019
From: CLEARSIDE BIOMEDICAL, INC.
To: SILICON VALLEY BANK
Reel/Frame 050217/0270 →
Cited By (8)
US 1,116,103 US 1,120,314 US 12,274,865 US 12,502,352 US 12,649,031 US 12,653,781 US 12,655,224 US 12,691,227