IP Library Granted Patent US 12,691,118
Granted Patent B2
US 12,691,118 · App. 17/602,118 · Granted Jul 28, 2026

Allosteric agonists and positive allosteric modulators of Glucagon-like peptide 1 receptor

Inventors: Zhijun Li (Bala Cynwyd, PA); Tejashree Redij (Warrington, PA); James McKee (Havertown, PA); Zhiyu Li (Woodstock, MD); Jeffrey Campbell (Philadelphia, PA)
Assignee: Saint Joseph's University
A61K31/519A61K31/155A61K31/195A61K31/381A61K31/426A61K31/64A61K38/22A61P3/10C07D333/68C07D495/04
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,691,118
App. No.
17/602,118
Filed
Oct 7, 2021
Granted
Jul 28, 2026
Kind
B2
Art Unit
1624
USPC
514/267
Abstract

The present invention relates to the discovery of small molecule compounds that act as GLP-1R agonists and/or as positive allosteric modulators (PAMs) of GLP-1R. Such compounds are useful to treat, ameliorate, and/or prevent insulin resistance and/or diabetes in a mammal.

Claims (43)

1 . A compound of formula:

wherein:

each occurrence of R 1 is independently selected optionally substituted C 1 -C 6 alkyl;

R 2 and R 3 are each independently selected from the group consisting of H and optionally substituted C 1 -C 6 alkyl;

R 4 is selected from the group consisting of —NH 2 , —NH(C 1 -C 6 alkyl), —N(C 1 -C 6 alkyl)(C 1 -C 6 alkyl), and optionally substituted C 1 -C 6 alkoxy, or

R 2 is absent and R 3 and R 4 combine with ═C(XR′)—N(R″)—* to form a ring,

wherein the bond marked as * is with the carbonyl group in the compound;

X is selected from the group consisting of O, S, and NR;

R is H;

each occurrence of R′ is independently selected from the group consisting of H, optionally substituted C 1 -C 6 alkyl, (CH 2 ) n C(═O)R 5 , and (CH 2 CH 2 O) n C(═O)R 5 , wherein each n is independently 1, 2, 3, 4, 5, 6, 7, 8, 9, or 10;

each occurrence of R 5 is independently selected optionally substituted phenyl;

each occurrence of R″ is independently selected from the group consisting of hydrogen, —NH 2 , —NH(C 1 -C 6 alkyl), and —N(C 1 -C 6 alkyl)(C 1 -C 6 alkyl);

wherein each optional substituent is independently selected from the group consisting of fluorine, chlorine, bromine, iodine, —CN, —NH 2 , —OH, —NH(CH 3 ), —N(CH 3 ) 2 , —CH 3 , —CH 2 CH 3 , —CH(CH 3 ) 2 , —CF 3 , —CH 2 CF 3 , —OCH 3 , —OCH 2 CH 3 , —OCH(CH 3 ) 2 , —OCF 3 , —OCH 2 CF 3 , —S(═O) 2 —CH 3 , —C(═O)NH 2 , —C(═O)—NHCH 3 , —NHC(═O)NHCH 3 , —C(═O)CH 3 , and —C(═O)OH;

or a salt, solvate, stereoisomer, geometric isomer, or tautomer thereof.

2 . The compound of claim 1 , wherein R′ is

3 . The compound of claim 1 , wherein X is S.

4 . The compound of claim 1 , wherein one, or at least one, occurrence of R 1 is C 1 -C 6 alkyl.

5 . The compound of claim 1 , wherein one, or at least one, occurrence of R 1 is methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl, sec-butyl, or t-butyl.

6 . The compound of claim 1 , wherein R 4 is optionally substituted C 1 -C 6 alkoxy.

7 . The compound of claim 1 , wherein R 4 is optionally substituted methoxy, optionally substituted ethoxy, optionally substituted n-propoxy, optionally substituted isopropoxy, optionally substituted n-butoxy, optionally substituted isobutoxy, optionally substituted sec-butoxy, or optionally substituted t-butoxy.

8 . The compound of claim 1 , which is

ethyl 2-amino-7,7-dimethyl-4,5,6,7-tetrahydrobenzo[b]thiophene-3-carboxylate.

9 . A pharmaceutical composition comprising at least one pharmaceutically acceptable carrier and an effective amount of at least one compound of claim 1 , or a salt, solvate, stereoisomer, geometric isomer, or tautomer thereof.

10 . The composition of claim 9 , further comprising at least one additional agent useful for treating or ameliorating type II diabetes in a subject, wherein the at least one additional agent is selected from the group consisting of an α-glucosidase inhibitor, a lipase inhibitor, a sulfonyl urea, a meglitinide, a biguanide, a thiazolidinedione, pramlintide, incretin mimetic, DPP-IV inhibitor, and SGLT2 inhibitor.

11 . The composition of claim 10 , wherein at least one of the following applies:

(a) the α-glucosidase inhibitor is selected from the group consisting of acarbose, miglitol, and voglibose;

(b) the lipase inhibitor is orlistat;

(c) the sulfonyl urea is selected from the group consisting of acetohexamide, chlorpropamide, tolbutamide, tolazamide, gliclazide, glyburide or glibenclamide, glipizide, glimepiride, and gliquidone;

(d) the meglitinide is selected from the group consisting of mitiglinide, nateglinide, and repaglinide;

(e) the biguanide is selected from the group consisting of metformin, phenformin, and buformin;

(f) the thiazolidinedione is selected from the group consisting of rosiglitazone, pioglitazone, troglitazone, and tesaglitazar;

(g) the incretin mimetic is selected from the group consisting of exenatide, exedin-4 or AC2993; liraglutide, NN2211, or NNC 90-1170;

(h) the DPP-IV inhibitor is selected from the group consisting of sitagliptin and vildagliptin; and

(i) the SGLT2 inhibitor is selected from the group consisting of dapaglifozin.

12 . A method of treating or ameliorating type II diabetes in a subject, the method comprising administering to the subject a therapeutically effective amount of the compound of claim 1 , or a salt, solvate, stereoisomer, geometric isomer, or tautomer thereof.

13 . The method of claim 12 , wherein the compound is administered as a pharmaceutical composition to the subject.

14 . The method of claim 12 , wherein the subject is further administered at least one additional agent useful for treating or ameliorating type II diabetes.

15 . The method of claim 12 , wherein the at least one additional agent is selected from the group consisting of α-glucosidase inhibitor, lipase inhibitor, sulfonyl urea, meglitinide, biguanide, thiazolidinedione, pramlintide, incretin mimetic, DPP-IV inhibitor, and SGLT2 inhibitor.

16 . The method of claim 14 , wherein at least one of the following applies:

(a) administering the compound to the subject allows for administering a lower dose of the at least one additional agent as compared to the dose of the additional agent alone that is required to achieve similar results in treating or ameliorating type II diabetes;

(b) administering the compound to the subject enhances activity, or reduces at least one side effect, of the at least one additional agent;

(c) the compound and the at least one additional agent are co-administered to the subject;

(d) the compound and the at least one additional agent are co-formulated.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2026
From: LI, ZHIJUN; REDIJ, TEJASHREE; MCKEE, JAMES; LI, ZHIYU; CAMPBELL, JEFFREY
To: UNIVERSITY OF THE SCIENCES
Reel/Frame 074789/0570 →
MERGER Recorded May 28, 2026
From: UNIVERSITY OF THE SCIENCES
To: SAINT JOSEPH'S UNIVERSITY
Reel/Frame 074789/0724 →
Continuity (2)
Provisional Application 62832766 · Apr 11, 2019
Related Publication 20220193080A1 · Jun 23, 2022
References Cited (27)
US 9839664B2 · Boehm et al. · 2017 [cited by applicant]
US 11492347B2 · Meldrum · 2022 [cited by examiner]
US 12018021B2 · Chovatia · 2024 [cited by examiner]
US 20070275962A1 · Koul · 2007 [cited by examiner]
US 20090018149A1 · Missio · 2009 [cited by examiner]
WO 2013090454A2 · 2013 [cited by applicant]
Sanchez-Rangel E, Inzucchi SE. Metformin: clinical use in type 2 diabetes. Diabetologia. Sep. 2017;60(9):1586-1593. doi: 10.1007/s00125-017-4336-x. Epub Aug. 2, 2017. PMID: 28770321. (Year: 2017). [cited by examiner]
Bluestone JA, Herold K, Eisenbarth G. Genetics, pathogenesis and clinical interventions in type 1 diabetes. Nature. Apr. 29, 2010; 464(7293):1293-300. doi: 10.1038/nature08933. PMID: 20432533; PMCID: PMC4959889. (Year: … [cited by examiner]
Malik et al. Is metformin poised for a second career as an antimicrobial? Diabetes Metab Res Rev 2018 34(4) e2975 (Year: 2018). [cited by examiner]
Bennan-Krohn, Combination Antibiotic Testing, Am Soc Micro, 2018, https://asm.org/articles/2018/september/combination-antibiotic-testing-when-2-drugs-are-be (Year: 2018). [cited by examiner]
Perrissin et al., European Journal Med Chem 1984, 19(5) pp. 420-424 (Year: 1984). [cited by examiner]
CAS, RN 2090438-17-6, 2017 (Year: 2017). [cited by examiner]
“PubChem 1082844”, 2-[2-(4-Methylphenyl)-2-oxoethyl]sulfanyl-5,6,7,8-tetrahydro-3H-[1]-benzothiolo[2,3-d] pyrimidin-4-one, Jul. 10, 2005. [cited by applicant]
“PubChem 13399857”, Ethyl 2-amino-7-methyl-4,5,6,7-tetrahydro-1-benzothiophene-3-carboxylate, Feb. 8, 2007. [cited by applicant]
“VTv Therapeutics Reports Preclinical and Clinical Results on its Diabetes Candidate TTP273”, Presented at Keystone Symposia on Molecular and Cellular Biology, accessed online https://ir.vtvtherapeutics.com/news-release… [cited by applicant]
“Zinc ID: ZINC01008161”, 2-(5-{4-[(2-fluorobenzyl)oxy]benzylidene}-2,4-dioxo-1,3-thiazolidin-3-yl)-N-(4-methylphenyl)acetamide, Sep. 15, 2016. [cited by applicant]
“Zinc ID: ZINC02146229”, 2-[(5-{[(4-chlorobenzyl)sulfanyl]methyl}-4-ethyl-4H-1,2,4-triazol-3-yl)sulfanyl]-N-(1,3-thiazol-2-yl)acetamide, Sep. 15, 2016. [cited by applicant]
“Zinc ID: ZINC08400241”, 1-(3,4-dimethoxyphenyl)-6,7-dimethoxy-3-(4-methoxyphenyl)isoquinoline, Sep. 15, 2016. [cited by applicant]
Bueno , et al., “Positive Allosteric Modulation of the Glucagon-like Peptide-1 Receptor by Diverse Electrophiles”, J Biological Chem, vol. 291, No. 20, May 13, 2016, pp. 10700-10715. [cited by applicant]
Jazayeri , et al., “Crystal structure of the GLP-1 receptor bound to a peptide agonist”, Nature, vol. 546, Abstract Only, 2017, pp. 254-258. [cited by applicant]
Morris , et al., “Discovery of (S)-2-Cyclopentyl-N-((1-isopropylpyrrolidin2-yl)-9-methyl-1-oxo-2,9-dihydro-1H-pyrrido[3,4-b]indole-4-carboxamide (VU0453379): A Novel, CNS Penetrant Glucagon-Like Peptide 1 Receptor (GLP-… [cited by applicant]
Redij , et al., “Discovery of allosteric small molecule anti-diabetic agent”, University of the Sciences Research Day, Poster Presentation, Aug. 21, 2017, 1 page. [cited by applicant]
Redij , et al., “Rational design of anti-diabetic agent”, 2017 American Society for Cell Biology (ASCB) Annual Meeting, Dec. 2-6, 2017, Philadelphia, PA, Poster Presentation, 2017, 1 page. [cited by applicant]
Redij , et al., “Rational design of anti-diabetic agents”, University of the Sciences, Philadelphia, PA, Research Poster, Apr. 6, 2017, 1 page. [cited by applicant]
Redij , et al., “Structural Modeling and in Silico Screening of Potential Small-Molecule Allosteric Agonists of a Glucagon-Like Peptide 1 Receptor”, ACS Omega, vol. 4, Jan. 11, 2019, pp. 961-970. [cited by applicant]
Wootten , et al., “Allostery and Biased Agonism at Class B G Protein-Coupled Receptors”, Chem Rev, vol. 117, No. 1, Abstract Only, 2017, pp. 111-138. [cited by applicant]
International Search Report and Written Opinion dated Jul. 21, 2020 for corresponding PCT International Application PCT/US2020/027604. [cited by applicant]