C07D319/18

IMMUNOMODULATOR COMPOUNDS

Compounds are provided that are useful as immunomodulators. The compounds have the following Formula (II):

##STR00001## including stereoisomers and pharmaceutically acceptable salts thereof, wherein R.sup.1, R.sup.2a, R.sup.2b, R.sup.2c, R.sup.3, R.sup.4, R.sup.6a, R.sup.6b, m and n are as defined herein. Methods associated with preparation and use of such compounds, as well as pharmaceutical compositions comprising such compounds, are also disclosed.

IMMUNOMODULATOR COMPOUNDS

Compounds are provided that are useful as immunomodulators. The compounds have the following Formula (II):

##STR00001## including stereoisomers and pharmaceutically acceptable salts thereof, wherein R.sup.1, R.sup.2a, R.sup.2b, R.sup.2c, R.sup.3, R.sup.4, R.sup.6a, R.sup.6b, m and n are as defined herein. Methods associated with preparation and use of such compounds, as well as pharmaceutical compositions comprising such compounds, are also disclosed.

COMPOUNDS WITH IMMUNOMODULATORY ACTIVITY AND THERAPEUTIC USES THEREOF

The present invention generally relates to new compounds for therapeutic uses. In particular, the disclosed series compounds with immunomodulatory activities are useful for treatment of dysfunctions of the immune system and various cancers. Pharmaceutical composition matters and methods for treating a patient with an immune disease and/or a cancer by administering therapeutically effective amounts of such compound alone or together with other therapeutics are within the scope of this disclosure.

Guanidine compounds and use thereof

The present invention relates to guanidine compounds for inhibiting mitochondrial oxidative phosphorylation (OXPHOS) and use thereof. More specifically, the present invention relates to a pharmaceutical composition for preventing or treating a OXPHOS-related disease, particularly cancer, by inhibiting mitochondrial oxidative phosphorylation and reprogramming cellular metabolism.

Guanidine compounds and use thereof

The present invention relates to guanidine compounds for inhibiting mitochondrial oxidative phosphorylation (OXPHOS) and use thereof. More specifically, the present invention relates to a pharmaceutical composition for preventing or treating a OXPHOS-related disease, particularly cancer, by inhibiting mitochondrial oxidative phosphorylation and reprogramming cellular metabolism.

FEM1B PROTEIN BINDING AGENTS AND USES THEREOF

Disclosed herein, inter alia, are compounds for binding FEMIB protein and uses thereof. In an aspect, provided input pulldown herein is a pharmaceutical composition including a compound as described herein and a pharmaceutically acceptable excipient.

Compositions and methods for reducing immune intolerance and treating autoimmune disorders

Provided herein are compounds and their pharmaceutically acceptable salts, lipid particles comprising such compounds or pharmaceutically acceptable salts thereof and compositions of the foregoing that can be used to reduce immune intolerance in a subject, for example, to treat autoimmune disorders, or in combination with an antigenic therapy, such as a protein or gene therapy, to improve the efficacy of the antigenic therapy. The compounds have the following structural formula: ##STR00001##
wherein values for the variables (e.g., Ring A, L, R.sup.1, R.sup.2, R.sup.3, m) are as described herein.

Compositions and methods for reducing immune intolerance and treating autoimmune disorders

Provided herein are compounds and their pharmaceutically acceptable salts, lipid particles comprising such compounds or pharmaceutically acceptable salts thereof and compositions of the foregoing that can be used to reduce immune intolerance in a subject, for example, to treat autoimmune disorders, or in combination with an antigenic therapy, such as a protein or gene therapy, to improve the efficacy of the antigenic therapy. The compounds have the following structural formula: ##STR00001##
wherein values for the variables (e.g., Ring A, L, R.sup.1, R.sup.2, R.sup.3, m) are as described herein.

Novel 3,5-Diaminobenzoic Acid Compound, and PIN1 Inhibitor and Therapeutic Agent for Inflammatory Diseases Using Same

[Problem] To develop a group of novel compounds with an inhibitory activity against the function of Pin1 so as to use them as candidate compounds for medicaments.

[Solution] The present invention provides: a compound represented by the following Formula (I) or a salt thereof, as well as a Pin1 inhibitor, a pharmaceutical composition, a therapeutic or prophylactic agent for inflammatory diseases, a therapeutic or prophylactic agent for fatty liver diseases, a therapeutic or prophylactic agent for obesity, and a therapeutic or prophylactic agent for COVID-19 that utilize the aforementioned compounds or the salts thereof:

Compounds useful as immunomodulators

The present disclosure generally relates to compounds useful as immunomodulators. Provided herein are compounds, compositions comprising such compounds, and methods of their use. The disclosure further pertains to pharmaceutical compositions comprising at least one compound according to the disclosure that are useful for the treatment of various diseases, including cancer and infectious diseases.