Kinase mutation-associated neurodegenerative disorders
The present technology relates to methods for treating, preventing, and/or ameliorating kinase mutation-associated neurodegenerative diseases, including BRAFV600E-associated neurodegenerative diseases, in a subject in need thereof. In particular aspects, the present technology relates to the use of BRAF, MEK, and/or CSF-IR inhibitors to treat, prevent, and/or ameliorate kinase mutation-associated neurodegenerative diseases, including BRAFV600E-associated neurodegenerative diseases.
1. A method for treating BRAF V600E -associated neurodegenerative disease in a subject in need thereof, comprising administering to the subject a therapeutically effective amount of a BRAF, MEK, and/or CSF-1R inhibitor, or a pharmaceutically acceptable salt thereof,
wherein the BRAF inhibitor is selected from the group consisting of vemurafenib, PLX7904, PLX8394, and PLX4720, the MEK inhibitor is selected from the group consisting of AZD8330, refametinib, E6201, MEK162 (binimetinib), PD0325901, pimasertib, R04987655, selumetinib, TAK-733, GDC-0623, WX-544, cobimetinib, and trametinib, and the CSF-1R inhibitor is selected from the group consisting of GW2580, BLZ945, pexidartinib (PLX3397), ARRY-382, PLX7486, and JNJ-40346527.
2. The method of claim 1 , wherein at least a portion of the resident macrophages in the central nervous system of the subject are BRAF V600E+ .
3. A method for treating BRAF V600E -associated neurodegenerative disease comprising:
(a) isolating resident macrophages from a neuronal environment of the subject;
(b) determining whether the resident macrophages express BRAF V600E+ ; and
(c) administering to the subject a therapeutically effective amount of a BRAF, MEK, and/or CSF-1R inhibitor, or a pharmaceutically acceptable salt thereof, when the isolated resident macrophages express BRAF V600E+ ,
wherein the BRAF inhibitor is selected from the group consisting of vemurafenib, PLX7904, PLX8394, and PLX4720, the MEK inhibitor is selected from the group consisting of AZD8330, refametinib, E6201, MEK162 (binimetinib), PD0325901, pimasertib, R04987655, selumetinib, TAK-733, GDC-0623, WX-544, cobimetinib, and trametinib, and the CSF-1R inhibitor is selected from the group consisting of GW2580, BLZ945, pexidartinib (PLX3397), ARRY-382, PLX7486, and JNJ-40346527.
4. The method of claim 1 , wherein the neurodegenerative disease is characterized by one or more of impaired cognitive functions, dementia, ataxia, dysarthria, reduced motor coordination and synchrony as compared to a normal control subject, paralysis, microglia accumulation, astrogliosis, microglia phagocytosis, demyelination, neuronal loss in the central nervous system, synaptic loss in the central nervous system, and amyloid precursor protein (APP) deposits in the brain.
5. The method of claim 1 , wherein the route of administration of the BRAF, MEK, or CSF-1R inhibitor is parenteral, intradermal, intramuscular, intraperitoneal, intravenous, subcutaneous, intranasal, epidural, oral, sublingual, intranasal, intracerebral, intrathecal, intravaginal, transdermal, rectal, by inhalation, or topical.
6. The method of claim 1 , wherein treatment of the neurodegenerative disease comprises one or more of improving cognitive functions, reducing dementia, reducing ataxia, reducing dysarthria, increasing motor coordination and synchrony, relieving paralysis, reducing microglia accumulation, reducing astrogliosis, reducing microglia phagocytosis, reducing demyelination, reducing neuronal loss, reducing synaptic loss, or reducing amyloid precursor protein (APP) expression in the brain as compared to an untreated control.
7. The method of claim 1 , wherein the BRAF inhibitor is vemurafenib.
8. The method of claim 1 , wherein the BRAF inhibitor is PLX4720.
9. A method for treating neurodegenerative disease in a subject in need thereof, comprising administering to the subject a therapeutically effective amount of a PI 3-kinase inhibitor, or a pharmaceutically acceptable salt thereof, wherein at least a portion of the resident macrophages in the central nervous system of the subject comprise one or more PI 3-kinase mutations,
wherein the PI 3-kinase inhibitor is selected from the group consisting of idelalisib, BKM120, GDC-0980, PF-04691502, XL147, IPI-145, BYL719, SF1126, BAY80-6946, GSK2126458, NVP-BEZ235, GDC-0941, PX-866, XL765, and ZSTK474.
10. The method of claim 9 , wherein at least a portion of the resident macrophages in the central nervous system of the subject are PIK3CA H104R+ .
11. The method of claim 9 , wherein the neurodegenerative disease is characterized by one or more of impaired cognitive functions, dementia, ataxia, dysarthria, reduced motor coordination and synchrony as compared to a normal control subject, paralysis, microglia accumulation, astrogliosis, microglia phagocytosis, demyelination, neuronal loss in the central nervous system, synaptic loss in the central nervous system, and amyloid precursor protein (APP) deposits in the brain.
12. The method of claim 9 , wherein the route of administration of the PI 3-kinase inhibitor is parenteral, intradermal, intramuscular, intraperitoneal, intravenous, subcutaneous, intranasal, epidural, oral, sublingual, intranasal, intracerebral, intrathecal, intravaginal, transdermal, rectal, by inhalation, or topical.