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1.
Int J Cancer ; 144(1): 178-189, 2019 01 01.
Artigo em Inglês | MEDLINE | ID: mdl-30226266

RESUMO

Metabolic alterations are increasingly recognized as important novel anti-cancer targets. Among several regulators of metabolic alterations, fructose 2,6 bisphosphate (F2,6BP) is a critical glycolytic regulator. Inhibition of the active form of PFKFB3ser461 using a novel inhibitor, PFK158 resulted in reduced glucose uptake, ATP production, lactate release as well as induction of apoptosis in gynecologic cancer cells. Moreover, we found that PFK158 synergizes with carboplatin (CBPt) and paclitaxel (PTX) in the chemoresistant cell lines, C13 and HeyA8MDR but not in their chemosensitive counterparts, OV2008 and HeyA8, respectively. We determined that PFK158-induced autophagic flux leads to lipophagy resulting in the downregulation of cPLA2, a lipid droplet (LD) associated protein. Immunofluorescence and co-immunoprecipitation revealed colocalization of p62/SQSTM1 with cPLA2 in HeyA8MDR cells uncovering a novel pathway for the breakdown of LDs promoted by PFK158. Interestingly, treating the cells with the autophagic inhibitor bafilomycin A reversed the PFK158-mediated synergy and lipophagy in chemoresistant cells. Finally, in a highly metastatic PTX-resistant in vivo ovarian mouse model, a combination of PFK158 with CBPt significantly reduced tumor weight and ascites and reduced LDs in tumor tissue as seen by immunofluorescence and transmission electron microscopy compared to untreated mice. Since the majority of cancer patients will eventually recur and develop chemoresistance, our results suggest that PFK158 in combination with standard chemotherapy may have a direct clinical role in the treatment of recurrent cancer.


Assuntos
Protocolos de Quimioterapia Combinada Antineoplásica/farmacologia , Autofagia/efeitos dos fármacos , Inibidores Enzimáticos/farmacologia , Neoplasias Ovarianas/tratamento farmacológico , Fosfofrutoquinase-2/antagonistas & inibidores , Piridinas/farmacologia , Quinolinas/farmacologia , Ensaios Antitumorais Modelo de Xenoenxerto , Animais , Protocolos de Quimioterapia Combinada Antineoplásica/uso terapêutico , Apoptose/efeitos dos fármacos , Carboplatina/administração & dosagem , Linhagem Celular Tumoral , Resistencia a Medicamentos Antineoplásicos/efeitos dos fármacos , Sinergismo Farmacológico , Inibidores Enzimáticos/uso terapêutico , Feminino , Glicólise/efeitos dos fármacos , Humanos , Gotículas Lipídicas/efeitos dos fármacos , Gotículas Lipídicas/metabolismo , Camundongos Nus , Neoplasias Ovarianas/metabolismo , Neoplasias Ovarianas/patologia , Paclitaxel/administração & dosagem , Fosfofrutoquinase-2/metabolismo , Piridinas/uso terapêutico , Quinolinas/uso terapêutico
2.
Nucl Med Biol ; 30(7): 761-9, 2003 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-14499335

RESUMO

Magnetic targeted carriers (MTC) are magnetically susceptible microparticles that can be physically targeted to a specific site. MTC were radiolabeled with (111)In using three different methods. Reaction parameters were investigated in order to optimize the final properties of the labeled MTC. The reaction parameters studied were chelation agent, chelation time, temperature, radiolabeling time, solvent, and molar ratios. A 97.7 +/- 0.9% binding efficiency and plasma stability of 92.6 +/- 0.1% over 7 days were achieved when 2-p-aminobenzyl-1,4,7,10-tetraazacyclododecane-1,4,7,10-tetra-acetic acid (ABz-DOTA) was used as the chelating agent. A preliminary animal biodistribution study confirmed the binding stability. The labeling of the MTC with the diagnostic isotope (111)In was undertaken to allow for quantitative imaging and dosimetry prior to therapy with (90)Y radiolabeled MTC.


Assuntos
Sistemas de Liberação de Medicamentos/métodos , Radioisótopos de Índio/química , Radioisótopos de Índio/farmacocinética , Marcação por Isótopo/métodos , Magnetismo/uso terapêutico , Músculo Esquelético/diagnóstico por imagem , Músculo Esquelético/metabolismo , Adsorção , Animais , Estabilidade de Medicamentos , Feminino , Radioisótopos de Índio/administração & dosagem , Injeções Intramusculares , Taxa de Depuração Metabólica , Microesferas , Especificidade de Órgãos , Cintilografia , Compostos Radiofarmacêuticos/administração & dosagem , Compostos Radiofarmacêuticos/síntese química , Compostos Radiofarmacêuticos/farmacocinética , Ratos , Ratos Wistar , Temperatura , Distribuição Tecidual
3.
Mol Cancer Ther ; 12(8): 1461-70, 2013 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-23674815

RESUMO

In human cancers, loss of PTEN, stabilization of hypoxia inducible factor-1α, and activation of Ras and AKT converge to increase the activity of a key regulator of glycolysis, 6-phosphofructo-2-kinase (PFKFB3). This enzyme synthesizes fructose 2,6-bisphosphate (F26BP), which is an activator of 6-phosphofructo-1-kinase, a key step of glycolysis. Previously, a weak competitive inhibitor of PFKFB3, 3-(3-pyridinyl)-1-(4-pyridinyl)-2-propen-1-one (3PO), was found to reduce the glucose metabolism and proliferation of cancer cells. We have synthesized 73 derivatives of 3PO and screened each compound for activity against recombinant PFKFB3. One small molecule, 1-(4-pyridinyl)-3-(2-quinolinyl)-2-propen-1-one (PFK15), was selected for further preclinical evaluation of its pharmacokinetic, antimetabolic, and antineoplastic properties in vitro and in vivo. We found that PFK15 causes a rapid induction of apoptosis in transformed cells, has adequate pharmacokinetic properties, suppresses the glucose uptake and growth of Lewis lung carcinomas in syngeneic mice, and yields antitumor effects in three human xenograft models of cancer in athymic mice that are comparable to U.S. Food and Drug Administration-approved chemotherapeutic agents. As a result of this study, a synthetic derivative and formulation of PFK15 has undergone investigational new drug (IND)-enabling toxicology and safety studies. A phase I clinical trial of its efficacy in advanced cancer patients will initiate in 2013 and we anticipate that this new class of antimetabolic agents will yield acceptable therapeutic indices and prove to be synergistic with agents that disrupt neoplastic signaling.


Assuntos
Antineoplásicos/farmacologia , Inibidores Enzimáticos/farmacologia , Neoplasias/metabolismo , Fosfofrutoquinase-2/antagonistas & inibidores , Animais , Antineoplásicos/química , Apoptose/efeitos dos fármacos , Linhagem Celular Tumoral , Sobrevivência Celular/efeitos dos fármacos , Modelos Animais de Doenças , Ensaios de Seleção de Medicamentos Antitumorais , Inibidores Enzimáticos/química , Feminino , Glucose/metabolismo , Humanos , Células Jurkat , Camundongos , Modelos Moleculares , Conformação Molecular , Terapia de Alvo Molecular , Neoplasias/tratamento farmacológico , Neoplasias/patologia , Fosfofrutoquinase-2/química , Fosfofrutoquinase-2/metabolismo , Ligação Proteica , Bibliotecas de Moléculas Pequenas , Carga Tumoral/efeitos dos fármacos , Ensaios Antitumorais Modelo de Xenoenxerto
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