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1.
Radiat Res ; 196(6): 686-689, 2021 12 01.
Artigo em Inglês | MEDLINE | ID: mdl-34644390

RESUMO

Exposure to high dose radiation causes life-threatening acute and delayed effects. Defining the mechanisms of lethal radiation-induced acute toxicity of gastrointestinal and hematopoietic tissues are critical steps to identify drug targets to mitigate and protect against the acute radiation syndrome (ARS). For example, one rational approach would be to design pharmaceuticals that block cell death pathways to preserve tissue integrity in radiation-sensitive organ systems including the gastrointestinal tract and hematopoietic compartment. A previous study reported that the inflammasome pathway, which mediates inflammatory cell death through pyroptosis, promotes ARS. However, we show that mice lacking the inflammatory executioner caspases, caspase-1 and caspase-11, are not protected from ARS when compared directly to littermates expressing caspase-1 and caspase-11. These results suggest that alternative pathways will need to be targeted by drugs that successfully mitigate and protect against the ARS.


Assuntos
Síndrome Aguda da Radiação/enzimologia , Caspase 1/metabolismo , Caspases Iniciadoras/metabolismo , Inflamassomos/metabolismo , Animais , Sistema Hematopoético/efeitos da radiação , Inflamassomos/efeitos da radiação , Camundongos , Camundongos Endogâmicos C57BL , Piroptose/efeitos da radiação
2.
Radiat Res ; 189(6): 627-633, 2018 06.
Artigo em Inglês | MEDLINE | ID: mdl-29634408

RESUMO

Exposure to high doses of ionizing radiation can cause lethal injury to normal tissue, thus inducing acute radiation syndrome. Acute radiation syndrome is caused by depletion of bone marrow cells (hematopoietic syndrome) and irreparable damage to the epithelial cells in the gastrointestinal tract (gastrointestinal syndrome). Although radiation initiates apoptosis in the hematopoietic and gastrointestinal compartments within the first few hours after exposure, alternative mechanisms of cell death may contribute to injury in these radiosensitive tissues. In this study, we utilized mice lacking a critical regulator of necroptosis, receptor interacting protein 3 (RIP3) kinase, to characterize the role of RIP3 in normal tissue toxicity after irradiation. Our results suggest that RIP3-mediated signaling is not a critical driver of acute radiation syndrome.


Assuntos
Síndrome Aguda da Radiação/enzimologia , Síndrome Aguda da Radiação/genética , Técnicas de Inativação de Genes , Proteína Serina-Treonina Quinases de Interação com Receptores/deficiência , Proteína Serina-Treonina Quinases de Interação com Receptores/genética , Síndrome Aguda da Radiação/patologia , Animais , Apoptose/efeitos da radiação , Hematopoese/efeitos da radiação , Camundongos , Camundongos Endogâmicos C57BL , Necrose/etiologia , Transdução de Sinais/efeitos da radiação
3.
Radiat Res ; 181(5): 445-51, 2014 May.
Artigo em Inglês | MEDLINE | ID: mdl-24720754

RESUMO

Exposure to a nuclear accident or radiological attack can cause death from acute radiation syndrome (ARS), which results from radiation injury to vital organs such as the hematopoietic system. However, the U.S. Food and Drug Administration (FDA) has not approved any medical countermeasures for this specific purpose. With growing concern over nuclear terrorism, there is an urgent need to develop small molecule deliverables that mitigate mortality from ARS. One emerging modulator of hematopoietic stem/progenitor cell (HSPC) activity is glycogen synthase kinase-3 (GSK-3). The inhibition of GSK-3 has been shown to augment hematopoietic repopulation in mouse models of bone marrow transplantation. In this study, we performed an in vitro screen using irradiated bone marrow mononuclear cells (BM-MNCs) to test the effects of four GSK-3 inhibitors: CHIR99021; 6-Bromoindirubin-3'-oxime (BIO); SB415286; and SB216763. This screen showed that SB216763 significantly increased the frequency of c-Kit(+) Lin(-) Sca1(+) (KLS) cells and hematopoietic colony-forming cells in irradiated BM-MNCs. Importantly, administration of a single dose of SB216763 to C57BL/6J mice by subcutaneous injection 24 h after total-body irradiation significantly improved hematopoietic recovery and mitigated hematopoietic ARS. Collectively, our results demonstrate that the GSK-3 inhibitor SB216763 is an effective medical countermeasure against acute radiation injury of the hematopoietic system.


Assuntos
Síndrome Aguda da Radiação/tratamento farmacológico , Quinase 3 da Glicogênio Sintase/antagonistas & inibidores , Células-Tronco Hematopoéticas/efeitos dos fármacos , Inibidores de Proteínas Quinases/uso terapêutico , Lesões Experimentais por Radiação/tratamento farmacológico , Síndrome Aguda da Radiação/enzimologia , Síndrome Aguda da Radiação/patologia , Aminofenóis/farmacologia , Aminofenóis/uso terapêutico , Animais , Apoptose/efeitos dos fármacos , Apoptose/efeitos da radiação , Medula Óssea/patologia , Células Cultivadas , Ensaio de Unidades Formadoras de Colônias , Avaliação Pré-Clínica de Medicamentos , Quinase 3 da Glicogênio Sintase/fisiologia , Hematopoese/efeitos dos fármacos , Hematopoese/efeitos da radiação , Células-Tronco Hematopoéticas/efeitos da radiação , Indóis/farmacologia , Indóis/uso terapêutico , Injeções Subcutâneas , Maleimidas/farmacologia , Maleimidas/uso terapêutico , Camundongos , Camundongos Endogâmicos C57BL , Oximas/farmacologia , Oximas/uso terapêutico , Inibidores de Proteínas Quinases/farmacologia , Piridinas/farmacologia , Piridinas/uso terapêutico , Pirimidinas/farmacologia , Pirimidinas/uso terapêutico , Lesões Experimentais por Radiação/enzimologia , Lesões Experimentais por Radiação/patologia , Irradiação Corporal Total/efeitos adversos
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