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1.
J Biomed Sci ; 31(1): 46, 2024 May 09.
Artículo en Inglés | MEDLINE | ID: mdl-38725007

RESUMEN

BACKGROUND: Cathepsin S (CTSS) is a cysteine protease that played diverse roles in immunity, tumor metastasis, aging and other pathological alterations. At the cellular level, increased CTSS levels have been associated with the secretion of pro-inflammatory cytokines and disrupted the homeostasis of Ca2+ flux. Once CTSS was suppressed, elevated levels of anti-inflammatory cytokines and changes of Ca2+ influx were observed. These findings have inspired us to explore the potential role of CTSS on cognitive functions. METHODS: We conducted classic Y-maze and Barnes Maze tests to assess the spatial and working memory of Ctss-/- mice, Ctss+/+ mice and Ctss+/+ mice injected with the CTSS inhibitor (RJW-58). Ex vivo analyses including long-term potentiation (LTP), Golgi staining, immunofluorescence staining of sectioned whole brain tissues obtained from experimental animals were conducted. Furthermore, molecular studies were carried out using cultured HT-22 cell line and primary cortical neurons that treated with RJW-58 to comprehensively assess the gene and protein expressions. RESULTS: Our findings reported that targeting cathepsin S (CTSS) yields improvements in cognitive function, enhancing both working and spatial memory in behavior models. Ex vivo studies showed elevated levels of long-term potentiation levels and increased synaptic complexity. Microarray analysis demonstrated that brain-derived neurotrophic factor (BDNF) was upregulated when CTSS was knocked down by using siRNA. Moreover, the pharmacological blockade of the CTSS enzymatic activity promoted BDNF expression in a dose- and time-dependent manner. Notably, the inhibition of CTSS was associated with increased neurogenesis in the murine dentate gyrus. These results suggested a promising role of CTSS modulation in cognitive enhancement and neurogenesis. CONCLUSION: Our findings suggest a critical role of CTSS in the regulation of cognitive function by modulating the Ca2+ influx, leading to enhanced activation of the BDNF/TrkB axis. Our study may provide a novel strategy for improving cognitive function by targeting CTSS.


Asunto(s)
Factor Neurotrófico Derivado del Encéfalo , Catepsinas , Cognición , Animales , Masculino , Ratones , Factor Neurotrófico Derivado del Encéfalo/metabolismo , Factor Neurotrófico Derivado del Encéfalo/genética , Catepsinas/efectos de los fármacos , Catepsinas/genética , Catepsinas/metabolismo , Cognición/efectos de los fármacos , Cognición/fisiología , Ratones Noqueados , Receptor trkB/metabolismo , Receptor trkB/genética , Transactivadores/genética , Transactivadores/metabolismo
2.
Theranostics ; 11(10): 4672-4687, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-33754020

RESUMEN

Rationale: Oxaliplatin-induced peripheral neuropathy (OIPN) is a common adverse effect that causes delayed treatment and poor prognosis among colorectal cancer (CRC) patients. However, its mechanism remains elusive, and no effective treatment is available. Methods: We employed a prospective cohort study of adult patients with pathologically confirmed stage III CRC receiving adjuvant chemotherapy with an oxaliplatin-based regimen for investigating OIPN. To further validate the clinical manifestations and identify a potential therapeutic strategy, animal models, and in vitro studies on the mechanism of OIPN were applied. Results: Our work found that (1) consistent with clinical findings, OIPN was observed in animal models. Targeting the enzymatic activity of cathepsin S (CTSS) by pharmacological blockade and gene deficiency strategy alleviates the manifestations of OIPN. (2) Oxaliplatin treatment increases CTSS expression by enhancing cytosol translocation of interferon response factor 1 (IRF1), which then facilitates STIM-dependent store-operated Ca2+ entry homeostasis. (3) The cytokine array demonstrated an increase in anti-inflammatory cytokines and suppression of proinflammatory cytokines in mice treated with RJW-58. (4) Mechanistically, inhibiting CTSS facilitated olfactory receptors transcription factor 1 release from P300/CBP binding, which enhanced binding to the interleukin-10 (IL-10) promoter region, driving IL-10 downstream signaling pathway. (5) Serum CTSS expression is increased in CRC patients with oxaliplatin-induced neurotoxicity. Conclusions: We highlighted the critical role of CTSS in OIPN, which provides a therapeutic strategy for the common adverse side effects of oxaliplatin.


Asunto(s)
Catepsinas/genética , Neuronas/metabolismo , Animales , Antineoplásicos/efectos adversos , Antineoplásicos/farmacología , Protocolos de Quimioterapia Combinada Antineoplásica/uso terapéutico , Catepsinas/antagonistas & inhibidores , Catepsinas/efectos de los fármacos , Quimioterapia Adyuvante , Estudios de Cohortes , Neoplasias Colorrectales/tratamiento farmacológico , Citocinas/metabolismo , Modelos Animales de Enfermedad , Inhibidores Enzimáticos , Femenino , Fluorouracilo/uso terapéutico , Ganglios Espinales , Humanos , Técnicas In Vitro , Leucovorina/uso terapéutico , Masculino , Ratones , Ratones Noqueados , Microglía/efectos de los fármacos , Microglía/metabolismo , Terapia Molecular Dirigida , Conducción Nerviosa , Neuronas/efectos de los fármacos , Compuestos Organoplatinos/uso terapéutico , Oxaliplatino/efectos adversos , Oxaliplatino/farmacología , Enfermedades del Sistema Nervioso Periférico/inducido químicamente , Estudios Prospectivos
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