Breast cancer,a predominant global health issue,requires ongoing exploration of new therapeutic strategies.Palbociclib(PAL),a well-known cyclin-dependent kinase(CDK)inhibitor,plays a critical role in breast cancer tre...Breast cancer,a predominant global health issue,requires ongoing exploration of new therapeutic strategies.Palbociclib(PAL),a well-known cyclin-dependent kinase(CDK)inhibitor,plays a critical role in breast cancer treatment.While its efficacy is recognized,the interplay between PAL and cellular autophagy,particularly in the context of the RAF/MEK/ERK signaling pathway,remains insufficiently explored.This study investigates PAL’s inhibitory effects on breast cancer using both in vitro(MCF7 and MDA-MB-468 cells)and in vivo(tumor-bearing nude mice)models.Aimed at elucidating the impact of PAL on autophagic processes and exploring the potential of combining it with trametinib(TRA),an MEK inhibitor,our research seeks to address the challenge of PAL-induced drug resistance.Ourfindings reveal that PAL significantly decreases the viability of MCF7 and MDA-MB-468 cells and reduces tumor size in mice while showing minimal cytotoxicity in MCF10A cells.However,PAL also induces protective autophagy,potentially leading to drug resistance via the RAF/MEK/ERK pathway activation.Introducing TRA effectively neutralized this autophagy,enhancing PAL’s anti-tumor efficacy.A combination of PAL and TRA synergistically reduced cell viability and proliferation,and in vivo studies showed notable tumor size reduction.In conclusion,the PAL and TRA combination emerges as a promising strategy for overcoming PAL-induced resistance,offering a new horizon in breast cancer treatment.展开更多
Lithium-selenium(Li-Se)batteries are deemed as an emerging high energy density electrochemical energy storage system owing to their high specific capacity and volume capacity.Prior to their practicality,a series of cr...Lithium-selenium(Li-Se)batteries are deemed as an emerging high energy density electrochemical energy storage system owing to their high specific capacity and volume capacity.Prior to their practicality,a series of critical challenges from the Se cathode side need to be overcome including low reactivity of bulk Se,shuttle effect of intermediates,sluggish redox kinetics of polyselenides,and volume change etc.In this review,recent progress on design strategies of functional Se cathodes are comprehensively summarized and discussed.Following the significance and key challenges,various efficient functionalized strategies for Se cathodes are presented,encompassing covalent bonding,nanostructure construction,heteroatom doping,component hybridization,and solid solution formation.Specially,the universality of these functional strategies are successfully extended into Na-Se batteries,K-Se batteries,and Mg-Se batteries.At last,a brief summary is made and some perspectives are offered with the goal of guiding future research advances and further exploration of these strategies.展开更多
基金supported by the Sichuan Science and Technology Program(Grant Nos.2020YJ0494,24GJHZ0058,21RCYJ0021,and 2022YFS0620)the National Natural Science Foundation of China(Grant No.81903829)+1 种基金the Southwest Medical University Science and Technology Program(Grant Nos.2021ZKZD015,2021ZKZD018,and 2021ZKMS046)the Macao Science and Technology Development Fund of Macao SAR(Project Nos.SKLQRCM(MUST)-2020-2022 and MUST-SKL-2021-005).
文摘Breast cancer,a predominant global health issue,requires ongoing exploration of new therapeutic strategies.Palbociclib(PAL),a well-known cyclin-dependent kinase(CDK)inhibitor,plays a critical role in breast cancer treatment.While its efficacy is recognized,the interplay between PAL and cellular autophagy,particularly in the context of the RAF/MEK/ERK signaling pathway,remains insufficiently explored.This study investigates PAL’s inhibitory effects on breast cancer using both in vitro(MCF7 and MDA-MB-468 cells)and in vivo(tumor-bearing nude mice)models.Aimed at elucidating the impact of PAL on autophagic processes and exploring the potential of combining it with trametinib(TRA),an MEK inhibitor,our research seeks to address the challenge of PAL-induced drug resistance.Ourfindings reveal that PAL significantly decreases the viability of MCF7 and MDA-MB-468 cells and reduces tumor size in mice while showing minimal cytotoxicity in MCF10A cells.However,PAL also induces protective autophagy,potentially leading to drug resistance via the RAF/MEK/ERK pathway activation.Introducing TRA effectively neutralized this autophagy,enhancing PAL’s anti-tumor efficacy.A combination of PAL and TRA synergistically reduced cell viability and proliferation,and in vivo studies showed notable tumor size reduction.In conclusion,the PAL and TRA combination emerges as a promising strategy for overcoming PAL-induced resistance,offering a new horizon in breast cancer treatment.
基金the financial support from the National Key Research and Development Program of China(2019YFB2203400)the"111 Project"(B20030)ARC DP210102215。
文摘Lithium-selenium(Li-Se)batteries are deemed as an emerging high energy density electrochemical energy storage system owing to their high specific capacity and volume capacity.Prior to their practicality,a series of critical challenges from the Se cathode side need to be overcome including low reactivity of bulk Se,shuttle effect of intermediates,sluggish redox kinetics of polyselenides,and volume change etc.In this review,recent progress on design strategies of functional Se cathodes are comprehensively summarized and discussed.Following the significance and key challenges,various efficient functionalized strategies for Se cathodes are presented,encompassing covalent bonding,nanostructure construction,heteroatom doping,component hybridization,and solid solution formation.Specially,the universality of these functional strategies are successfully extended into Na-Se batteries,K-Se batteries,and Mg-Se batteries.At last,a brief summary is made and some perspectives are offered with the goal of guiding future research advances and further exploration of these strategies.