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Liposomalα-cyperone targeting bone resorption surfaces suppresses osteoclast differentiation and osteoporosis progression via the PI3K/Akt axis
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作者 Lin Yang Xueying An +7 位作者 Wang Gong Wenshu Wu Bin Liu Xiaoyan Shao Yansi Xian Rui Peng baosheng guo Qing Jiang 《Nano Research》 SCIE EI CSCD 2024年第4期2949-2959,共11页
Osteoporosis is a metabolic dysregulation of bone that occurs mainly in postmenopausal women,and the hyperfunction of osteoclasts is the primary contributor to postmenopausal osteoporosis.However,the development of ef... Osteoporosis is a metabolic dysregulation of bone that occurs mainly in postmenopausal women,and the hyperfunction of osteoclasts is the primary contributor to postmenopausal osteoporosis.However,the development of effective therapeutic drugs and precise delivery systems remains a challenge in the field of anti-absorption therapy.Here,we reported theα-cyperone(α-CYP)for anti-osteoporosis and developed a liposome-based nano-drug delivery system ofα-CYP,that specifically targets the bone resorption interface.Firstly,we found that theα-CYP,one of the major sesquiterpenes of Cyperus rotundus L.,attenuated the progression of osteoporosis in ovariectomized(OVX)mice and down-regulated the expression of phosphorylated proteins of phosphoinositide 3-kinase(PI3K)and protein kinase B(Akt),causing down-regulation of osteoclast-related genes/proteins and curbing osteoclast differentiation.Furthermore,α-CYP reversed the activation of osteoclastic differentiation and enhanced osteoporosis-related proteins expression caused by PI3K/Akt agonist(YS-49).More importantly,we adopted the osteoclastic resorption surface targeting peptide Asp8 and constructed the liposome(lipαC@Asp8)to deliverα-CYP to osteoclasts and confirmed its anti-osteoporosis effect and enhanced osteoclast inhibition by blocking PI3K/Akt axis.In conclusion,this study demonstrated thatα-CYP inhibits osteoclast differentiation and osteoporosis development by silencing PI3K/Akt pathway,and the liposome targeting delivery systems loaded withα-CYP might provide a novel and effective strategy to treat osteoporosis. 展开更多
关键词 OSTEOPOROSIS Α-CYPERONE OSTEOCLAST phosphoinositide 3-kinase/protein kinase B(PI3K/Akt) liposome
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转FBP7::iaaM基因陆地棉种质冀资139纤维品质性状杂种优势分析 被引量:2
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作者 郭宝生 刘素恩 +6 位作者 赵存鹏 王兆晓 王凯辉 李丹 刘旭 杜海英 耿军义 《植物学报》 CAS CSCD 北大核心 2021年第2期166-174,共9页
提高棉花(Gossypiumhirsutum)产量兼顾改良纤维品质是棉花育种的重要目标,而优良种质创新是品种改良的基础。FBP7::iaaM基因能够调控棉花胚珠表皮细胞IAA的含量,进而促进棉纤维发育的起始。利用含有FBP7::iaaM基因的种质IF1-1,通过常规... 提高棉花(Gossypiumhirsutum)产量兼顾改良纤维品质是棉花育种的重要目标,而优良种质创新是品种改良的基础。FBP7::iaaM基因能够调控棉花胚珠表皮细胞IAA的含量,进而促进棉纤维发育的起始。利用含有FBP7::iaaM基因的种质IF1-1,通过常规杂交育种手段实现了目的基因向骨干亲本的转移,培育了优良陆地棉种质冀资139,并用4个不同类型的陆地棉品系对冀资139纤维品质性状进行了杂种优势分析。结果表明,FBP7::iaaM基因及其调控的优良性状可以在骨干育种亲本中传递,具有较高的育种价值;转FBP7::iaaM基因的冀资139具有综合性状优良、优质和高衣分等特点;纤维长度、比强度及马克隆值的遗传主要由基因加性效应控制,这为其作为骨干亲本的应用提供了理论依据。 展开更多
关键词 陆地棉 纤维品质 FBP7::iaaM 杂种优势
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