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11篇 您的检索式:作者名="Pang Huihui"
    题名 作者 年代 出处 被引量
1A class of three -point boundary value problem for second-order impulsive Integro-diiTerential equations in Banach spaces显示文摘Meiqiang Feng Huihui Pang 2009Nonlinear analysis2009,,7:1
2Solvability for second-order three-point boundary value problems at resonance on a half-line显示文摘Hairong Lian Huihui Pang Weigao Ge 2007Journal of Mathematical Analysis and Applications2007,,2:1
3Triple positive solutions for boundary value problems oninfinite intervals显示文摘Lian Hairong Huihui Pang Ge Weigao 2007Nonlinear Anal2007,,67:1
4Existence and monotone iteration of positive solutions for a three - point boundary value problem显示文摘PANG Huihui FENG Meiqiang GE Weigao 2008Appl Math Lett2008,21,7:1
5Genetic Analysis and Improvement Strategies of Protein Content in Rice Seeds显示文摘Enhancing the nutritional quality of food crops is a way to improve human nutrition and health.Grain protein content(GPC)is an important nutritional quality trait for rice and many other crops.Therefore,it will be very significant to increase GPC and improve rice quality.This paper mainly reviewed the genetic studies GPC in rice,mapping and cloning of QTLs and genes associated with GPC.However,little is known about the molecular mechanism and gene function related to GPC in rice.Thus,here we put forward the genetic strategy by gene pyramiding or molecular marker assisted selection to improve GPC and nutritional quality in rice.This review could provide important information for genetic improvement of grain nutritional quality of rice.Bo PENG Yanfang SUN Dongyan KONG Ruihua PANG Xiaohua SONG Huilong LI Lin LIU Xian-wen LI Jintao LI Qiying ZHOU Bin DUAN Huihui LIU Yuhan ZUO Yanlin HAO Shizhi SONG Hongyu YUAN 2017Agricultural Biotechnology2017,6,4:1
6Existence and monotone iteration of positive solutions for a three-point boundary value problem显示文摘PANG Huihui FENG Meiqiang GE Weigao 2008Applied Mathematics Letters2008,21,7:1
7Existence and monotone iteration of positive solutions for a three-point boundary value problem显示文摘Pang Huihui Feng Meiqiang Ge Weigao 2008Applied Mathematics Letters2008,21,7:1
8Triple positive solutions for boundary value problems on infinite intervals显示文摘LIAN Hairong PANG Huihui GE Weigao 2006Nonlinear Analysis2006,,:1
9EXISTENCE FOR SECOND-ORDER FOUR-POINT BOUNDARY VALUE PROBLEM AT RESONANCE显示文摘This paper is concerned with the existence of solutions for a second-order four-point boundary value problem at resonance. The main methods depend on the technique of the upper and lower solutions and the coincidence degree theory.Pang Huihui Ge Weigao (Dtpt. of Math., Beijing Institute of Technology, Beijing 100081) 2006Annals of Differential Equations2006,22,3:1
10Versatile nanocomposite augments high-intensity focused ultrasound for high-efficacy sonodynamic therapy of glioma显示文摘High-intensity focused ultrasound(HIFU),with inherent advantages of improved ultrasonic depth and low off-target damage,holds the promising capability for glioma treatment,but the relatively long therapeutic time and potential physical complications may hamper its clinical application.Herein,a bovine serum albumin(BSA)-based nanoplatform with in situ growth of MnO_(2) was synthesized,and Protoporphyrin IX(PpIX)was further anchored to obtain a versatile PpIX@MnO_(2)@BSA nanoplatform(denoted as BMP).By employing HIFU as the exogenous irradiation source,a high-efficacy sonodynamic therapy(SDT)is developed,in which the excited BMP enables the production of tumoricidal reactive oxygen species(ROS).The inherent tumor microenvironment(TME)-responsive property of MnO_(2) endows BMP with specific T1-weighted magnetic resonance imaging(MRI)by releasing Mn2+,and the simultaneously generated O_(2) facilitates hypoxia alleviation as well as ^(1)O_(2) generation.Compared with HIFU therapy alone,suppression of glioma growth and improved survival benefits are achieved through the designed TMEresponsive nanocomposite under HIFU exposure.The high-efficacy SDT strategy combining BMP and HIFU demonstrated favorable TME-responsive T1-weighted MRI,hypoxic environment alleviation,and anti-tumor capability,providing a perspective paradigm for MRI-guided glioma treatment.Yingyan Zheng Dejun She Huihui Huang Lin Lin Sunhui Chen Yiping Lu Li Liu Zhiqing Pang Bo Yin 2022Nano Research2022,15,10:0
11Reductive lipid nanoparticles loaded with vinorelbine inhibit chemotherapy-induced invasion of cancer cells by modulating ENPP2显示文摘Cancer is a predominant culprit behind worldwide death and accounts for up to 10 million deaths every year.Chemotherapy is the primary therapeutic method employed for cancer in clinical settings and is essential in controlling tumor progression.Despite the advances in this field,tumor invasion and metastasis during treatment remain a significant cause of treatment failure.Nevertheless,the underlying mechanisms involving such a disappointing phenomenon are still not fully elucidated.Vinorelbine(VNB)extends the lifespan of many cancer patients in the clinic as an emerging chemotherapy drug approved by Food and Drug Administration(FDA).However,VNB-induced tumor metastasis is still an intractable problem,which may be closely related to the abnormal oxidative stress generated during VNB-mediated treatment.Hence,the study aims to construct a reductive nanosystem loaded with VNB,called VNB-VNP,to improve cancer cure rates and reduce tumor metastasis.With the reductive component vitamin E,VNB-VNP can effectively reduce oxidative stress and significantly outperform free VNB in preventing tumor progression.The transcriptome analysis shows that VNB-VNP can alleviate the over-expression of ectonucleotide pyrophosphatase/phosphodiesterase 2(ENPP2),which may be the main reason why VNB-VNP can inhibit tumor invasion and metastasis.Overall,the research designs a new platform for VNB treatment,which demonstrates promising efficacy in inhibiting neoplastic progression and identifies a new mechanism associated with VNB-induced tumor metastasis,which may offer several valuable references for enhancing chemotherapy efficacy in clinical anti-tumor therapy.Xiaoqi Zhao Xuemeng Guo Mei Pang Weigen Qiu Zhenyu Luo Qing Lin Yichao Lu Hang Yin Sijie Wang Huihui Liu Junlei Zhang Lihua Luo Jian You 2024Nano Research2024,17,4:0
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