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14篇 您的检索式:作者名="Chuanbin Mao"
    题名 作者 年代 出处 被引量
1NIR-induced highly sensitive detection of latent finger- marks by NaYF4:Yb,Er upconversion nanoparticles in a dry powder state显示文摘通常在犯罪场面发现 fingermarks 的大多数是潜伏的并且,这样为检测潜伏的 fingermarks 的一个有效方法是很重要的。然而,传统的发展中技术有象低察觉敏感,高背景干扰,复杂操作,和高毒性那样的缺点。处理这挑战,我们采用了荧光灯 NaYF 4:Yb,Er upconversion nanoparticles (UCNP ) 它能发荧光可见的光什么时候由 980 nm 使对人安全的在红外线附近的光激动,到污点,各种各样的底层上的潜伏的 fingermarks 出现。 UCNP 成功地被用作一篇小说荧光灯为有包括非渗入的材料(玻璃,大理石,铝合金表,不锈钢表,铝陪衬,和塑料卡片)的各种各样的底层上的高敏感,低背景,高效率,和低毒性的潜伏的 fingermarks 的察觉的标签,渗入半的材料(地板皮革,陶器的瓦,木头地板,和油漆木头),和象报纸的各种各样的类型那样的渗透的材料。这个工作证明 UCNP 是一万用荧光灯为几乎任何东西上的 fingermarks 的灵巧的察觉的标签材料,在法庭的科学启用他们的实际应用。Meng Wang Ming Li Mingying Yang Xiaomei Zhang Aoyang Yu Ye Zhu Penghe Qiu Chuanbin Mao 2015Nano Research2015,8,6:20
2Multi-functional bismuth-doped bioglasses: combining bioactivity and photothermal response for bone tumor treatment and tissue repair显示文摘Treatment of large bone defects derived from bone tumor surgery is typically performed in multiple separate operations,such as hyperthermia to extinguish residual malignant cells or implanting bioactive materials to initiate apatite remineralization for tissue repair;it is very challenging to combine these functions into a material.Herein,we report the first photothermal(PT)effect in bismuth(Bi)-doped glasses.On the basis of this discovery,we have developed a new type of Bi-doped bioactive glass that integrates both functions,thus reducing the number of treatment cycles.We demonstrate that Bi-doped bioglasses(BGs)provide high PT efficiency,potentially facilitating photoinduced hyperthermia and bioactivity to allow bone tissue remineralization.The PT effect of Bi-doped BGs can be effectively controlled by managing radiative and non-radiative processes of the active Bi species by quenching photoluminescence(PL)or depolymerizing glass networks.In vitro studies demonstrate that such glasses are biocompatible to tumor and normal cells and that they can promote osteogenic cell proliferation,differentiation,and mineralization.Upon illumination with near-infrared(NIR)light,the bioglass(BG)can efficiently kill bone tumor cells,as demonstrated via in vitro and in vivo experiments.This indicates excellent potential for the integration of multiple functions within the new materials,which will aid in the development and application of novel biomaterials.Liping Wang Nicholas J.Long Lihua Li Yao Lu Mei Li Jiangkun Cao Yu Zhang Qinyuan Zhang Shanhui Xu Zhongmin Yang Chuanbin Mao Mingying Peng 2018Light(Science & Applications)2018,7,1:6
3SNP-based QTL mapping for panicle traits in the japonica super rice cultivar Liaoxing 1显示文摘Panicle traits directly associated with yield are a target of selection in rice breeding.Although abundant QTL for panicle traits have been identified,there is little information about the genetic basis of panicle traits in japonica super rice(JSR)cultivars.In this study,we identified QTL for panicle traits in three environments using a population of recombinant inbred lines(RILs)derived from the JSR cultivar Liaoxing 1.A total of 197 RILs were genotyped with 285 polymorphic SNP markers.Phenotypic data and best linear unbiased prediction(BLUP)value of primary branch number(BNP),secondary branch number(BNS),grain number on primary branch(GNP),grain number on secondary branch(GNS),grain number per panicle(GN),panicle length(PL)and grain density(GD)were used for QTL mapping.A total of 105 QTL for seven panicle traits were detected in single environments using their BLUP values.Individual QTL explained 0.51%–52.22%of the phenotypic variation.Of the 105,49 were also detected by joint multi-environment analyses.Five stable QTL:qGD9,qPL9,qGNP9,qGN6,and qBNS6.2 were identified in multiple environments.qGD9,qGNP9,and qPL9,co-localizing on chromosome 9,likely correspond to the known gene DEP1.Importantly,qGN6 and qBNS6.2 in a co-localization region were identified as novel QTL,and their Liaoxing 1 alleles had a positive effect.Several RILs with the QTL allele combinations qGD9/qPL9/qGNP9 and qGN6/qBNS6.2 showed greater GN.Further investigation of the putative gene underlying qGN6/qBNS6.2 would shed light on the molecular mechanism of JSR.Mingzhu Zhao Zuobin Ma Lili Wang Zhiqiang Tang Ting Mao Chuanbin Liang Hong Gao Liying Zhang Na He Liang Fu Changhua Wang Guomin Sui Wenjing Zheng 2020The Crop Journal2020,8,5:4
4Nontoxic virus nanofibers improve the detection sensitivity for the anti-p53 antibody, a biomarker in cancer patients显示文摘在浆液的 anti-p53 抗体的存在是为癌症的 biomarker。然而,它的高敏感察觉仍然是在癌症诊断的一个问题。处理这挑战,我们使用了 fd 噬菌体,对人安全的细菌特定的病毒 nanofiber 那能被以一种无差错的方式感染主人细菌大量生产,并且遗传上设计了它显示能够在它的方面墙上认出并且捕获 anti-p53 抗体的肽。我们作为一根俘获探针采用了结果的噬菌体 nanofibers 开发连接酶的 immunosorbent 试金(ELISA ) 的一个修改版本方法,称为的 phage-ELISA。我们为 anti-p53 抗体的察觉把它比作传统的 ELISA 方法, p53-ELISA,哪个使用 recombinant 捕获 anti-p53 的野类型的 p53 蛋白质抗体。我们使用了 phage-ELISA 与恶意的肿瘤的各种各样的类型在 316 个病人的一个试验性的组检测 anti-p53 抗体。我们发现 17.7% 的察觉率(56 个积极盒子) 被 phage-ELISA 完成,它为 p53-ELISA (65 个积极盒子) 比得上 20.6% 的察觉率。然而,当噬菌体和 p53 被联合为 phage/p53-ELISA 形成捕获抗体的探针时, 30.4% 的察觉率(96 个积极盒子) 被完成。我们的工作证明由于由噬菌体 nanofibers 和 p53 的 anti-p53 抗体的联合俘获, phage/p53-ELISA 与癌症的各种各样的类型在病人为 anti-p53 抗体完成了最高诊断的精确性和察觉效率。我们的工作建议那 nanofibers 和抗原的联合,哪个俘获抗体,能导致增加的察觉敏感,它为在生命科学,临床的药,和环境科学的应用是有用的。Pengtao Pan Yicun Wang Ye Zhu Xiang Gao Zhigang Ju Penghe Qiu Li Wang Chuanbin Mao 2015Nano Research2015,8,11:3
5Nontoxic engineered virus nanofibers as an efficient agent for the prevention and detection of fungal infection显示文摘Candida albicans (C。albicans ) 感染让高死亡在 immunocompromised 病人评价。由于当前的诊断系统的无效和对 candidiasis 的准许的疫苗的缺席, C 的预防。albicans 感染仍然是挑战。C。albicans 感染能被藏匿反的 aspartyl 朊酶评估并且阻止 2 抗体(anti-Sap2 IgG ) 和 Hsp90 抗体(anti-Hsp90 IgG ) 。在这研究,为诊断和 C 的预防的改进探索一个新代理人。albicans 感染,设计 fd 抗菌素,被认为对人安全的病毒 nanofiber,与二被设计并且准备能导致并且捕获 anti-Sap2 IgG 和 anti-Hsp90 IgG 的 epitopes。双显示的噬菌体作为一根新奇俘获探针被采用开发一个新连接酶的 immunosorbent 试金( ELISA )方法,它显著地 recombinant 蛋白质 Sap2 在被用作涂层抗原捕获特定的抗体( rSap2-ELISA )的 ELISA 和 recombinant 蛋白质 Hsp90 在被用作涂层抗原捕获特定的抗体( rHsp90-ELISA )的 ELISA 与那些相比改进了察觉率。另外, nanofibers 充当了一支潜在的疫苗使老鼠,以及 recombinant 蛋白质免疫,更高效地调停了体液、细胞的有免疫力的回答, C 的减少的层次。albicans 殖民,并且在 C 增加了幸存率。感染 albicans 的老鼠。因此,双显示的 nanofiber 被显示了是为保护对的一个强大的 bifunctional 代理人的噬菌体和临床的感染的敏感察觉,它有潜力广泛地在生命科学,临床的药,和环境科学被过去常。Yicun Wang Hongxi Shi Shuai Dong Yan Li Meng Wang Yanyan Huai Xintong Zhang Xi Chen Chuanbin Mao Xiang Gao Li Wang 2018Nano Research2018,11,4:2
6显示文摘Mao Chuanbin Li Hengde Cui Fuzhai 1999Journal of Crystal Growth1999,206,:1
7New understanding of silver-induced texture in powder-in-tube processed Ag/Bi(2223) tape显示文摘Mao Chuanbin Zhou Lian Wu Xiaozu Sun Xiangyun 1997Physica C1997,281,:1
8Peptides encoded by noncoding genes: challenges and perspectives显示文摘In recent years,noncoding gene(NCG)translation events have been frequently discovered.The resultant peptides,as novel findings in the life sciences,perform unexpected functions of increasingly recognized importance in many fundamental biological and pathological processes.The emergence of these novel peptides,in turn,has advanced the field of genomics while indispensably aiding living organisms.The peptides from NCGs serve as important links between extracellular stimuli and intracellular adjustment mechanisms.These peptides are also important entry points for further exploration of the mysteries of life that may trigger a new round of revolutionary biotechnological discoveries.Insights into NCG-derived peptides will assist in understanding the secrets of life and the causes of diseases,and will also open up new paths to the treatment of diseases such as cancer.Here,a critical review is presented on the action modes and biological functions of the peptides encoded by NCGs.The challenges and future trends in searching for and studying NCG peptides are also critically discussed.Shuo Wang Chuanbin Mao Shanrong Liu 2019Signal Transduction and Targeted Therapy2019,4,1:1
9The Functionalization of Titanium With EDTA to Induce Biomimetic Mineralization of Hydroxyapatite显示文摘Mao Chuanbin Li Hengde Cui Fuzhai 1999J Mater Chem1999,,9:1
10Oriented growth of hydroxyapatite on (001) textured titanium with functionalized self-assembled silane monolayer as template 显示文摘Mao Chuanbin Li Hengde Cui Fuzhai 1998J Mater Chem1998,8,:1
11Bio-inspired supramolecular self-assembly towards soft nanomaterials显示文摘Yiyang LIN Chuanbin MAO 2011Frontiers of Computer Science2011,5,3:1
12Aggregated carbon dots-loaded macrophages treat sepsis by eliminating multidrug-resistant bacteria and attenuating inflammation显示文摘Sepsis,caused by uncontrollable infection and inflammatory response,leads to more than 30 million infected patients and results in high morbidity worldwide every year.Currently,no efficient approaches have been developed for sepsis therapy due to antimicrobial resistance and inflammatory storm.Here,we report macrophages loaded with aggregated carbon dots(ACDs)in the lysosome,termed MCDs,to treat sepsis in immunosuppressive mice.The ACDs are constructed by negative CDs and amine-abundant polyethyleneimine(PEI),enabling them to bear the strong antibacterial ability and enhanced photoluminescent efficacy.The ACDs are specifically located in the macrophage lysosomes,efficiently enhancing the multidrug-resistant bacteria-killing ability of MCDs.More importantly,the MCDs possess superior anti-inflammatory effects such as reducing the number of pro-inflammatory(M1)and stimulating anti-inflammatory(M2)macrophages.These effects upregulate the inflammatory cytokines(TNF-α,IL-1β,IL-4,and IL-10),ultimately resulting in increased sepsis survival.Our work provides an intelligent approach to overcoming multidrug-resistant bacteria-induced infection from sepsis patients and paves a new avenue on employing nanoparticle-loaded cells for combating inflammation-related infection.Lihua Li Lingling Chen Yao Lu Binglin Li Rong Hu Ling Huang Tao Zhang Xiaoming Wei Zhongmin Yang Chuanbin Mao 2023Aggregate2023,4,1:0
13The antidote for inadequate bone height of mandibular reconstruction with fibular flap显示文摘Xin Peng Mao Chi Yu Guangyan Guo Chuanbin Huang Minxian 2008中国口腔颌面外科杂志2008,6,B05:0
14Correction:Multi-functional bismuth-doped bioglasses:combining bioactivity and photothermal response for bone tumor treatment and tissue repair显示文摘In this originally published article,we have noticed several mistakes.They should be corrected as follows:1.On page 1,the second affiliation(No.5)of the author“Chuanbin Mao”should be deleted as he does not belong to that affiliation.Namely,he should be only listed with(Department of Chemistry and Biochemistry Stephenson Life Sciences Research Center,University of Oklahoma,Norman,OK 73072,USA).Liping Wang Nicholas JLong Lihua Li Yao Lu Mei Li Jiangkun Cao Yu Zhang Qinyuan Zhang Shanhui Xu Zhongmin Yang Chuanbin Mao Mingying Peng 2019Light(Science & Applications)2019,8,1:0
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