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專家信息:


羅細(xì)亮,男,1976年12月生,博士,教授,博士生導(dǎo)師,國(guó)家優(yōu)秀青年基金獲得者,歐盟瑪麗居里學(xué)者,泰山學(xué)者特聘教授,山東省杰青和國(guó)家優(yōu)秀青年基金獲得者,F(xiàn)任青島科技大學(xué)化學(xué)與分子工程學(xué)院院長(zhǎng),及腫瘤標(biāo)志物傳感分析教育部重點(diǎn)實(shí)驗(yàn)室主任。

主要從事納米生物復(fù)合材料的制備及其應(yīng)用研究,重點(diǎn)集中在生化分析和生物醫(yī)藥材料等領(lǐng)域。

教育及工作經(jīng)歷:

1999和2002年先后在青島科技大學(xué)獲得學(xué)士和碩士學(xué)位。

2005年于南京大學(xué)獲得分析化學(xué)博士學(xué)位。

2005.05 - 2007.03 愛(ài)爾蘭都柏林城市大學(xué),國(guó)家傳感器研究中心,博士后。

2007.03 - 2008.05 美國(guó)亞利桑那州立大學(xué),生物設(shè)計(jì)研究院,博士后研究員。

2008.06 - 2011.02 美國(guó)匹茲堡大學(xué),生物工程系,博士后研究員。

2011.03 - 2011.09 美國(guó)匹茲堡大學(xué),生物工程系,研究助理教授。

2011.11 - 2013.10 英國(guó)牛津大學(xué),化學(xué)系,高級(jí)瑪麗居里學(xué)者。

2011年9月被山東省政府選聘為泰山學(xué)者特聘教授。

2011.09 - 2016.12 青島科技大學(xué),化學(xué)與分子工程學(xué)院,泰山學(xué)者特聘教授。

2016年聘期期滿考核優(yōu)秀,獲得續(xù)聘。

2014年2月?lián)吻鄭u科技大學(xué)化學(xué)與分子工程學(xué)院副院長(zhǎng)。

2016年2月?lián)文[瘤標(biāo)志物傳感分析教育部重點(diǎn)實(shí)驗(yàn)室主任。

2016年12月?lián)吻鄭u科技大學(xué)化學(xué)與分子工程學(xué)院院長(zhǎng)。

社會(huì)任職:

1、英國(guó)皇家化學(xué)會(huì)會(huì)員。

2、國(guó)際材料研究學(xué)會(huì)以及生物醫(yī)學(xué)工程學(xué)會(huì)的會(huì)員。

3、擔(dān)任SCI期刊Journal of Nanomaterials的客座編輯。

4、國(guó)際期刊Frontiers in Analytical Chemistry及American Journal of Nanomaterials的編委。

5、中文核心期刊《分析測(cè)試學(xué)報(bào)》青年編委。

6、中國(guó)儀器儀表學(xué)會(huì)電化學(xué)分析專業(yè)委員會(huì)委員。

7、國(guó)家自然科學(xué)基金和教育部長(zhǎng)江學(xué)者青年學(xué)者等項(xiàng)目評(píng)審專家。

培養(yǎng)研究生情況:

培養(yǎng)研究生數(shù)十名。

招生專業(yè):

分析化學(xué),應(yīng)用化學(xué)

科學(xué)研究:


研究方向:

主要從事納米生物復(fù)合材料的制備及其應(yīng)用研究,重點(diǎn)集中在生化分析和生物醫(yī)藥材料等領(lǐng)域。

承擔(dān)科研項(xiàng)目情況:

2011年以來(lái),主持省部級(jí)以上科研項(xiàng)目6項(xiàng),其中國(guó)家自然科學(xué)基金3項(xiàng)。

1、泰山學(xué)者建設(shè)工程專項(xiàng)(連續(xù)資助,2017-2021);

2、國(guó)家自然科學(xué)基金面上項(xiàng)目(21675093,2017-2020);

3、山東省杰出青年基金(JQ201406,2015-2017);

4、國(guó)家自然科學(xué)優(yōu)秀青年基金(編號(hào)21422504,2015-2017);

5、國(guó)家自然科學(xué)基金面上項(xiàng)目(21275087,2013-2016),80萬(wàn),完成;

6、山東省自然科學(xué)基金面上項(xiàng)目(ZR2012BM008,2012-2015),10萬(wàn),完成;

7、泰山學(xué)者建設(shè)工程專項(xiàng) (ts20110829,2011-2016),200萬(wàn),完成;

8、歐盟第七框架計(jì)劃研究項(xiàng)目(PIIF-GA-2010-271775,2011-2013),28萬(wàn)歐元,完成。

科研成果:

至今已在Chemical Society Reviews、Biomaterials、Analytical Chemistry等期刊上發(fā)表SCI論文100余篇,其中影響因子大于5.0的30余篇。全部論文在SCI被引用3200多次,其中有7篇論文單篇引用超過(guò)100次,H-index 為26。開(kāi)創(chuàng)了利用電沉積殼聚糖制備生物傳感器的方法,已被世界上30多個(gè)國(guó)家的科學(xué)家所廣泛借鑒和采用,三篇主要論文他引超過(guò)600次。 在國(guó)際上首次實(shí)現(xiàn)了利用碳納米管內(nèi)腔來(lái)儲(chǔ)存和可控釋放藥物,并發(fā)展了多種基于功能聚合物及納米材料的疾病標(biāo)志物檢測(cè)新體系和新方法,研制了一系列具有抗污染性能的新型生物傳感器。申請(qǐng)國(guó)內(nèi)外發(fā)明專利7項(xiàng),獲得授權(quán)3項(xiàng)。

發(fā)明專利:


1 一種羥基生物磁珠及其制備方法和應(yīng)用 陳麗華;呂淑麗;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2017-09-28 2018-01-09

2 一種細(xì)胞內(nèi)Hg2+的熒光成像方法 王衛(wèi);董穎杰;羅細(xì)亮;樊瀟健;張召香;孫雪梅 青島科技大學(xué) 中國(guó)專利 2017-04-14 2017-08-18

3 一種基于可控釋放技術(shù)的谷胱甘肽熒光傳感器及其制備方法 王衛(wèi);董穎杰;陳晨;王鳳英;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2017-03-09 2017-06-06

4 一種檢測(cè)谷胱甘肽的方法 王衛(wèi);董穎杰;王世穎;申欣;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2017-03-09 2017-06-30

5 一種細(xì)胞內(nèi)谷胱甘肽的熒光成像方法 王衛(wèi);董穎杰;丁彩鳳;萬(wàn)均;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2017-03-09 2017-07-07

7 一種檢測(cè)Hg2+的方法 王衛(wèi);萬(wàn)均;羅細(xì)亮;申欣;王鳳英;李會(huì)平 青島科技大學(xué) 中國(guó)專利 2016-12-09 2017-04-26

8 一種檢測(cè)Hg2+的生物傳感器及其制備方法 王衛(wèi);董穎杰;趙娜;陳晨;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2016-12-09 2017-05-31

9 一種納米熒光生物傳感器及其制備方法和應(yīng)用 王衛(wèi);侯曉珊;陳晨;王鳳英;萬(wàn)均;丁彩鳳;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2016-05-23 2016-07-20

10 一種細(xì)胞內(nèi)ATP的熒光成像方法 王衛(wèi);陳晨;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2015-02-28 2015-09-23

11 一種納米熒光傳感器及其制備方法和應(yīng)用 王衛(wèi);李筱筱;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2015-02-28 2015-09-23

12 一種復(fù)合型熒光納米探針及其制備方法和應(yīng)用 王衛(wèi);羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2014-09-13 2015-06-24

13 一種納晶纖維素/PEDOT類復(fù)合材料及其制備方法 范金石;徐桂云;邵婉;劉國(guó)飛;羅細(xì)亮 青島科技大學(xué) 中國(guó)專利 2014-05-23 2014-08-13

14 一種電化學(xué)探針及其合成方法 王衛(wèi);羅細(xì)亮;柳士霞 青島科技大學(xué) 中國(guó)專利 2014-05-12 2014-07-30

備注: 按照專利名稱 發(fā)明人 申請(qǐng)人 來(lái)源數(shù)據(jù)庫(kù) 申請(qǐng)日 公開(kāi)日排序

論文專著:


發(fā)表英文論文:

2018年 

1 Shenghao Xu,Yongyin Nie, Liping Jiang, Jun Wang, Guiyun Xu, Wei Wang, Xiliang Luo*.Polydopamine nanosphere/gold nanocluster (Au NC)-based nanoplatform for dualcolor simultaneous detection of multiple tumor-related microRNAs withDNase-I-assisted target recycling amplification. Analytical Chemistry, 90 (2018) 4039-4045.

2 Caifeng Ding*,Yujuan Xu, Yanan Zhao, Hua Zhong, Xiliang Luo*. Fabrication of BSA@AuNCs basednanostructures for cell fluoresce imaging and target drug delivery. ACS AppliedMaterials and Interfaces, Accepted.

3 Wei Wang,Silambarasan Jayachandran, Mengru Li, Shenghao Xu, Xiliang Luo*. Hyaluronicacid functionalized nanostructured sensing interface for voltammetricdetermination of microRNA in biological media with ultra-high sensitivity andultra-low fouling. Microchimica Acta, Accepted.

4 Xiao-Yan Zhu,Ai-Jun Wang, Sai-Sai Chen, Xiliang Luo, Jiu-Ju Feng*. Facile synthesis ofAgPt@Ag core-shell nanoparticles as highly active surface-enhanced Ramanscattering substrates. Sensors and Actuators B: Chemical, 260 (2018) 945-952.

5 Mengru Li, WeiWang, Zhuo Chen*, Zhiling Song*, Xiliang Luo*. Electrochemical determination ofparacetamol based on Au@graphene core-shell nanoparticles doped conductingpolymer PEDOT nanocomposite. Sensors and Actuators B: Chemical, 260 (2018)778-785.

6 Shanshan Wang,Xu Hun*, Xiliang Luo*. Photoelectrochemical endocrine-disrupting chemicalsaptasenor based on resonance energy transfer between SnSe/GR and AuNPs alongwith GSSG for signal amplification. Sensors and Actuators B: Chemical, 260(2018) 388-395.

7 Mingxia Jiao, Lihong Jing, Xiaojun Wei, Chunyan Liu, Xiliang Luo*, Mingyuan Gao*. The Yin and Yang of Coordinating Co-Solvents in the Size-Tuning of Fe3O4 Nanocrystals through Flow Synthesis. Nanoscale, Accepted.

8 Rui Wang, Ai-Jun Wang, Wei-Dong Liu, Pei-Xin Yuan, Yadong Xue, Xiliang Luo, Jiu-Ju Feng*. A novel label-free electrochemical immunosensor for ultra-sensitively detecting prostate specific antigen based on the enhanced catalytic currents of oxygen reduction catalyzed by core-shell Au@Pt nanocrystals. Biosensors and Bioelectronics, 102 (2018) 276-281.

9 Wei Wang*, Xiaoshan Hou, Xin Li, Chen Chen, Xiliang Luo*. An ultra-sensitive fluorescent “Turn on” biosensor for glutathione and its application in living cells. Analytica Chimica Acta, 998 (2018) 45-51.

10 Guixiang Wang, Xiaoli Su, Qingjun Xu, Guiyun Xu, Jiehua Lin, Xiliang Luo*. Antifouling aptasensor for the detection of adenosine triphosphate in biological media based on mixed self-assembled aptamer and zwitterionic peptide. Biosensors and Bioelectronics, 101 (2018) 129-134.

11 Shuo Liu, Yihui Ma, Min Cui, Xiliang Luo*. Enhanced electrochemical biosensing of alpha-fetoprotein based on three-dimensional macroporous conducting polymer polyaniline. Sensors and Actuators B: Chemical, 255 (2018) 2568-2574.

12 Xu Hun*, Yan Meng, Shanshan Wang, Hui Zhang, Xiliang Luo*. Mismatched catalytic hairpin assembly coupling hydroxylamine-O-sulfonic acid as oxide for DNA assay. Sensors and Actuators B: Chemical, 254 (2018) 347-353.

2017年 

13 Shenghao Xu, Zhengzhong Su, Zhuo Zhang, Yongyin Nie, Jun Wang, Guanglu Ge, Xiliang Luo*. Rapid synthesis of nitrogen doped carbon dots and their application as label free sensor array for simultaneous discrimination of multiple proteins. Journal of Materials Chemistry B, 5 (2017) 8748-8753.

14Xu Hun*, Shanshan Wang, Shuyu Mei, HongqingQin, Hui Zhang, Xiliang Luo*. Photoelectrochemical dopamine sensor based on agold electrode modified with SnSe nanosheets. Microchimica Acta, 184 (2017)3333-3338.

15 Hua Li, Hong Huang, Jiu-Ju Feng, Xiliang Luo*,Ke-Ming Fang, Zhi-Gang Wang, Ai-Jun Wang*. A polypeptide-mediated synthesis ofgreen fluorescent gold nanoclusters for Fe3+ sensing and bioimaging. Journal ofColloid and Interface Science, 506 (2017) 386-392.

16 Guixiang Wang,Qingjun Xu, Lei Liu, Xiaoli Su, Jiehua Lin, Guiyun Xu, Xiliang Luo*. Mixedself-assembly of polyethylene glycol and aptamer on polydopamine surface forhighly sensitive and low fouling detection of adenosine triphosphate in complexmedia. ACS Applied Materials and Interfaces, 9 (2017) 31153-31160.

17 Shenghao Xu, Xiuying Feng, Teng Gao, GufanLiu, Yaning Mao, Jiehua Lin, Xijuan Yu, Xiliang Luo*. Aptamer inducedmulticoloured Au NCs-MoS2 "switch on" fluorescence resonance energytransfer biosensor for dual color simultaneous detection of multiple tumormarkers by single wavelength excitation. Analytica Chimica Acta, 983(2017) 173-180.

18 Shenghao Xu, Teng Gao, Xiuying Feng, XiaojianFan, Gufan Liu, Yaning Mao, Xijuan Yu, Jiehua Lin, Xiliang Luo*. Near infraredfluorescent dual ligand functionalized Au NCs based multidimensional sensorarray for pattern recognition of multiple proteins and serum discrimination.Biosensors and Bioelectronics, 97 (2017) 203-207.

19 Shenghao Xu, Yufeng Wu, Xiaomei Sun, ZhuqingWang, Xiliang Luo*. A multicoloured Au NCs based cross-reactive sensor arrayfor discrimination of multiple proteins. Journal of Materials Chemistry B, 5(2017) 4207-4213.

20 Xu Hun*, Shiyu Wang, Jikuan Zhao, XiliangLuo*. A Photoelectrochemical Sensor for Ultrasensitive Dopamine Detection Basedon Single-Layer NanoMoS2 Modified Gold Electrode. Sensors and Actuators B:Chemical, 29 (2017) 83-89.

21 MinCui, Yu Wang, Mingxia Jiao, Silambarasan Jayachandran,Yumin Wu, Xiaojian Fan,Xiliang Luo*. Mixed self-assembled aptamer and newlydesigned zwitterionicpeptide as antifouling biosensing interface forelectrochemical detection ofalpha-fetoprotein. ACS Sensors, 2 (2017) 490-494.

22 Guixiang Wang,Rui Han, Xiuying Feng, Yinan Li, Jiehua Lin, Xiliang Luo*.A glassy carbonelectrode modified with poly(3,4-ethylenedioxythiophene) dopedwith nano-sizedhydroxyapatite for amperometric determination of nitrite.Microchimica Acta,Acta, 184 (2017) 1721-1727.

23 XuHun*, YanMeng, Shiyu Wang, Zhenghua Mei, Xiliang Luo*. Concatenated logic gatesbyamplified chemiluminescence of hemin/G-Quadruplex DNAzyme based on a nonlinearhybridizationchain reaction. Sensors and Actuators B: Chemical, 246 (2017)734-739.

24 Guixiang Wang,Rui Han, Xiaoli Su, Yinan Li, Guiyun Xu, Xiliang Luo*.Zwitterionic peptideanchored to conducting polymer PEDOT for the development ofantifouling andultrasensitive electrochemical DNA sensor. Biosensors andBioelectronics, 92(2017) 396-401.

25 MinCui, YuWang, Hongpei Wang, Yumin Wu, Xiliang Luo*. A Label-free ElectrochemicalDNABiosensor for Breast Cancer Marker BRCA1 based on Self-assembledAntifoulingPeptide Monolayer. Sensors and Actuators B: Chemical, 244 (2017)742-749.

26 NiHui,Xiaotian Sun, Shuyan Niu, Xiliang Luo*. PEGylated polyanilinenanofibers:antifouling and conducting biomaterial for electrochemical DNAsensing. ACSApplied Materials and Interfaces, 9 (2017) 2914-2923.

27 Xiaotian Sun,Ni Hui, Xiliang Luo*. Reagentless and label-freeimmunosensor forcarcinoembryonic antigen based on polyaniline nanowires grownon porousconducting polymer composite. Microchimica Acta, 184 (2017) 889-896.

28 Shenghao Xu,Xiuying Feng, Teng Gao, Ruizhi Wang, Yaning Mao, Jiehua Lin,Xijuan Yu, XiliangLuo*. A novel dual-functional biosensor for fluorometricdetection of inorganicpyrophosphate and pyrophosphatase activity based onglobulin stabilized goldnanoclusters. Analytica Chimica Acta, 958 (2017) 22-29.

29 JingShen,Hongyang Wang, Chunxiang Li*, Yanyan Zhao, Xijuan Yu, Xiliang Luo*.Label-freeelectrochemical aptasensor for adenosine detection based on cascadesignalamplification strategy. Biosensors and Bioelectronics, 90 (2017) 356-362.

30 JunjieWang, YuWang, Min Cui, Shenghao Xu, Xiliang Luo*. Enzymeless sensor based onPrussianBlue nanoparticles doped PEDOT for hydrogen peroxidedetermination.Microchimica Acta, 184 (2017) 483-489.

31 TaoYang*,Meijing Chen, Qianqian Kong, Xiliang Luo*, Kui Jiao. Toward DNAelectrochemicalsensing by free-standing ZnO nanosheets grown on 2D thin-layeredMoS2.Biosensors and Bioelectronics, 89 (2017) 538-544.

2016年 

32 TaoYang*, Renzhong Yu, Huanyin Chen, Ruirui Yang, Shiying Wang, Xiliang Luo*, KuiJiao*. Electrochemical preparation of thin-layered molybdenumdisulfide-poly(m-aminobenzenesulfonic acid) nanocomposite for TNT detection.Journal of Electroanalytical Chemistry, 781 (2016) 70-75. (dedicated to Prof. Hong-YuanChen on the occasion of his 80th birthday)

33 Wei Wang, Min Cui, Zhiling Song, Xiliang Luo*.An antifouling electrochemical immunosensor for carcinoembryonic antigen basedon hyaluronic acid doped conducting polymer PEDOT. RSC Advances, 6 (2016)88411-88416.

34 YanMeng, Xu Hun, Yue Zhang*, Xiliang Luo*. ssToehold-aided DNA recyclingamplification using hemin- and G-quadruplex reporter DNA on magnetic beads aslabel tags for chemiluminescent determination of riboflavin. Microchimica Acta,183 (2016) 2965-2971.

35 Shuo Liu, Yihui Ma, Ruiqiao Zhang, Xiliang Luo*.Threedimensional nanoporous conducting polymer PEDOT decorated with coppernanoparticles: electrochemical preparation and enhanced nonenzymatic glucosesensing. ChemElectroChem, , 3 (2016) 1799-1804.

36 Xiaoxiao Li, Sujuan Ye*, Xiliang Luo*. Sensitive SERS detection of miRNA via enzyme-free DNA machine signal amplification. Chemical Communications, 52 (2016) 10269-10272.

37 P. P. Lin, F. L. Chai, R. Q. Zhang, G. Y. Xu, X. J. Fan*, X. L. Luo*. Electrochemical synthesis of poly(3,4-ethylenedioxythiophene) doped with gold nanoparticles, and its application to nitrite sensing. Microchimica Acta, 183 (2016) 1235-1241.

38 Ni Hui, Fenglian Chai, Peipei Lin, Zhiling Song, Xiaotian Sun, Yinan Li, Shuyan Niu, Xiliang Luo*. Electrodeposited Conducting Polyaniline Nanowire Arrays Aligned on Carbon Nanotubes Network for High Performance Supercapacitors and Sensors. Electrochimica Acta, 199 (2016) 234-241.

39 Guiyun Xu, Shaoping Liang, Jinshi Fan, Ge Sheng, Xiliang Luo*. Amperometric sensing of nitrite using a glassy carbon electrode modified with a multilayer consisting of carboxylated nanocrystalline cellulose and poly(diallyldimethyl ammonium) ions in a PEDOT host. Microchimica Acta, 183 (2016) 2031-2037.

40 Ni Hui, Xiaotian Sun, Zhiling Song, Shuyan Niu, Xiliang Luo*. Gold nanoparticles and polyethylene glycols functionalized conducting polyaniline nanowires for Ultrasensitive and low fouling immunosensing of alpha-fetoprotein. Biosensors and Bioelectronics,86 (2016) 143-149 .

41 S. H. Xu, T. Gao, X.Y. Feng, Y. N. Mao, P. P. Liu, X. J. Yu, X. L. Luo*. Dual ligandco- functionalized fluorescent gold nanoclusters for “turn on” sensing ofglutathione in tumor cells. Journal of Materials Chemistry B,4 (2016) 1270-1275.

42 M. Cui, Z. L. Song, Y.M. Wu, B. Guo, X. J. Fan*, X. L. Luo*. A highly sensitive biosensor for tumormaker alpha fetoprotein based on poly(ethylene glycol) doped conducting polymerPEDOT. Biosensors and Bioelectronics,79 (2016) 736-741 .

43 S. H. Xu, X. L. Li, Y.N. Mao, T. Gao, X. Y. Feng, X. L. Luo*. Novel dual ligand co-functionalizedfluorescent gold nanoclusters as a versatile probe for sensitive analysis ofHg2+ and oxytetracycline. Analytical and Bioanalytical Chemistry,408 (2016) 2955-2962 .

2015年 

44 W. T. Wang, X. J. Fan, S. H. Xu, J. J. Davis*, X. L. Luo*. Low fouling label-free DNA sensor based onpolyethylene glycols decorated with gold nanoparticles for the detection ofbreast cancer biomarkers. Biosensors and Bioelectronics, 71 (2015) 51-56.

45 J. J. Wang, G. Y. Xu, W. Wang, S. H. Xu, X. L. Luo*. Enhanced Catalysis of Nitrite Oxidation with Copper-cobalt Bimetal Nanoparticles Electrodeposited on Carbon Nanotubes doped Conducting Polymer PEDOT Composite. Chemistry– An Asian Journal, 10 (2015) 1892-1897.

46 X. Hun, Y. Q. Xu, X. L. Luo*. Peptide-based biosensor for the prostate-specific antigen using magnetic particle-bound invertase and a personal glucose meter for readout. Microchimica Acta, 182 (2015) 1669-1675.

47 Z. J. Du, X. L. Luo, C. L. Weaver, X. T. Cui*. Poly(3, 4-ethylenedioxythiophene)-ionic liquid coating improves neural recording and stimulation functionality of MEAs. Journal of Materials Chemistry C, 3 (2015) 6515-6524.

48 W. Wang*, C. Chen, X. X. Li, S. Y. Wang, X. L. Luo*. A bioresponsive controlled-release bioassay based on aptamer-gated Au nanocages and its application in living cells. Chemical Communications, 51 (2015) 9109-9112.

49 Y. Q. Xu, X. Hun, F. Liu, X. L. Wen, X. L. Luo*. Aptamer biosensor for dopamine based on a gold electrode modified with carbon nanoparticles and thionine labeled gold nanoparticles as probe. Microchimica Acta, 182 (2015) 1797-1802.

50 T. Yang*, M. J. Chen, F. X. Nan, L. H. Chen, X. L. Luo*, K. Jiao. Enhanced electropolymerization of poly(xanthurenic acid)–MoS2 film for specific electrocatalytic detection of guanine and adenine. Journalof Materials Chemistry B, 3 (2015) 4884-4891.

51 Z. X. Zhang*, C. Y. Zhang, W. X. Luan, X. F. Li, Y. Liu, X. L. Luo*. Ultrasensitive and accelerated detection of ciguatoxin by capillary electrophoresis via on-line sandwich immunoassay with rotating magnetic field and nanoparticles signal enhancement. Analytica Chimica Acta, 888 (2015) 27-35.

52 N. Hui, S. Y. Wang, H. B. Xie, S. H. Xu, S. Y. Niu*, X. L. Luo*. Nickel nanoparticles modified conducting polymer composite of reduced graphene oxide doped poly(3,4-ethylenedioxythiophene) for enhanced nonenzymatic glucose sensing. Sensors and Actuators B:Chemical, 221 (2015) 606-613.

53 G. Sheng, G. Y. Xu, S. H. Xu, S. Y. Wang, X. L. Luo*. Cost-effective preparation and sensing application of conducting polymer PEDOT/ionic liquid nanocomposite with excellent electrochemical properties. RSC Advances, 5 (2015) 20741-20746.

54 X. Hun*, G. L. Xie, X. L. Luo*. Scaling up electrochemical signal with catalytic hairpin assembly coupling nanocatalyst label for DNA detection. Chemical Communications, 51 (2015) 7100-7103.

55 W. Wang*, N. Zhao, X. X. Li, J. Wan, X. L. Luo*. Isothermal amplified detection of ATP using Au nanocages capped with a DNA molecular gate and its application in cell lysates. Analyst, 140 (2015) 1672-1677.

56 M. Cui, J. D. Huang, Y. Wang, Y. M. Wu*, X. L. Luo*. Molecularly imprinted electrochemical sensorfor propyl gallate based on PtAu bimetallic nanoparticles modified graphene-carbon nanotube composites. Biosensors and Bioelectronics, 68 (2015) 563-569.

57 X. Hun, Y. Q. Xu, G. L. Xie, X. L. Luo*. Aptamer biosensor for highly sensitive and selective detection of dopamine using ubiquitous personal glucose meters. Sensors and Actuators B: Chemical, 209 (2015) 596-601.

58 S. H. Xu, P. P. Liu, Q. W. Song, L. Wang, X. L. Luo*. One-pot synthesis of biofunctional and near-infrared fluorescent gold nanodots and their application in Pb2+ sensing and tumor cell imaging. RSC Advances, 5 (2015) 3152-3156.

59 W. T. Wang, W. Wang, J. J. Davis*, X. L. Luo*. Ultrasensitive and selective voltammetric aptasensor for dopamine based on a conducting polymer nanocomposite doped with graphene oxide. Microchimica Acta,182 (2015) 1123-1129.

60 N. Hui, W. T. Wang, G. Y. Xu, X. L. Luo*. Graphene oxide doped poly(3, 4-ethylenedioxythiophene) modified with copper nanoparticles for high performance nonenzymatic sensing of glucose. Journal of Materials Chemistry B,3 (2015) 556-561.

2014年 

61 C. L. Weaver, H. Li, X. L. Luo, X. T. Cui*. A grapheme oxide/conducting polymer nanocomposite for electrochemical dopamine detection: origin of improved sensitivity and specificity. Journal of Materials Chemistry B, 2 (2014) 5209-5219.

62 J. S. Fan, W. Shao, G. Y. Xu, X. T. Cui, X. L. Luo*. Preparation and electrochemical catalytic application of nanocrystalline cellulose doped poly(3, 4-ethylenedioxythiophene) conducting polymer nanocomposites. RSC Advances, 4 (2014) 24328-24333.

63 X. L. Luo, Q. Xu, T. James, J. J. Davis*. Redox and label free array detection of protein markers in human serum. Analytical Chemistry, 86 (2014) 5553-5558.

64 X. N. Liu, X. J. Yu, X. L. Luo*. Ultrasensitive iodidedetection based on the resonance light scattering of histidine-stabilized goldnanoclusters. Microchimica Acta, 181 (2014) 1379-1384.

65 W. T. Wang, G. Y. Xu, X. T. Cui, G. Sheng, X. L. Luo*. Enhanced catalytic and dopamine sensingproperties of electrochemically reduced conducting polymer nanocomposite dopedwith pure graphene oxide. Biosensors and Bioelectronics, 58 (2014) 153-156.

66 J. Wan*, G. Yin, X. J. Ma, L. Xing, X. L. Luo*. Highly Sensitive Electrochemiluminescence Detection ofMercury (II) Ions Based on DNA-linked Luminol-Au NPs superstructure. Electroanalysis, 26 (2014) 823-830.

67 C. L. Weaver, J. M. LaRosa, X. L. Luo, X. T. Cui*. Electrically controlled drug delivery from graphene oxide nanocomposite films. ACS Nano, 8 (2014) 1834-1843.

68 G. Y. Xu, B. B. Li, X. Wang, X. L. Luo*. Electrochemicalsensor for nitrobenzene based on carbon paste electrode modified with apoly(3,4-ethylenedioxythiophene) and carbon nanotube nanocomposite. Microchimica Acta, 181 (2014) 463-469.

2013年 

69 G. Y. Xu, B. B. Li, X. T. Cui, L. Y. Lin, X. L. Luo*. Electrodeposited conducting polymer PEDOT doped with pure carbon nanotubes forthe detection of dopamine in the presence of ascorbic acid. Sensors and Actuators B: Chemical, 188 (2013) 405-410.

70 X. L. Luo, J. J. Davis. Electricalbiosensors and the label free detection of protein disease biomarkers. Chemical Society Reviews 42 (2013) 5944-5962.

71 J. Y. Huang, I. Lee, X. L. Luo, X. T. Cui, M. Yun. Shadowmasking for nanomaterial-based biosensors incorporated with a microfluidicdevice. Biomedical Microdevices, 15 (2013) 531-537.

72 X. L. Luo, M. Y. Xu, C. Freeman, T.James, J. J. Davis. Ultrasensitive label free electrical detection of insulinin neat blood serum. Analytical Chemistry, 85 (2013) 4129-4134.

73 X. L. Luo, C. L. Weaver, S. S. Tan, X. T. Cui. Pure graphene oxide doped conducting polymer nanocomposite forbio-interfacing. Journal of Materials Chemistry B, 1 (2013) 1340-1348.

74 X. Hun*, F. Liu, Z. H. Mei, L. F. Ma, Z. P. Wang*, X. L. Luo*. Signal amplified strategy based on target-induced strand release couplingcleavage of nicking endonuclease for the ultrasensitive detection of ochratoxin A. Biosensors& Bioelectronics, 39 (2013) 145-151.

75 T. Bryan, X. L. Luo, P. R. Bueno, J. J. Davis. An optimised electrochemicalbiosensor for the label-free detection of C-reactive protein in blood. Biosensors & Bioelectronics, 39 (2013) 94-98.

76 M. Y. Xu, X. L. Luo, J. J. Davis. The label free picomolar detection ofinsulin in blood serum. Biosensors & Bioelectronics, 39 (2013) 21-25.

77 G. Y. Xu, B. B. Li, X. L. Luo*. Carbon nanotube doped poly(3,4-ethylenedioxythiophene) for the electrocatalytic oxidation anddetection of hydroquinone. Sensors and Actuators B: Chemical, 176 (2013) 69-74.

2012年 

78 T. Bryan, X. L. Luo, L. Forsgren, L. A. Morozova-Roche, J. J. Davis. Therobust electrochemical detection of a Parkinson’s disease marker in whole bloodsera. Chemical Science, 3 (2012) 3468-3473.

79 X. J. Yu, Q. J. Wang, X. N. Liu, X. L. Luo*. A sensitive chemiluminescence method for thedetermination of cysteine based on silver nanoclusters. Microchimica Acta, 179 (2012) 323-328.

80 I. Lee, X. L. Luo, J. Y. Huang, X. T. Cui, M. Yun. Detection of cardiac biomarkersusing single polyaniline nanowire-based conductometric biosensors. Biosensors, 2 (2012) 205-220.

2012年以前的  

81 Y. S. Hu, J. Y. Huang, I. Lee, X. L. Luo, X. T. Cui, M. Yun. Singlemetal and conducting polymer nanowires used as chemical/biomolecular sensors.Proceedings of 10th IEEE International Conference on Nanotechnology, (2010) 708-711.

82 X. L. Luo, X. T. Cui. Sponge-like nanostructured conducting polymers for electrically controlled drug release. Electrochemistry Communications, 11 (2009) 1956-1959.

83 X. L. Luo, V. A. Pedrosa, J. Wang. Enzymatic nanolithography of polyanilinenanopatterns by usingperoxidase-modified atomic force microscopy tips. Chemistry-A European Journal, 15 (2009) 5191-5194. (Selected as Very Important Paper, VIP)

84 X. L. Luo, X. T. Cui. Electrochemicallycontrolled release based on nanoporous conducting polymers. ElectrochemistryCommunications, 11 (2009) 402-404.

85 V. A. Pedrosa, X. L. Luo, J. Burdick, J. Wang. Nanofingers basedon binary gold-polypyrrole nanowires. Small, 4 (2008) 738-741.

86 X. L. Luo, A. J. Killard, A. Morrin, M. R. Smyth. Electrochemical preparationof distinct polyaniline nanostructures by surface charge control of polystyrenenanoparticle templates. Chemical Communications, (2007) 3207-3209. 

87 X. L. Luo, A. J. Killard, M. R. Smyth. Nanocomposite andnanoporouspolyaniline conducting polymers exhibit enhanced catalysis of nitritereduction. Chemistry-AEuropean Journal, 13 (2007) 2138-2143. 

88 X. L. Luo, G. D. Vidal, A. J. Killard, A. Morrin, M. R. Smyth. Nanocauliflowers: ananostructured polyaniline-modified screen-printed electrode with aself-assembled polystyrene template and its application in an amperometricenzyme biosensor, Electroanalysis,19 (2007) 876-883.

89 X. L. Luo, A. J. Killard, A. Morrin, M. R. Smyth. In-situ electropolymerisedsilica-polyaniline core-shell structures: electrode modification and enzymebiosensor enhancement. Electrochimica Acta, 52 (2007) 1865-1870.

90 Y. Du, X. L. Luo, J. J. Xu, H. Y. Chen. A simple method to fabricate achitosan-gold nanoparticles film and its application in glucose biosensor. Bioelectrochemistry, 70 (2007)342-347.

91 X. L. Luo, A. J. Killard, M. R. Smyth. Reagentless glucose biosensor based onthe direct electrochemistry of glucose oxidase on carbon nanotube-modifiedelectrodes. Electroanalysis, 18 (2006) 1131-1134.

92 X. L. Luo, A. J. Killard, A. Morrin, M. R. Smyth. Enhancement of a conductingpolymer-based biosensor using carbon nanotube-doped polyaniline. Analytica Chimica Acta, 575 (2006) 39-44.

93 X. L. Luo, A. Morrin, A. J. Killard, M. R. Smyth. Application ofnanoparticles in electrochemical sensors and biosensors. Electroanalysis, 18 (2006) 319-326.

94 X. L. Luo, J. J. Xu, J. L.Wang, H. Y. Chen. Electrochemically depositednanocomposite of chitosan and carbon nanotubes for biosensor application. Chemical Communications, (2005) 2169-2171.

95 J. J. Xu, W. Zhao, X. L. Luo, H. Y. Chen. A sensitivebiosensor for lactate based on layer-by-layer assembling MnO2nanoparticles and lactate oxidase on ion-sensitive field-effect transistors. Chemical Communications, (2005) 792-794.

96 X. L. Luo, J. J. Xu, Q. Zhang, G. J. Yang, H. Y. Chen. Electrochemically deposited chitosan hydrogel for horseradish peroxidase immobilization throughgold nanoparticles self-assembly. Biosensors & Bioelectronics, 21 (2005) 190-196.

97 J. J. Xu, X. L. Luo, H. Y. Chen. Analytical aspects of FET-based biosensors. Frontiers in Bioscience, 10 (2005) 420-430.

98 X. L. Luo, J. J. Xu, Y. Du, H. Y. Chen. A glucose biosensor based on chitosan–glucose oxidase–gold nanoparticles biocomposite formed by one-step electrodeposition. Analytical Biochemistry, 334 (2004) 284-289.

99 X. L. Luo, J. J. Xu, W. Zhao, H. Y. Chen. A novel glucose ENFET based on the special reactivity of MnO2 nanoparticles. Biosensors & Bioelectronics, 19 (2004) 1295-1300.

100 J. J. Xu, X. L. Luo, Y. Du, H. Y. Chen. Application of MnO2 nanoparticles as an eliminator of ascorbate interference toamperometric glucose biosensors. Electrochemistry Communications, 6 (2004) 1169-1173.

101 X. L. Luo, J. J. Xu, H. Y. Chen. Biosensors based on field-effect transistors. Chinese Journal of Analytical Chemistry, 32 (2004) 1395-1400 (in Chinese).

102 X. L. Luo, J. J. Xu, W. Zhao, H. Y. Chen. Glucose biosensor based on ENFET doped with SiO2 nanoparticles. Sensors and Actuators B, 97 (2004) 249-255.

103 X. L. Luo, J. J. Xu, W. Zhao, H. Y. Chen. Ascorbic acid sensor based on ion-sensitive field-effect transistor modified with MnO2 nanoparticles. Analytica Chimica Acta, 512 (2004) 57-61.

發(fā)表中文論文:

1 熒光金納米簇的合成及其傳感成像應(yīng)用最新進(jìn)展 徐升豪; 毛亞寧; 于錫娟; 羅細(xì)亮 青島科技大學(xué)學(xué)報(bào)(自然科學(xué)版) 2015-08-15

2 場(chǎng)效應(yīng)晶體管生物傳感器 羅細(xì)亮; 徐靜娟; 陳洪淵 分析化學(xué) 2004-10-25

3 聚天青A/辣根過(guò)氧化物酶電極的制備及性能 羅細(xì)亮; 焦奎; 孫偉; 王振永 青島科技大學(xué)學(xué)報(bào)(自然科學(xué)版) 2003-02-28

4 聚天青A膜修飾電極的電化學(xué)特性及其對(duì)亞硝酸根的電催化性能 焦奎; 羅細(xì)亮; 孫偉; 王振永 分析測(cè)試學(xué)報(bào) 2002-06-25

5 電化學(xué)聚合法制備聚中性紅膜修飾電極及其應(yīng)用 焦奎; 羅細(xì)亮; 孫偉; 王振永 分析試驗(yàn)室 2002-03-28

6 辣根過(guò)氧化物酶修飾電極的研究進(jìn)展 焦奎; 羅細(xì)亮; 孫偉 青島化工學(xué)院學(xué)報(bào)(自然科學(xué)版) 2001-03-15

發(fā)表會(huì)議中文論文:

1 新型生物傳感技術(shù)的構(gòu)建及其在生化分析中的應(yīng)用 混旭; 徐亞瓊; 羅細(xì)亮 中國(guó)分析測(cè)試協(xié)會(huì)科學(xué)技術(shù)獎(jiǎng)發(fā)展回顧 中國(guó)會(huì)議 2015-07-01

榮譽(yù)獎(jiǎng)勵(lì):


1、2007年獲全國(guó)百篇優(yōu)秀博士學(xué)位論文提名獎(jiǎng)。

2、2011年獲歐盟瑪麗居里學(xué)者獎(jiǎng)(Marie Curie Fellowship)。

3、2014年獲國(guó)家優(yōu)秀青年科學(xué)基金和山東省杰出青年基金資助。

 

媒體報(bào)道:


青春助力科研夢(mèng)

————記青島科技大學(xué)泰山學(xué)者特聘教授羅細(xì)亮

2014-12-01

2014年8月,國(guó)家自然科學(xué)基金委員會(huì)公布了2014年度國(guó)家優(yōu)秀青年科學(xué)基金資助項(xiàng)目名單,青島科技大學(xué)化學(xué)與分子工程學(xué)院副院長(zhǎng)羅細(xì)亮榜上有名,他也是青島科技大學(xué)該項(xiàng)目今年唯一獲得者。

青島科技大學(xué)化學(xué)與分子工程學(xué)院的前身是1988年成立的應(yīng)化系。2001年3月更名為化學(xué)與分子工程學(xué)院,經(jīng)過(guò)20多年的建設(shè),現(xiàn)已形成以應(yīng)用化學(xué)學(xué)科為支撐,多學(xué)科協(xié)調(diào)發(fā)展的辦學(xué)特色,初步發(fā)展成為以理工為主的教學(xué)研究型學(xué)院。羅細(xì)亮這次獲得資助也意義非凡,不僅展示了青島科技大學(xué)在化學(xué)研究方面的實(shí)力,而且給青島科技大學(xué)帶來(lái)了一股青春助力科研的新浪潮。

開(kāi)啟電分析化學(xué)之路

1995年,羅細(xì)亮高考失利,面對(duì)高出分?jǐn)?shù)線僅一分的高考成績(jī),他很是糾結(jié)。一心向往的上海交通大學(xué)肯定是無(wú)望了,擺在他面前的,只有兩條路:要么復(fù)讀,要么去青島化工學(xué)院(現(xiàn)為青島科技大學(xué))應(yīng)用化學(xué)系報(bào)到。思量再三,羅細(xì)亮選擇了后者,進(jìn)入算不上一級(jí)學(xué)府的青島化工學(xué)院。這樣的決定對(duì)于當(dāng)時(shí)那些建議羅細(xì)亮復(fù)讀的人來(lái)說(shuō)也許不是最好的選擇,但是對(duì)于如今的羅細(xì)亮來(lái)說(shuō)卻是他當(dāng)年最正確的選擇。

青島化工學(xué)院是最早有碩士點(diǎn)的高校之一,可以繼續(xù)深造。從大一報(bào)到之日起,羅細(xì)亮的目標(biāo)就是深造,他要靠自己的力量改變?nèi)松壽E。

學(xué)校并沒(méi)有讓羅細(xì)亮失望,他到校后發(fā)現(xiàn),學(xué)校里的教授們教學(xué)水平很高,很重視學(xué)生的動(dòng)手能力,實(shí)驗(yàn)課時(shí)十分充足。不僅如此,青島化工學(xué)院的老師們對(duì)學(xué)生們一向要求嚴(yán)格,羅細(xì)亮還記得,當(dāng)時(shí)他的畢業(yè)設(shè)計(jì)把實(shí)驗(yàn)做壞了,為此挨了老師的不少批評(píng),直到他把實(shí)驗(yàn)做得完美,才過(guò)了老師的那一關(guān)。“正是因?yàn)槲以趯W(xué)校時(shí)打下了扎實(shí)的基礎(chǔ),所以日后,當(dāng)我在南京大學(xué)讀博士及國(guó)外做博士后時(shí),我的動(dòng)手能力比其他名校來(lái)的學(xué)生甚至還要強(qiáng)!绷_細(xì)亮回憶道。

大學(xué)四年的學(xué)習(xí)生活很快就過(guò)去了,羅細(xì)亮不忘初衷,決定考研,這次沒(méi)有猶豫,沒(méi)有懷疑,他直接考取了本校研究生,跟隨當(dāng)時(shí)的校長(zhǎng)、知名的學(xué)者焦奎教授,開(kāi)始從事電分析化學(xué)的研究。2002年,碩士研究生學(xué)習(xí)結(jié)束后,他聽(tīng)取導(dǎo)師的建議考取了南京大學(xué)攻讀博士,師從著名的分析化學(xué)家陳洪淵教授。從此,羅細(xì)亮牢牢的把握著自己的人生軌跡。

接下來(lái)的2005~2011年間,羅細(xì)亮先后在愛(ài)爾蘭都柏林城市大學(xué)國(guó)家傳感器研究中心、美國(guó)亞利桑那州立大學(xué)生物設(shè)計(jì)研究院及匹茲堡大學(xué)生物工程系從事博士后研究。2011年2月獲歐盟瑪麗居里學(xué)者,同年3月被美國(guó)匹茲堡大學(xué)聘為研究助理教授。

正當(dāng)羅細(xì)亮在國(guó)外的發(fā)展順風(fēng)順?biāo)臅r(shí)候,他接到了母校青島科技大學(xué)拋來(lái)的橄欖枝,希望他回母校工作,并申請(qǐng)山東省的泰山學(xué)者特聘教授。飲水思源,不可忘本,羅細(xì)亮當(dāng)機(jī)立斷,放棄了即將到手的綠卡,辭去了國(guó)外的工作,帶著妻子和一雙兒女,毅然回到了祖國(guó),回到了青島科技大學(xué)。

享受科研之趣

科研路上總是層巒疊嶂,沒(méi)有盡頭。作為科研人,如果沒(méi)有點(diǎn)執(zhí)著的勁頭,就意味著終有一天你會(huì)在某一個(gè)山頭前停滯不前。而對(duì)羅細(xì)亮來(lái)說(shuō),他熱愛(ài)科研,享受科研的樂(lè)趣,在科研的路上,執(zhí)著地翻過(guò)一坐又一坐高山。

在南京大學(xué)讀博士期間,羅細(xì)亮在導(dǎo)師陳洪淵院士和徐靜娟教授的指導(dǎo)下,開(kāi)創(chuàng)了利用電沉積殼聚糖固定生物識(shí)別分子制備生物傳感器的方法。

在制備生物傳感器的過(guò)程中,最關(guān)鍵的步驟是生物識(shí)別分子的固定。實(shí)現(xiàn)生物識(shí)別分子簡(jiǎn)便、有效的固定,而又同時(shí)盡可能地保持其活性,一直是世界上眾多科學(xué)家孜孜以求的目標(biāo)。利用生物聚合物殼聚糖的電沉積特性和良好的生物相容性,羅細(xì)亮率先提出了通過(guò)電化學(xué)沉積殼聚糖,用于同時(shí)或依次固定納米材料和生物識(shí)別分子制備生物傳感器的方法。通過(guò)這種方法制備生物傳感器,簡(jiǎn)單有效且條件溫和,普遍能夠得到理想的結(jié)果。該方法提出后在國(guó)際上廣受關(guān)注,目前已經(jīng)被中、美、日和歐洲等30多個(gè)國(guó)家和地區(qū)的科學(xué)家們所廣泛借鑒和采用,成為了比較有代表性的生物分子固定化和生物傳感器制備方法之一;谶@一研究成果發(fā)表的3篇主要研究論文至今已被他人引用超過(guò)500次。尤其值得指出的是,美國(guó)一流大學(xué)馬里蘭大學(xué)Gregory Payne教授領(lǐng)導(dǎo)的研究組,在他們發(fā)表的20余篇高水平論文里,高度評(píng)價(jià)了羅細(xì)亮的研究工作,明確表示羅細(xì)亮的研究工作是這方面最早的相關(guān)報(bào)道。2007年,羅細(xì)亮的博士學(xué)位論文在被相繼評(píng)為南京大學(xué)優(yōu)秀博士學(xué)位論文和江蘇省優(yōu)秀博士學(xué)位論文之后,又獲得全國(guó)百篇優(yōu)秀博士學(xué)位論文提名獎(jiǎng)。

科研永不止步

羅細(xì)亮并沒(méi)有就此止步,為了進(jìn)一步提升自己的科研水平,2005年,羅細(xì)亮申請(qǐng)了國(guó)外的博士后,先后赴愛(ài)爾蘭都柏林城市大學(xué)和美國(guó)亞利桑那州立大學(xué),跟隨愛(ài)爾蘭皇家科學(xué)院院士Malcolm Smyth教授和世界著名分析化學(xué)家Joseph Wang教授,在分析化學(xué)領(lǐng)域深造。2008年,考慮到生物化學(xué)與分析化學(xué)的結(jié)合日益緊密,而自己又缺乏生物的研究背景,為了拓展自己的研究方向,羅細(xì)亮又申請(qǐng)去了美國(guó)匹茲堡大學(xué)生物工程系,使自己的研究從化學(xué)和材料拓展到生物領(lǐng)域,有利于實(shí)現(xiàn)不同學(xué)科的相互交叉。

博士后研究期間,羅細(xì)亮在化學(xué)、材料和生物這幾個(gè)學(xué)科的交叉領(lǐng)域,開(kāi)展了一系列研究,并取得了豐碩的研究成果。其中比較突出的貢獻(xiàn)是,構(gòu)建了新穎的藥物釋放體系,在國(guó)際上率先實(shí)現(xiàn)了利用碳納米管內(nèi)腔來(lái)儲(chǔ)存和可控釋放藥物。

碳納米管是目前國(guó)際上研究的熱點(diǎn),由于它特殊的物理化學(xué)性質(zhì),其在藥物可控遞送和釋放方面的應(yīng)用研究廣受關(guān)注。理論上,碳納米管的內(nèi)腔是儲(chǔ)存藥物的理想納米膠囊,但是如何實(shí)現(xiàn)藥物在碳納米管內(nèi)的儲(chǔ)存和釋放,一直是個(gè)沒(méi)有解決的難題。羅細(xì)亮的研究實(shí)現(xiàn)了利用碳納米管的內(nèi)管來(lái)裝載藥物。儲(chǔ)存的藥物,通過(guò)簡(jiǎn)便的電化學(xué)刺激就能夠以可控的方式釋放出來(lái),而且進(jìn)一步的細(xì)胞實(shí)驗(yàn)證實(shí)由此釋放出來(lái)的藥物仍然保持有藥物活性。這是首次報(bào)道利用碳納米管的內(nèi)管來(lái)裝載并可控釋放保持有活性的藥物,研究結(jié)果發(fā)表在本領(lǐng)域頂尖期刊生物材料上,并被美國(guó)能源部的能源技術(shù)國(guó)家實(shí)驗(yàn)室作為新聞報(bào)道,認(rèn)為這項(xiàng)技術(shù)將有效促進(jìn)神經(jīng)控制可植入裝置的發(fā)展。

羅細(xì)亮還發(fā)展了新穎的可控合成單根導(dǎo)電聚合物納米線的方法,并研制了超靈敏的單根納米線生物傳感器。

利用單根納米線來(lái)構(gòu)建具有優(yōu)異性能的納米裝置或器件,是目前世界上眾多科學(xué)家所努力的前沿方向,但是單根納米線在可控合成尤其是操控上的困難極大阻礙了這方面研究的進(jìn)展。羅細(xì)亮制備了具有高度選擇性和靈敏度的納米生物傳感器,其檢測(cè)限低于1皮克每毫升,遠(yuǎn)遠(yuǎn)優(yōu)越于其他類似的生物傳感器。由于該傳感器從合成到檢測(cè)都采用可控的電化學(xué)技術(shù),非常適合進(jìn)一步研制超靈敏、集成化的納米傳感系統(tǒng)。

2011年,對(duì)于35歲的羅細(xì)亮來(lái)說(shuō),是非常特別的一年。當(dāng)年2月,羅細(xì)亮獲得歐盟第七框架計(jì)劃國(guó)際合作項(xiàng)目的資助,成為英國(guó)牛津大學(xué)化學(xué)系的高級(jí)瑪麗居里學(xué)者;3月,羅細(xì)亮被美國(guó)匹茲堡大學(xué)聘為研究助理教授,進(jìn)入大學(xué)的教員系列;8月,羅細(xì)亮被山東省人民政府選聘為泰山學(xué)者特聘教授。不同的機(jī)遇,在短時(shí)間內(nèi)集中出現(xiàn),通常會(huì)讓人難以取舍。然而羅細(xì)亮沒(méi)有過(guò)多的猶豫,他選擇了回國(guó)發(fā)展。要為祖國(guó)貢獻(xiàn)自己的微薄力量,是他很早就形成了的一個(gè)樸素的觀念。

2011年9月,羅細(xì)亮離開(kāi)美國(guó)匹茲堡大學(xué),回到了母校青島科技大學(xué)。環(huán)境和條件的改變,不可避免會(huì)影響到自己的科研,為了把不利影響降到最小,羅細(xì)亮付出了幾倍于別人的辛勞。他克服種種困難,從零開(kāi)始組建自己的科研團(tuán)隊(duì),建設(shè)自己的實(shí)驗(yàn)室,培養(yǎng)自己的研究生。同時(shí),利用與國(guó)外的聯(lián)系,羅細(xì)亮積極開(kāi)展對(duì)外的合作交流,及時(shí)掌握國(guó)內(nèi)外的研究動(dòng)態(tài);貒(guó)后的3年時(shí)間里,羅細(xì)亮基本上沒(méi)有完整的節(jié)假日。3年過(guò)去,羅細(xì)亮自己的實(shí)驗(yàn)室和研究團(tuán)隊(duì)已經(jīng)初具規(guī)模,逐步地發(fā)展壯大,并在生化分析領(lǐng)域開(kāi)展了比較有影響的研究工作。尤其重要的是,羅細(xì)亮首次構(gòu)建了基于電化學(xué)阻抗技術(shù)的抗污染生物傳感器,推進(jìn)了可在復(fù)雜生物體系中直接測(cè)定的實(shí)用型傳感器件的發(fā)展。

在實(shí)際生物樣品中以免標(biāo)記的方法直接檢測(cè)蛋白質(zhì),一直是國(guó)際上的研究熱點(diǎn),但是由于生物樣品中其它成分的污染和干擾,多數(shù)生物傳感器只能在緩沖溶液或高倍數(shù)稀釋的樣品中使用。羅細(xì)亮研發(fā)的生物傳感器,既可以方便地固定生物識(shí)別分子,又可以有效防止蛋白質(zhì)的非特異性吸附。結(jié)合非法拉第型電化學(xué)阻抗檢測(cè)技術(shù)的高靈敏度,該生物傳感器可以對(duì)血液中的胰島素進(jìn)行直接檢測(cè)而基本上不受污染和干擾。該生物傳感器的檢測(cè)結(jié)果與醫(yī)院的報(bào)告結(jié)果偏差相對(duì)很小,在疾病標(biāo)志物的臨床檢測(cè)等方面顯示出極大的優(yōu)越性。相關(guān)研究結(jié)果發(fā)表在分析化學(xué)領(lǐng)域的權(quán)威期刊美國(guó)分析化學(xué)上。羅細(xì)亮的這一抗污染生物傳感器方面的研究結(jié)果,發(fā)表后很快就受到美國(guó)著名的分析化學(xué)家James F. Rusling教授的關(guān)注,他在為美國(guó)分析化學(xué)撰寫(xiě)的前瞻性評(píng)述論文中認(rèn)為,該成果有望解決眾多生物傳感器所面臨的非特異性吸附的難題。

作為一名年輕的科研工作者,羅細(xì)亮的思維是開(kāi)放的,他從不固步自封,十分樂(lè)于與同行們交流;谠谘邪l(fā)納米生物復(fù)合材料以及生物傳感器件方面一系列出色的工作,羅細(xì)亮應(yīng)邀為世界上第一部納米科技百科全書(shū)撰寫(xiě)專章一章:納米粒子在電化學(xué)生物傳感器中的應(yīng)用。2013年,應(yīng)化學(xué)領(lǐng)域的頂級(jí)綜述期刊英國(guó)皇家化學(xué)會(huì)《化學(xué)會(huì)評(píng)論》的邀請(qǐng),羅細(xì)亮結(jié)合自己的研究工作撰寫(xiě)了相關(guān)的綜述論文,總結(jié)并展望了電化學(xué)生物傳感器和疾病標(biāo)志物免標(biāo)記檢測(cè)這一研究領(lǐng)域,受到國(guó)際同行的極大關(guān)注。

一路走來(lái),只有羅細(xì)亮自己清楚,他在科研的道路上付出了怎樣的努力。羅細(xì)亮在青島科技大學(xué)度過(guò)了七年的時(shí)光,七年,是一個(gè)人脫胎換骨的輪回,如今他又回到這里,并將在這里度過(guò)一個(gè)又一個(gè)七年,繼續(xù)演繹自己一個(gè)又一個(gè)新的人生。

來(lái)源:《科學(xué)中國(guó)人》2014年第21期

 

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