Paper-based biodetection using luminescent nanoparticles

文献信息

发布日期 2016-04-13
DOI 10.1039/C6AN00129G
影响因子 4.616
作者

M. Omair Noor, Ulrich J. Krull


查看原文

摘要

Point-of-care and in-field technologies for rapid, sensitive and selective detection of molecular biomarkers have attracted much interest. Rugged bioassay technology capable of fast detection of markers for pathogens and genetic diseases would in particular impact the quality of health care in the developing world, but would also make possible more extensive screening in developed countries to tackle problems such as those associated with water and food quality, and tracking of infectious organisms in hospitals and clinics. Literature trends indicate an increasing interest in the use of nanomaterials, and in particular luminescent nanoparticles, for assay development. These materials may offer attributes for development of assays and sensors that could achieve improvements in analytical figures of merit, and provide practical advantages in sensitivity and stability. There is opportunity for cost-efficiency and technical simplicity by implementation of luminescent nanomaterials as the basis for transduction technology, when combined with the use of paper substrates, and the ubiquitous availability of cell phone cameras and associated infrastructure for optical detection and transmission of results. Luminescent nanoparticles have been described for a broad range of bioanalytical targets including small molecules, oligonucleotides, peptides, proteins, saccharides and whole cells (e.g., cancer diagnostics). The luminescent nanomaterials that are described herein for paper-based bioassays include metal nanoparticles, quantum dots and lanthanide-doped nanocrystals. These nanomaterials often have broad and strong absorption and narrow emission bands that improve opportunity for multiplexed analysis, and can be designed to provide emission at wavelengths that are efficiently processed by conventional digital cameras. Luminescent nanoparticles can be embedded in paper substrates that are designed to direct fluid flow, and the resulting combination of technologies can offer competitive analytical performance at relatively low cost.

相关文献

Transparent supercapacitors of 2 nm ruthenium oxide nanoparticles decorated on a 3D nitrogen-doped graphene aerogel

Phansiri Suktha, Nutthaphon Phattharasupakun, Montree Sawangphruk

2018-06-11 Paper

DOI: 10.1039/C8SE00177D

A vitamin C fuel cell with a non-bonded cathodic interface

Ravikumar Thimmappa, Zahid Manzoor Bhat, Shahid Pottachola Shafi, Harish Makri Nimbegondi Kotresh, Alagar Raja Kottaichamy, Kallam Ramareddy Venugopala Reddy, Musthafa Ottakam Thotiyl

2018-06-19 Paper

DOI: 10.1039/C8SE00221E

A low cost ultra-microporous carbon scaffold with confined chain-like sulfur molecules as a superior cathode for lithium–sulfur batteries

Junkai Han, Shuangwen Li, Peng Long, Chen Cao, Yu Cao, Weizhe Wang

2018-05-22 Paper

DOI: 10.1039/C8SE00185E

Inside front cover

Cover

DOI: 10.1039/C7SE90019H

Contents list

Front/Back Matter

DOI: 10.1039/C8SE90068J

Front cover

Cover

DOI: 10.1039/C9SE90001B

Effect of single metal doping on the thermoelectric properties of SnTe

Masoud Aminzare, Yu-Chih Tseng, Anbalagan Ramakrishnan, Kuei-Hsien Chen, Yurij Mozharivskyj

2018-11-06 Paper

DOI: 10.1039/C8SE00385H

Inside front cover

Cover

DOI: 10.1039/C8SE90056F

An investigation of Cu–Re–ZnO catalysts for the hydrogenolysis of glycerol under continuous flow conditions

Mzamo L. Shozi, Venkata D. B. C. Dasireddy, Sooboo Singh, Pheladi Mohlala, David J. Morgan, Sarwat Iqbal, Holger B. Friedrich

2017-06-28 Paper

DOI: 10.1039/C7SE00199A

Inside front cover

Cover

DOI: 10.1039/C9SE90002K

您可能还喜欢

化合物问答

什么是2-氨基戊烷(CAS号:63493-28-7)?

2-氨基戊烷,又名pentan-2-amine,是一种有机化合物,分子式为C5H11NH2。它是一种无色透明液体,有氨味。该化合物在工业和研究中有一定的应用。

63493-28-7pentan-2-amine
化合物问答

反式-4-[4-[[[5-[(3,4-二氟苯基)氨基]-1,3,4-恶二唑-2-基]羰基]氨基]苯基]环己烷乙酸(CAS号:892489-52-0)的物理化学性质是什么?

该化合物为白色固体,分子量为552.31 g/mol。它在水中溶解度较低,在有机溶剂如乙腈、乙酸乙酯中有较好的溶解性。该化合物具有较高的化学稳定性,对酸和碱具有...

892489-52-0Trans-4-[4-[[[5-[(3,...
化合物问答

如何处理含有Pyrotinib dimaleate(CAS号:1397922-61-0)的废料?

处理含有Pyrotinib dimaleate 的废料时,应遵循当地的法规要求。首先,收集废料并进行分类,确保没有与其他化学品混合。然后,采取适当的物理和化学处...

1397922-61-0(2E)-N-(4-{[3-Chloro...
化合物问答

在合成中是否有4-(5-5-乙基-1,2,4-噁二唑-3-基)苯甲酸乙酯(CAS号:1166756-79-1)的替代品?

在合成过程中,可以考虑使用其他结构类似的化合物作为替代品,例如苯甲酸酯类化合物,如2-乙基-5-甲基噁二唑基苯甲酸乙酯等。这些替代品可能具有相似的化学性质,但在...

1166756-79-1Ethyl 4-(5-ethyl-1,2...
化合物问答

如何处理含有1-((叔丁氧基羰基)氨基)环丁烷甲酸甲酯(CAS号:880166-10-9)的废料?

处理含有该化合物的废液时,应先确保其完全反应并转化为无害物质。对于未反应的化合物,建议采用中和处理后进行蒸馏回收,剩余物可使用化学氧化法或焚烧法进行无害化处理。...

880166-10-9Methyl 1-({[(2-methy...
化合物问答

2-({[3,5-二(三氟甲基)苯基]磺酰基}氨基)-4-(甲基硫代)丁酸甲酯(CAS号:175202-21-8)的市场或研究趋势如何?

目前该化合物主要应用于药物合成领域,尤其在开发新型抗癌药物方面具有潜在应用。随着制药行业的持续发展,对于高效、低毒的合成中间体需求增加,预计该化合物的研究和应用...

175202-21-8Methyl N-{[3,5-bis(t...
化合物问答

N,N-乙烯双(碘乙酰胺)(CAS号:7250-43-3)的物理化学性质是什么?

N,N-乙烯双(碘乙酰胺)是一种白色或类白色固体,易溶于乙醇、丙酮等有机溶剂,但在水中溶解度较低。该化合物具有较高的反应活性,可以与其他含有活性氢的化合物发生酰...

7250-43-3N,N'-1,2-Ethanediylb...
化合物问答

7-Fluoro-1H-spiro[furo[3,4-c]pyridine-3,4'-piperidine](CAS号:1283090-73-2)通常如何合成?

该化合物可以通过环合反应合成,首先合成吡啶和哌啶的衍生物,然后在合适的条件下进行环合反应得到目标化合物。常用的催化剂包括某些金属盐类,产率一般在70%-90%之...

1283090-73-27-Fluoro-1H-spiro[fu...
化合物问答

处理3-乙酰滇乌碱(CAS号:80787-51-5)时应注意哪些实验室安全事项?

在处理3-乙酰滇乌碱时,应穿戴适当的个人防护装备(PPE),如实验服、手套(丁腈手套或PVC手套)、护目镜和口罩。实验应在通风橱中进行,以减少吸入或皮肤接触的风...

80787-51-54-Methylaconitane-1,...
化合物问答

如何储存2-溴-5-硝基-4-羧酸(CAS号:1053655-82-5)?

2-溴-5-硝基-4-羧酸应存放在阴凉、干燥、通风良好的地方,远离火源和热源。避免与还原剂、碱性物质接触。储存容器应密封,防止吸湿。

1053655-82-52-Bromo-5-nitropyrid...

来源期刊

Analyst

Analyst
CiteScore: 7.8
自引率: 5.6%
年发文量: 653

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.

推荐供应商

免责声明
本页面提供的学术期刊信息仅供参考和研究使用。我们与任何期刊出版商均无关联,也不处理投稿事宜。如有投稿相关咨询,请直接联系相关期刊出版商。
如发现页面信息有误,请发送邮件至 support@chemtradehub.com 联系我们。我们将及时核实并处理您的问题。