Enhanced DNA detection using a multiple pulse pumping scheme with time-gating (MPPTG)

Literature Information

Publication Date 2018-05-09
DOI 10.1039/C8AN00136G
Impact Factor 4.616
Authors

Joseph D. Kimball, Badri Maliwal, Sangram L. Raut, Hung Doan, Zhangatay Nurekeyev, Ignacy Gryczynski, Zygmunt Gryczynski


View Original

Abstract

Fluorescence signal enhancement induced by the binding of intercalators to DNA has been broadly utilized in various DNA detection methods. In most instances the increase in fluorescence intensity is associated with a concomitant increase of fluorescence lifetime. This increase of the fluorescence lifetime presents an additional opportunity to increase detection sensitivity. In this paper, we present a new approach to significantly enhance the sensitivity in detecting minute DNA concentrations. The approach is based on simultaneous use of time-gated detection and multi-pulse pumping. By using a calibrated burst of short pulses we greatly enhance the contribution of long-lived fluorescence species, thus enabling easy time-gated detection. Using a classic DNA intercalator – Ethidium Bromide (EtBr) – as an example with our novel multi-pulse pumping and time-gated detection technique, we were able to increase detection sensitivity over 70-fold with only 3 pulse excitation. This approach is generic and can be used with any analytical probe (exhibiting about 10 times change in lifetime) that shows an increase in fluorescence signal and fluorescence lifetime upon binding to a target.

Related Literature

Novel organic semiconductors based on 2-amino-anthracene: Synthesis, charge transport and photo-conductive properties

K. Kondratenko, I. Carlescu, P.-E. Danjou, Y. Boussoualem, A. Simion, B. Duponchel, J. F. Blach, C. Legrand, N. Hurduc, A. Daoudi

2021-05-25 Paper

DOI: 10.1039/D1CP01427G

Unravelling the structures of sodiated β-cyclodextrin and its fragments

Jordan M. Rabus, Robert P. Pellegrinelli, Ali Hassan Abi Khodr, Benjamin J. Bythell, Thomas R. Rizzo, Eduardo Carrascosa

2021-06-07 Paper

DOI: 10.1039/D1CP01058A

A single isomer rotary switch demonstrating anti-Kasha behaviour: Does acidity function matter?

Ivan Angelov, Liudmil Antonov

2021-05-24 Paper

DOI: 10.1039/D1CP01378E

Imidazolium–fulleride ionic liquids – a DFT prediction

2021-08-20 Paper

DOI: 10.1039/D1CP03455C

Inside front cover

2021-06-23 Cover

DOI: 10.1039/D1CP90129J

Theoretical study of the mechanism of the solvent dependency of ESIPT in HBT

Keiji Naka

2021-07-19 Paper

DOI: 10.1039/D0CP06604D

Bayesian phase difference estimation: a general quantum algorithm for the direct calculation of energy gaps

Chikako Sakai, Kazuo Toyota, Kazunobu Sato, Daisuke Shiomi

2021-09-02 Paper

DOI: 10.1039/D1CP03156B

You might also like

Compound Q&A

What is the market or research trend for N-(4-Methoxybenzyl)-2-pyridinamine (CAS: 52818-63-0)?

N-(4-Methoxybenzyl)-2-pyridinamine (CAS: 52818-63-0) is increasingly being used ...

52818-63-0N-(4-Methoxybenzyl)-...
Compound Q&A

What precautions should be taken when handling Ethyl 4-(2-chlorophenyl)-1,3-thiazole-2-carboxylate (CAS: 1050507-06-6)?

When handling Ethyl 4-(2-chlorophenyl)-1,3-thiazole-2-carboxylate, appropriate p...

1050507-06-6Ethyl 4-(2-chlorophe...
Compound Q&A

What regulatory guidelines apply to diethyldiselane (CAS: 628-39-7)?

Diethyldiselane (CAS: 628-39-7) is classified under the Globally Harmonized Syst...

628-39-7Diethyldiselane
Compound Q&A

What is the market or research trend for oxocopper (CAS: 12053-18-8)?

The market for oxocopper (CAS: 12053-18-8) is primarily driven by its use in cat...

12053-18-8oxocopper; oxo-(oxoc...
Compound Q&A

What is the market or research trend for 5-{[(2-Methyl-2-propanyl)oxy]carbonyl}-5-azaspiro[2.4]heptane-7-carboxylic acid?

The market for 5-{[(2-Methyl-2-propanyl)oxy]carbonyl}-5-azaspiro[2.4]heptane-7-c...

1268519-54-55-{[(2-Methyl-2-prop...
Compound Q&A

What is 2-(1-Pyrrolidinyl)-4-pyridinamine (CAS: 35981-63-6)?

2-(1-Pyrrolidinyl)-4-pyridinamine is a chemical compound with the CAS number 359...

35981-63-62-(1-Pyrrolidinyl)-4...
Compound Q&A

What are the physical and chemical properties of 2-(3-Pyridinyl)-1-azabicyclo[2.2.2]octane (CAS: 91556-75-1)?

2-(3-Pyridinyl)-1-azabicyclo[2.2.2]octane (CAS: 91556-75-1) is a crystalline sol...

91556-75-12-(3-Pyridinyl)-1-az...
Compound Q&A

How is (S)-Alpha-allyl-proline hydrochloride (CAS: 129704-91-2) typically synthesized?

(S)-Alpha-allyl-proline hydrochloride is usually synthesized via a Wittig reacti...

129704-91-2(S)-Alpha-allyl-prol...
Compound Q&A

What is 3-Methyl-1,2-oxazole-5-carboxylic acid (CAS: 4857-42-5)?

3-Methyl-1,2-oxazole-5-carboxylic acid (CAS: 4857-42-5) is an organic compound w...

4857-42-53-Methyl-1,2-oxazole...
Compound Q&A

How is Lys-SMCC-DM1 (CAS: 1281816-04-3) typically synthesized?

Lys-SMCC-DM1 is synthesized via a multi-step process involving the coupling of S...

1281816-04-3Lys-SMCC-DM1

Source Journal

Analyst

Analyst
CiteScore: 7.8
Self-citation Rate: 5.6%
Articles per Year: 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.

Recommended Compounds

Recommended Suppliers

Disclaimer
This page provides academic journal information for reference and research purposes only. We are not affiliated with any journal publishers and do not handle publication submissions. For publication-related inquiries, please contact the respective journal publishers directly.
If you notice any inaccuracies in the information displayed, please contact us at support@chemtradehub.com. We will promptly review and address your concerns.