1
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Bialy RM, Ali MM, Li Y, Brennan JD. Protein-Mediated Suppression of Rolling Circle Amplification for Biosensing with an Aptamer-Containing DNA Primer. Chemistry 2020; 26:5085-5092. [PMID: 32096262 DOI: 10.1002/chem.202000245] [Citation(s) in RCA: 22] [Impact Index Per Article: 5.5] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/15/2020] [Revised: 02/21/2020] [Indexed: 12/22/2022]
Abstract
We report a method to detect proteins via suppression of rolling circle amplification (RCA) by using an appropriate aptamer as the linear primer (denoted as an aptaprimer) to initiate RCA. In the absence of a protein target, the aptaprimer is free to initiate RCA, which can produce long DNA products that are detected via binding of a fluorescent intercalating dye. Introduction of a target causes the primer region within the aptamer to become unavailable for binding to the circular template, inhibiting RCA. Using SYBR Gold or QuantiFluor dyes as fluorescent probes to bind to the RCA reaction product, it is possible to produce a generic protein-modulated RCA assay system that does not require fluorophore- or biotin-modified DNA species, substantially reducing complexity and cost of reagents. Based on this modulation of RCA, we demonstrate the ability to produce both solution and paper-based assays for rapid and quantitative detection of proteins including platelet derived growth factor and thrombin.
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Affiliation(s)
- Roger M Bialy
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4O3, Canada
| | - Monsur M Ali
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4O3, Canada
| | - Yingfu Li
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4O3, Canada.,Department of Biochemistry and Biomedical Sciences, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada
| | - John D Brennan
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4O3, Canada
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2
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Ali MM, Wolfe M, Tram K, Gu J, Filipe CDM, Li Y, Brennan JD. A DNAzyme‐Based Colorimetric Paper Sensor for
Helicobacter pylori. Angew Chem Int Ed Engl 2019; 58:9907-9911. [PMID: 31095864 DOI: 10.1002/anie.201901873] [Citation(s) in RCA: 89] [Impact Index Per Article: 17.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/12/2019] [Revised: 04/18/2019] [Indexed: 01/25/2023]
Affiliation(s)
- M. Monsur Ali
- Biointerfaces InstituteMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Michael Wolfe
- Biointerfaces InstituteMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Kha Tram
- InnovoGene Biosciences Inc. 919 Fraser Drive Burlington ON L7L 4X8 Canada
| | - Jimmy Gu
- InnovoGene Biosciences Inc. 919 Fraser Drive Burlington ON L7L 4X8 Canada
- Department of Biochemistry and Biomedical SciencesMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Carlos D. M. Filipe
- Department of Chemical EngineeringMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Yingfu Li
- InnovoGene Biosciences Inc. 919 Fraser Drive Burlington ON L7L 4X8 Canada
- Department of Biochemistry and Biomedical SciencesMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - John D. Brennan
- Biointerfaces InstituteMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
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3
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Ali MM, Wolfe M, Tram K, Gu J, Filipe CDM, Li Y, Brennan JD. A DNAzyme‐Based Colorimetric Paper Sensor forHelicobacter pylori. Angew Chem Int Ed Engl 2019. [DOI: 10.1002/ange.201901873] [Citation(s) in RCA: 17] [Impact Index Per Article: 3.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/17/2022]
Affiliation(s)
- M. Monsur Ali
- Biointerfaces InstituteMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Michael Wolfe
- Biointerfaces InstituteMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Kha Tram
- InnovoGene Biosciences Inc. 919 Fraser Drive Burlington ON L7L 4X8 Canada
| | - Jimmy Gu
- InnovoGene Biosciences Inc. 919 Fraser Drive Burlington ON L7L 4X8 Canada
- Department of Biochemistry and Biomedical SciencesMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Carlos D. M. Filipe
- Department of Chemical EngineeringMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Yingfu Li
- InnovoGene Biosciences Inc. 919 Fraser Drive Burlington ON L7L 4X8 Canada
- Department of Biochemistry and Biomedical SciencesMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - John D. Brennan
- Biointerfaces InstituteMcMaster University 1280 Main Street West Hamilton ON L8S 4K1 Canada
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4
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Ali MM, Slepenkin A, Peterson E, Zhao W. A Simple DNAzyme-Based Fluorescent Assay for Klebsiella pneumoniae. Chembiochem 2019; 20:906-910. [PMID: 30521678 PMCID: PMC6692177 DOI: 10.1002/cbic.201800701] [Citation(s) in RCA: 35] [Impact Index Per Article: 7.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/14/2018] [Indexed: 11/09/2022]
Abstract
Pathogenic bacteria pose a serious threat to public health, and the rapid and cost-effective detection of such bacteria remains a major challenge. Herein, we present a DNAzyme-based fluorescent paper sensor for Klebsiella pneumoniae. The DNAzyme was generated by an in vitro selection technique to cleave a fluorogenic DNA-RNA chimeric substrate in the presence of K. pneumoniae. The DNAzyme was printed on a paper substrate in a 96-well format to serve as mix-and-read fluorescent assay that exhibits a limit of detection (LOD) 105 CFUs mL-1 . Evaluated with 20 strains of clinical bacterial isolates, the DNAzyme produced the desired fluorescence signal with the samples of K. pneumoniae, regardless of their source or drug resistance. The assay is simple to use, rapid, inexpensive, and avoids the complex procedures of sample preparation and equipment. We believe that this DNAzyme-based fluorescent assay has potential for practical applications to identify K. pneumoniae.
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Affiliation(s)
- M Monsur Ali
- Biointerfaces Institute, McMaster University, 1280 Main St. W., Hamilton, ON, L8S 4K1, Canada
| | - Anatoly Slepenkin
- Department of Pathology and Laboratory Medicine, University of California, 1001 Health Sciences Road, Irvine, CA, 92697, USA
| | - Ellena Peterson
- Department of Pathology and Laboratory Medicine, University of California, 1001 Health Sciences Road, Irvine, CA, 92697, USA
| | - Weian Zhao
- Department of Pharmaceutical Sciences, Sue and Bill Gross Stem Cell Research Center, Edwards Lifesciences Center for Advanced Cardiovascular Technology and, The Department of Biomedical Engineering, University of California-Irvine, 845 Health Sciences Road, Irvine, CA, 92697, USA
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5
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Hui CY, Liu M, Li Y, Brennan JD. A Paper Sensor Printed with Multifunctional Bio/Nano Materials. Angew Chem Int Ed Engl 2018. [DOI: 10.1002/ange.201712903] [Citation(s) in RCA: 19] [Impact Index Per Article: 3.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/08/2022]
Affiliation(s)
- Christy Y. Hui
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton Ontario L8S 4O3 Canada
| | - Meng Liu
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton Ontario L8S 4O3 Canada
- Department of Biochemistry and Biomedical Sciences; McMaster University; 1280 Main Street West Hamilton Ontario L8S 4K1 Canada
- School of Environmental Science and Technology; Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education); Dalian University of Technology; Dalian 116024 China
| | - Yingfu Li
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton Ontario L8S 4O3 Canada
- Department of Biochemistry and Biomedical Sciences; McMaster University; 1280 Main Street West Hamilton Ontario L8S 4K1 Canada
| | - John D. Brennan
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton Ontario L8S 4O3 Canada
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6
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Hui CY, Liu M, Li Y, Brennan JD. A Paper Sensor Printed with Multifunctional Bio/Nano Materials. Angew Chem Int Ed Engl 2018; 57:4549-4553. [PMID: 29504183 DOI: 10.1002/anie.201712903] [Citation(s) in RCA: 63] [Impact Index Per Article: 10.5] [Reference Citation Analysis] [Abstract] [Key Words] [Journal Information] [Subscribe] [Scholar Register] [Received: 12/14/2017] [Revised: 02/12/2018] [Indexed: 01/08/2023]
Abstract
We report a paper-based aptasensor platform that uses two reaction zones and a connecting bridge along with printed multifunctional bio/nano materials to achieve molecular recognition and signal amplification. Upon addition of analyte to the first zone, a fluorescently labelled DNA or RNA aptamer is desorbed from printed graphene oxide, rapidly producing an initial fluorescence signal. The released aptamer then flows to the second zone where it reacts with printed reagents to initiate rolling circle amplification, generating DNA amplicons containing a peroxidase-mimicking DNAzyme, which produces a colorimetric readout that can be read in an equipment-free manner or with a smartphone. The sensor was demonstrated using an RNA aptamer for adenosine triphosphate (a bacterial marker) and a DNA aptamer for glutamate dehydrogenase (Clostridium difficile marker) with excellent sensitivity and specificity. These targets could be detected in spiked serum or feacal samples, demonstrating the potential for testing clinical samples.
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Affiliation(s)
- Christy Y Hui
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, Ontario, L8S 4O3, Canada
| | - Meng Liu
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, Ontario, L8S 4O3, Canada.,Department of Biochemistry and Biomedical Sciences, McMaster University, 1280 Main Street West, Hamilton, Ontario, L8S 4K1, Canada.,School of Environmental Science and Technology, Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education), Dalian University of Technology, Dalian, 116024, China
| | - Yingfu Li
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, Ontario, L8S 4O3, Canada.,Department of Biochemistry and Biomedical Sciences, McMaster University, 1280 Main Street West, Hamilton, Ontario, L8S 4K1, Canada
| | - John D Brennan
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, Ontario, L8S 4O3, Canada
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Hsieh PY, Monsur Ali M, Tram K, Jahanshahi-Anbuhi S, Brown CL, Brennan JD, Filipe CDM, Li Y. RNA Protection is Effectively Achieved by Pullulan Film Formation. Chembiochem 2017; 18:502-505. [PMID: 28090736 DOI: 10.1002/cbic.201600643] [Citation(s) in RCA: 17] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/28/2016] [Indexed: 11/05/2022]
Abstract
RNA is a functionally versatile polymer but suffers from susceptibility to spontaneous and RNase-catalyzed degradation. This vulnerability makes it difficult to preserve RNA for extended periods of time, thus limiting its use in various contexts, including practical applications as functional nucleic acids. Here we present a simple method to preserve RNA by pullulan (a complex sugar produced by Aureobasidium pullulans fungus) film formation. This strategy can markedly suppress both spontaneous and RNase degradation. Importantly, the pullulan film readily dissolves in aqueous solution, thus allowing retrieval of fully functional RNA species. In order to illustrate the advantage of this protective method in a practical application, we engineered a simple paper sensor containing a bacteria-detecting RNA-cleaving DNAzyme. This detection capability of the device was unchanged after storage at room temperature for six months.
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Affiliation(s)
- Ping-Yao Hsieh
- Department of Biochemistry and Biomedical Sciences, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada
| | - M Monsur Ali
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada
| | - Kha Tram
- Department of Biochemistry and Biomedical Sciences, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada
| | - Sana Jahanshahi-Anbuhi
- Department of Chemical Engineering, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada)
| | - Christine L Brown
- Department of Chemical Engineering, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada)
| | - John D Brennan
- Biointerfaces Institute, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada
| | - Carlos D M Filipe
- Department of Chemical Engineering, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada)
| | - Yingfu Li
- Department of Biochemistry and Biomedical Sciences, McMaster University, 1280 Main Street West, Hamilton, ON, L8S 4K1, Canada
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Murdock RC, Gallegos KM, Hagen JA, Kelley-Loughnane N, Weiss AA, Papautsky I. Development of a point-of-care diagnostic for influenza detection with antiviral treatment effectiveness indication. LAB ON A CHIP 2017; 17:332-340. [PMID: 27966711 PMCID: PMC5241167 DOI: 10.1039/c6lc01074a] [Citation(s) in RCA: 11] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 05/17/2023]
Abstract
Currently, diagnosis of influenza is performed either through tedious polymerase chain reaction (PCR) or through rapid antigen detection assays. The rapid antigen detection assays available today are highly specific but not very sensitive, and most importantly, lack the ability to show if the strain of influenza detected is susceptible to antiviral agents, such as Tamiflu and Relenza. The ability to rapidly determine if a patient has an infectious disease and what type of treatment the infection will respond to, would significantly reduce the treatment decision time, shorten the impact of symptoms, and minimize transfer to others. In this study, a novel, point-of-care style μPAD (microfluidic paper-based diagnostic) for influenza has been developed with the ability to determine antiviral susceptibility of the strain for treatment decision. The assay exploits the enzymatic activity of surface proteins present on all influenza strains, and potential false positive responses can be mitigated. A sample can be added to the device, distributed to 4 different reagent zones, and development of the enzymatic substrate under different buffer conditions takes place on bottom of the device. Analysis can be performed by eye or through a colorimetric image analysis smartphone application.
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Affiliation(s)
- Richard C Murdock
- 711 HPW/RHXBC, Human Signatures Branch, Airman Systems Directorate, 711th Human Performance Wing, Wright-Patterson AFB, OH, USA. and BioMicroSystems Lab, Department of Electrical Engineering and Computing Systems, University of Cincinnati, Cincinnati, OH, USA
| | - Karen M Gallegos
- Department of Molecular Genetics, Biochemistry, and Microbiology, University of Cincinnati, Cincinnati, OH, USA and Department of Microbiology and Immunology, Midwestern University, Downers Grove, IL, USA
| | - Joshua A Hagen
- 711 HPW/RHXBC, Human Signatures Branch, Airman Systems Directorate, 711th Human Performance Wing, Wright-Patterson AFB, OH, USA.
| | - Nancy Kelley-Loughnane
- 711 HPW/RHXBC, Human Signatures Branch, Airman Systems Directorate, 711th Human Performance Wing, Wright-Patterson AFB, OH, USA.
| | - Alison A Weiss
- Department of Molecular Genetics, Biochemistry, and Microbiology, University of Cincinnati, Cincinnati, OH, USA
| | - Ian Papautsky
- Department of Bioengineering, University of Illinois at Chicago, Chicago, IL, USA.
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9
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Liu M, Hui CY, Zhang Q, Gu J, Kannan B, Jahanshahi-Anbuhi S, Filipe CDM, Brennan JD, Li Y. Target-Induced and Equipment-Free DNA Amplification with a Simple Paper Device. Angew Chem Int Ed Engl 2016. [DOI: 10.1002/ange.201509389] [Citation(s) in RCA: 38] [Impact Index Per Article: 4.8] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/21/2022]
Affiliation(s)
- Meng Liu
- Departments of Biochemistry and Biomedical Sciences and Chemistry & Chemical Biology; McMaster University; 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Christy Y. Hui
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Qiang Zhang
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Jimmy Gu
- Departments of Biochemistry and Biomedical Sciences and Chemistry & Chemical Biology; McMaster University; 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Balamurali Kannan
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Sana Jahanshahi-Anbuhi
- Department of Chemical Engineering; McMaster University; 1280 Main Street West Hamilton ON L8S 4L7 Canada
| | - Carlos D. M. Filipe
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
- Department of Chemical Engineering; McMaster University; 1280 Main Street West Hamilton ON L8S 4L7 Canada
| | - John D. Brennan
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Yingfu Li
- Departments of Biochemistry and Biomedical Sciences and Chemistry & Chemical Biology; McMaster University; 1280 Main Street West Hamilton ON L8S 4K1 Canada
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
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10
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Liu M, Hui CY, Zhang Q, Gu J, Kannan B, Jahanshahi-Anbuhi S, Filipe CDM, Brennan JD, Li Y. Target-Induced and Equipment-Free DNA Amplification with a Simple Paper Device. Angew Chem Int Ed Engl 2016; 55:2709-13. [PMID: 26748431 DOI: 10.1002/anie.201509389] [Citation(s) in RCA: 100] [Impact Index Per Article: 12.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 10/10/2015] [Revised: 12/02/2015] [Indexed: 12/28/2022]
Affiliation(s)
- Meng Liu
- Departments of Biochemistry and Biomedical Sciences and Chemistry & Chemical Biology; McMaster University; 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Christy Y. Hui
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Qiang Zhang
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Jimmy Gu
- Departments of Biochemistry and Biomedical Sciences and Chemistry & Chemical Biology; McMaster University; 1280 Main Street West Hamilton ON L8S 4K1 Canada
| | - Balamurali Kannan
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Sana Jahanshahi-Anbuhi
- Department of Chemical Engineering; McMaster University; 1280 Main Street West Hamilton ON L8S 4L7 Canada
| | - Carlos D. M. Filipe
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
- Department of Chemical Engineering; McMaster University; 1280 Main Street West Hamilton ON L8S 4L7 Canada
| | - John D. Brennan
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
| | - Yingfu Li
- Departments of Biochemistry and Biomedical Sciences and Chemistry & Chemical Biology; McMaster University; 1280 Main Street West Hamilton ON L8S 4K1 Canada
- Biointerfaces Institute; McMaster University; 1280 Main Street West Hamilton ON L8S 4L8 Canada
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Jahanshahi-Anbuhi S, Pennings K, Leung V, Kannan B, Brennan JD, Filipe CDM, Pelton RH. Design Rules for Fluorocarbon-Free Omniphobic Solvent Barriers in Paper-Based Devices. ACS APPLIED MATERIALS & INTERFACES 2015; 7:25434-25440. [PMID: 26496157 DOI: 10.1021/acsami.5b08301] [Citation(s) in RCA: 7] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 06/05/2023]
Abstract
The utility of hydrophobic wax barriers in paper-based lateral flow and multiwell devices for containment of aqueous solvents was extended to organic solvents and challenging aqueous surfactant solutions by preparation of a three layer barrier, consisting of internal pullulan impregnated paper barriers surrounded by external wax barriers. When paper impregnated with pullulan solution dries, the polymer forms solvent blocking lenses in the paper structure. Lens formation was illustrated by forming pullulan lenses in glass capillaries. The lens shapes were less curved compared to the predictions of a model based upon minimizing surface area. For barriers on Whatman # 1 filter paper, the pullulan molecular weight must be greater than ∼70 kDa, the mass fraction of pullulan in the barrier zone must be at least 32%, and there are restrictions on the minimum width of the pullulan impregnated zone.
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Affiliation(s)
- Sana Jahanshahi-Anbuhi
- Biointerfaces Institute, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L8, Canada
- Department of Chemical Engineering, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L7, Canada
| | - Kevin Pennings
- Department of Chemical Engineering, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L7, Canada
| | | | - Balamurali Kannan
- Biointerfaces Institute, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L8, Canada
- Department of Chemistry and Chemical Biology, McMaster University , Hamilton, Ontario L8S 4L7, Canada
| | - John D Brennan
- Biointerfaces Institute, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L8, Canada
- Department of Chemistry and Chemical Biology, McMaster University , Hamilton, Ontario L8S 4L7, Canada
| | - Carlos D M Filipe
- Biointerfaces Institute, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L8, Canada
- Department of Chemical Engineering, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L7, Canada
| | - Robert H Pelton
- Biointerfaces Institute, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L8, Canada
- Department of Chemical Engineering, McMaster University , 1280 Main St W, Hamilton, Ontario L8S 4L7, Canada
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