Publication
Sno | Publication |
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1 | Wu, W.; Biyani, M.; Hirose, D.; Takamura, Y. Rapid and Highly Sensitive Detection of Leishmania by Combining Recombinase Polymerase Amplification and Solution-Processed Oxide Thin-Film Transistor Technology. Biosensors 2023, 13. Click Here |
2 | Biyani, R.; Hirata, K.; Oqmhula, K.; Yurtsever, A.; Hongo, K.; Maezono, R.; Takagi, M.; Fukuma, T.; Biyani, M. Biophysical Properties of the Fibril Structure of the Toxic Conformer of Amyloid-Β42: Characterization by Atomic Force Microscopy in Liquid and Molecular Docking. ACS Appl. Mater. Interfaces 2023, 15. Click Here |
3 | Kumawat, T.K.; Parihar, A.; Kumawat, V.; Sharma, V.; Pandit, A.; Sharma, B.; Biyani, M. Lateral Flow Assay for Early Diagnosis of Neurodegenerative Disorder. In Smart Diagnostics for Neurodegenerative Disorders: Neuro-sensors; 2023. Click Here |
4 | Kumawat, T.K.; Kumawat, V.; Sharma, V.; Pandit, A.; Biyani, M. Applications of Nanomaterials in Diagnostics and Treatment of Cancer. In Sustainable Nanomaterials for Biomedical Engineering: Impacts, Challenges, and Future Prospects; 2023. Click Here |
5 | Sharma, V.; Kumawat, T.K.; Pandit, A.; Kumawat, V.; Garg, R.; Bhatt, A.; Biyani, M. Nanozymes-Based Biosensors for Sustainable Food Engineering: Recent Research and Future Prospects. In Enzyme Inactivation in Food Processing: Technologies, Materials, and Applications; 2023.Click Here |
6 | Kumawat, T.K.; Kumawat, V.; Sharma, V.; Pandit, A.; Sharma, B.; Nag, S.; Kumari, N.; Biyani, M. Overview and Summary of Antimicrobial Wound Dressings and Its Biomedical Applications. In Antimicrobial Dressings: The Wound Care Applications; 2023. Click Here |
7 | Sharma, V.; Kumar Kumawat, T.; Pandit, A.; Sharma, B.; Agarwal, P.; Sharma, B.; Nain, P.; Biyani, M. CRISPR-Cas9: Role in Processing of Modular Metabolic Engineered Bio-Based Products. In Synthetic Genomics - From BioBricks to Synthetic Genomes; 2022.Click Here |
8 | Kumawat, T.K.; Sharma, V.; Kumawat, V.; Biyani, M.; Kumari, N.; Garg, R.; Kandwani, N. Electrokinetic-Assisted Bioremediation and Phytoremediation for the Treatment of Polluted Soil. In Advances in Bioremediation and Phytoremediation for Sustainable Soil Management: Principles, Monitoring and Remediation; 2022. Click Here |
9 | Ruchika; Tshukahara, T.; Biyani, M. A Nonsequencing Approach for the Rapid Detection of RNA Editing. J. Vis. Exp. 2022, 2022, Click Here |
10 | Kumawat, T.K.; Kumawat, V.; Sharma, S.; Sharma, V.; Pandit, A.; Kandwani, N.; Biyani, M. Sustainable Green Methods for the Extraction of Biopolymers. In; 2022. Click Here |
11 | Biyani, M.; Yasuda, K.; Isogai, Y.; Okamoto, Y.; Weilin, W.; Kodera, N.; Flechsig, H.; Sakaki, T.; Nakajima, M.; Biyani, M. Novel DNA Aptamer for CYP24A1 Inhibition with Enhanced Antiproliferative Activity in Cancer Cells. ACS Appl. Mater. Interfaces 2022, 14.Click Here |
12 | Kumawat, T.K.; Kumari, N.; Sharma, V.; Kumawat, V.; Biyani, M. Genetically Engineered Bacteria: A Novel Technique for Environmental Decontamination. In Microbial Consortium and Biotransformation for Pollution Decontamination; 2022. Click Here |
13 | Kumawat, T.K.; Sharma, V.; Kumawat, V.; Pandit, A.; Biyani, M. Agricultural and Agro-Wastes as Sorbents for Remediation of Noxious Pollutants from Water and Wastewater. In Sustainable Materials for Sensing and Remediation of Noxious Pollutants; 2022. Click Here |
14 | Sharma, V.; Kumawat, T.K.; Garg, R.; Bhatt, A.; Kandwani, N.; Dubey, G.; Biyani, M. The Role of Innovative Telehealth System in Revolutionizing Healthcare. In Extended Reality for Healthcare Systems: Recent Advances in Contemporary Research; 2022. Click Here |
15 | Kumawat, T.K.; Sharma, V.; Kumawat, V.; Biyani, M.; Pandit, A.; Bhatt, A. Sustainable Techniques for Building Waste Disposal. In Ecological and Health Effects of Building Materials; 2021.Click Here |
16 | Juma, K.M.; Takita, T.; Ito, K.; Yamagata, M.; Akagi, S.; Arikawa, E.; Kojima, K.; Biyani, M.; Fujiwara, S.; Nakura, Y.; et al. Optimization of Reaction Condition of Recombinase Polymerase Amplification to Detect SARS-CoV-2 DNA and RNA Using a Statistical Method. Biochem. Biophys. Res. Commun. 2021, 567.Click Here |
17 | Yokota, F.; Biyani, M.; Islam, R.; Ahmed, A.; Nishikitani, M.; Kikuchi, K.; Izukura, R.; Nohara, Y.; Nakashima, N. Co-Design, Co-Production, and Co-Evaluation Processes for a Mobile Health Check-Up Research Project in Jaipur, India: A Case Study of the Portable Health Clinic, 2016-2020. In Decision Science for Future Earth: Theory and Practice; 2021.Click Here |
18 | Biyani, R.; Sharma, K.; Kojima, K.; Biyani, M.; Sharma, V.; Kumawat, T.; Juma, K.M.; Yanagihara, I.; Fujiwara, S.; Kodama, E.; et al. Development of Robust Isothermal RNA Amplification Assay for Lab-Free Testing of RNA Viruses. Sci. Rep. 2021, 11, 15997, Click Here |
19 | Sharma, V.; Kr. Kumawat, T.; Sharma, G.; Garg, R.; Biyani, M. Contribution of Environmental Constituents in the Genomic Disruption of Cytokeratins. In Cytogenetics - Classical and Molecular Strategies for Analysing Heredity Material; 2021. Click Here |
20 | Kumawat, T.K.; Kumawat, V.; Sharma, S.; Kandwani, N.; Biyani, M. Applications of EPS in Environmental Bioremediations. In; 2021. Click Here |
21 | Yokota, F.; Biyani, M.; Hu, Y.; Kikuchi, K.; Shah, F.; Yasuoka, J.; Nanishi, K.; Alcoba, R.; Noureen, A. PHC and Case Studies of Remote Healthcare Services in Asian Countries. In Mobile Technologies for Delivering Healthcare in Remote, Rural or Developing Regions; 2020. Click Here |
22 | Biyani, M.; Biyani, M.; Nishigaki, K. Biomolecular Display Technology: A New Tool for Drug Discovery. In Animal Biotechnology: Models in Discovery and Translation; 2020. Click Here |
23 | Kushwaha, A.; Takamura, Y.; Biyani, M. Alternative Analyte-Binding Compounds for Immunosensor-Like Point-of-Care Application. In Immunodiagnostic Technologies from Laboratory to Point-Of-Care Testing; 2020. Click Here |
24 | Ishizuka, K.; Tsutsumi, Y.; Baba, M.; Biyani, R.; Wei Meng, C.; Biyani, M.; Takagi, M.; Jaiswal, J.; Sharma, B.; Kojima, K.; et al. Inhibition of HIV-1 Reverse Transcriptase Activity by the Extracts of Indian Plants. J. Biol. Macromol. 2020, 20. Click Here |
25 | Kushwaha, A.; Takamura, Y.; Nishigaki, K.; Biyani, M. Competitive Non-SELEX for the Selective and Rapid Enrichment of DNA Aptamers and Its Use in Electrochemical Aptasensor. Sci. Rep. 2019, 9, Click Here |
26 | Bhardwaj, R.; Tue, P.T.; Biyani, M.; Takamura, Y. A Simple and Efficient Microfluidic System for Reverse Chemical Synthesis (5’-3’) of a Short-Chain Oligonucleotidewithout Inert Atmosphere. Appl. Sci. 2019, 9. Click Here |
27 | Rathore, H.; Biyani, R.; Kato, H.; Takamura, Y.; Biyani, M. Palm-Size and One-Inch Gel Electrophoretic Device for Reliable and Field-Applicable Analysis of Recombinase Polymerase Amplification. Anal. Methods 2019, 11, Click Here |
28 | Biyani, M.; Biyani, R.; Ushijima, H.; Saito, M.; Takamura, Y.; Tamiya, E.; Biyani, M. Instant Enumeration of Total Viable Bacterial Counts for Food Quality Assurance Using “DEP-On-Go” Sensor. Anal. Methods 2018, 10, Click Here |
29 | Yokota, F.; Biyani, M.; Islam, R.; Ahmed, A.; Nishikitani, M.; Kikuchi, K.; Nohara, Y.; Nakashima, N. Lessons Learned from Co-Design and Co-Production in a Portable Health Clinic Research Project in Jaipur District, India (2016-2018). Sustain. 2018, 10,Click Here |
30 | Sharma, K.; Hongo, A.; Nishigaki, K.; Takamura, Y.; Biyani, M. ‘Head-to-Head’ MRNA Display for the Translation of Multi-Copied Proteins with a Free C-Terminus. Anal. Biochem. 2018, 557, Click Here |
31 | Tung, N.T.; Tue, P.T.; Thi Ngoc Lien, T.; Ohno, Y.; Maehashi, K.; Matsumoto, K.; Nishigaki, K.; Biyani, M.; Takamura, Y. Peptide Aptamer-Modified Single-Walled Carbon Nanotube-Based Transistors for High-Performance Biosensors. Sci. Rep. 2017, 7Click Here |
32 | Biyani, M.; Kawai, K.; Kitamura, K.; Chikae, M.; Biyani, M.; Ushijima, H.; Tamiya, E.; Yoneda, T.; Takamura, Y. PEP-on-DEP: A Competitive Peptide-Based Disposable Electrochemical Aptasensor for Renin Diagnostics. Biosens. Bioelectron. 2016, 84, Click Here |
33 | Sharma, B.; Takamura, Y.; Shimoda, T.; Biyani, M. A Bulk Sub-Femtoliter in Vitro Compartmentalization System Using Super-Fine Electrosprays. Sci. Rep. 2016, 6, Click Here |
34 | Biyani, M.; Ichiki, T. Microintaglio Printing for Soft Lithography-Based in Situ Microarrays. Microarrays 2015, 4.Click Here |
35 | Ueno, S.; Hirai, T.; Sato, S.; Biyani, M.; Kuramochi, H.; Iizuka, R.; Akagi, T.; Funatsu, T.; Ichiki, T. In Situ Synthesis and Immobilization of Enzyme Molecules on Microreactor Array Chips. J. Photopolym. Sci. Technol. 2015, 28, doi:10.2494/photopolymer.28.719. Click Here |
36 | Kobayashi, R.; Biyani, M.; Ueno, S.; Kumal, S.R.; Kuramochi, H.; Ichiki, T. Temperature-Controlled Microintaglio Printing for High-Resolution Micropatterning of RNA Molecules. Biosens. Bioelectron. 2015, 67. Click Here |
37 | Kumari, P.; Kamiseki, M.; Biyani, M.; Suzuki, M.; Nemoto, N.; Aita, T.; Nishigaki, K. Detection of Ultra-Low Levels of DNA Changes by Drinking Water: Epidemiologically Important Finding. J. Biochem. 2015, 157, Click Here |
38 | Ueno, S.; Biyani, M.; Sato, S.; Raj Kumal, S.; Kuramochi, H.; Akagi, T.; Ichiki, T. Present Status and Trends in Development of High Density Microarray. Bunseki Kagaku 2015, 64,Click Here |
39 | Bhardwaj, R.; Ngashangva, L.; Ukita, Y.; Biyani, M.; Takamura, Y. Development of Programmable Biosensor Based on the Electrochemical Detection of Metal Ion. In Proceedings of the 18th International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2014; 2014. Click Here |
40 | Biyani, M.; Tanaka, Y.; Sato, S.; Ueno, S.; Ichiki, T. Evaluation of Poly(Dimethylsiloxane) Microreactors for Pattern Size Miniaturization of Microintaglio-Printing-Based Protein Microarray. In Proceedings of the Japanese Journal of Applied Physics; 2014; Vol. 53. Click Here |
41 | Agarwal, T.; Komazaki, S.; Sharma, H.; Biyani, M. Rapid and Molecular Discrimination of Host-Specific Fungal Plant Pathogens in Pulse Crops Using Genome Profiling. Curr. Sci. 2014, 107. Click Here |
42 | Kumal, S.R.; Biyani, M.; Ueno, S.; Akagi, T.; Ichiki, T. Simultaneous Synthesis and Biotinylation of Proteins Using Puromycin-Based Labeling Technology for Fabrication of Protein Array Chip. In Proceedings of the Japanese Journal of Applied Physics; 2013; Vol. 52.Click Here |
43 | Biyani, M.; Moriyasu, J.; Tanaka, Y.; Sato, S.; Ueno, S.; Ichiki, T. Microintaglio Printing of in Situ Synthesized Proteins Enables Rapid Printing of High-Density Protein Microarrays Directly from DNA Microarrays. Appl. Phys. Express 2013, 6, Click Here |
44 | Ueno, S.; Ono, A.; Kobayashi, R.; Tanaka, Y.; Sato, S.; Biyani, M.; Nemoto, N.; Ichiki, T. Spot-Selective DNA Recovery from DNA Microarray Chips for on-Chip Directed Evolution. In Proceedings of the Proceedings of the 16th International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2012; 2012. Click Here |
45 | Sato, S.; Biyani, M.; Akagi, T.; Ichiki, T. Artificial Darwinian Selection Technology on Microarray Chips towards Directed Evolution Using Single Molecule Processing. In Proceedings of the Proceedings of the 16th International Conference on Miniaturized Systems for Chemistry and Life Sciences, MicroTAS 2012; 2012. Click Here |
46 | Kitamura, K.; Komatsu, M.; Biyani, M.; Futakami, M.; Kawakubo, T.; Yamamoto, K.; Nishigaki, K. Proven in Vitro Evolution of Protease Cathepsin E-Inhibitors and -Activators at PH 4.5 Using a Paired Peptide Method. J. Pept. Sci. 2012, 18, doi:10.1002/psc.2453.Click Here |
47 | Ueno, S.; Ono, A.; Kobayashi, R.; Tanaka, Y.; Sato, S.; Biyani, M.; Nemoto, N.; Ichiki, T. Photoassisted Recovery of DNA Molecules for On-Chip Directed Evolution. J. Photopolym. Sci. Technol. 2012, 25. Click Here |
48 | Biyani, M.; Ichiki, T. Solid-Phase Cell-Free Protein Synthesis to Improve Protein Foldability. In Cell-Free Protein Synthesis; 2012. Click Here |
49 | Kitamura, K.; Biyani, M.; Futakami, M.; Ueno-Tsuji, S.; Suzuki, M. Peptide Aptamer-Based ELISA-Like System for Detection of Cathepsin E in Tissues and Plasma. J. Mol. Biomark. Diagn. 2011, 02, Click Here |
50 | Biyani, M.; Futakami, M.; Kitamura, K.; Kawakubo, T.; Suzuki, M.; Yamamoto, K.; Nishigaki, K. In Vitro Selection of Cathepsin E-Activity-Enhancing Peptide Aptamers at Neutral PH. Int. J. Pept. 2011, 2011,Click Here |
51 | Biyani, M.; Biyani, M.; Nemoto, N.; Ichiki, T.; Nishigaki, K.; Husimi, Y. Gel Shift Selection of Translation Enhancer Sequences Using Messenger RNA Display. Anal. Biochem. 2011, 409Click Here |
52 | Agarwal, T.; Malhotra, A.; Trivedi, P.C.; Biyani, M. Biocontrol Potential of Gliocladium Virens against Fungal Pathogens Isolated from Chickpea, Lentil and Black Gram Seeds; 2011; Vol. 7;. Click Here |
53 | Biyani, M.; Osawa, T.; Nemoto, N.; Ichiki, T. Microintaglio Printing of Biomolecules and Its Application to in Situ Production of Messenger Ribonucleic Acid Display Microarray. Appl. Phys. Express 2011, 4, Click Here |
54 | Mochizuki, Y.; Biyani, M.; Tsuji-Ueno, S.; Suzuki, M.; Nishigaki, K.; Husimi, Y.; Nemoto, N. One-Pot Preparation of MRNA/CDNA Display by a Novel and Versatile Puromycin-Linker DNA. ACS Comb. Sci. 2011, 13, Click Here |
55 | Biyani, M.; Nemoto, N.; Ichiki, T. DNA-Linked Protein Array For High-Throughput Proteomics: From Spatially Unknown DNA Arrays To Identifiable Protein Arrays. Nano Life 2010, 01. Click Here |
56 | Biyani, M.; Sato, S.; Fujita, T.; Akagi, T.; Ichiki, T. Kilo-To-Giga DNA Micro Array for Conversion into High-Density Protein Micro Array on Demand. In Proceedings of the 14th International Conference on Miniaturized Systems for Chemistry and Life Sciences 2010, MicroTAS 2010; 2010; Vol. 2. Click Here |
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