Evidence map›Paper›PMID 41501248›Full record

ArticleScientific reports2026

Rhodamine B-assisted fluorescent aptasensor for the sensitive and selective assessment of Doxycycline hyclate in wastewater.

Rashmi Jairiya, Niha Mohan Kulshreshtha, Md Zainul Abedeen, Akhilendra Bhushan Gupta, Ragini Gupta, Himmat Singh Kushwah

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Article in Scientific reports, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 · Who and what money

Authors and funding

6 authors.

Rashmi JairiyaMaterials Research Centre, Malaviya National Institute of Technology, Jaipur, Rajasthan, 302017, India.
Niha Mohan KulshreshthaDepartment of Biotechnology, Dr. B. Lal Institute of Biotechnology, Jaipur, Rajasthan, 302017, India.
Md Zainul AbedeenMaterials Research Centre, Malaviya National Institute of Technology, Jaipur, Rajasthan, 302017, India.
Akhilendra Bhushan GuptaDepartment of Civil Engineering, Malaviya National Institute of Technology, Jaipur, Rajasthan, 302017, India.
Ragini GuptaMaterials Research Centre, Malaviya National Institute of Technology, Jaipur, Rajasthan, 302017, India. rgupta.chy@mnit.ac.in.
Himmat Singh KushwahDepartment of Physics, Manipal University Jaipur, Jaipur, Rajasthan, 303007, India. himmat.kushwah@jaipur.manipal.edu.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

Doxycycline (DOX) demonstrates efficacy against SARS-CoV-2; however, its overuse necessitates the development of sensitive and selective sensors due to environmental concerns. Herein, we report a fluorescent aptasensor that uses rhodamine B (RhB), a fluorescent dye that gets quenched upon interaction with DOX. Different parameters like buffer solutions, concentration of Rhodamine B, apt40, and incubation time were optimized and found to be Tris HCl buffer, 4 µM, 25 nM, and 11 min, respectively. Sensor development is facilitated by the aptamer's precise binding to DOX, which quenches the fluorescence emission of dye via hydrogen bond formation between the carboxylic, phenolic, and amino groups of RhB and DOX. The aptasensor demonstrates efficacy across 0.13 µM to 100 µM at pH 7.4, with a detection limit of 114.03 nM. Molecular docking revealed RhB intercalation into ssDNA's minor groove (-3.08 kcal/mol) and multiple hydrogen bonds between DOX and apt40 (-8.43 kcal/mol). The sensor demonstrates excellent selectivity in the presence of interfering agents. Additionally, the real applicability of the sensor was demonstrated by determining DOX in the wastewater sample with 96-100% recovery (RSD < 2%). Its facile preparation, fast analysis, and high sensitivity make this fluorescent aptasensor valuable in environmental monitoring and public health.

Indexed as

Aptamers, NucleotideBiosensing TechniquesDoxycyclineFluorescent DyesRhodaminesWastewaterWater Pollutants, ChemicalFluorescent Chemosensor CompoundsHydrogen BondingLimit of DetectionMolecular Docking SimulationSpectrometry, FluorescenceAptamers, NucleotideDoxycyclineFluorescent Chemosensor CompoundsFluorescent Dyesrhodamine BRhodaminesWastewaterWater Pollutants, ChemicalAptasensorDoxycycline hyclateFluorescenceMolecular dockingRhodamine bWastewater

Identifiers

PMID41501248
PMCPMC12847969

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