Our research, open to all.
Browse peer-reviewed publications, technical reports, and clinical validation studies from the HerNostics team.
Design and Development of an Electroanalytical Genosensor Based on Cu-PTCA/rGO Nanocomposites for the Detection of Cervical Cancer
An electroanalytical genosensor based on Cu-PTCA/rGO nanocomposites for the sensitive and selective detection of HPV-16, enabling early diagnosis of cervical cancer with excellent analytical performance and point-of-care potential.
Reema Rawat, Sonam Singh, Souradeep Roy, Amit Kumar, Tapas Goswami, Ashish Mathur
View PDFUltrasensitive Electroanalytical Sensing Platform Using Aptamer-Conjugated V₂CTₓ MXene for the Detection of the HER-2 Biomarker
An ultrasensitive electrochemical aptasensor based on V₂CTₓ MXene for the selective detection of the HER-2 breast cancer biomarker, offering high sensitivity, long-term stability, and promising potential for affordable point-of-care diagnostics.
Reema Rawat, Sonam Singh, Souradeep Roy, Samarika Dubey, Tapas Goswami, Ashish Mathur, James McLaughlin
View PDFHigh-Performance Paper-Based DNA-Conjugated Ti₃C₂Tₓ Bionanoelectrode for Rapid Point-of-Care Detection of HPV-16
A high-performance paper-based DNA-conjugated Ti₃C₂Tₓ MXene bionanoelectrode developed for rapid, highly sensitive, and affordable point-of-care detection of HPV-16, enabling early cervical cancer screening through portable electrochemical diagnostics.
Reema Rawat, Sonam Singh, Rahul Walia, Souradeep Roy, Tapas Goswami, Sourav Sain, Susanta Sinha Roy, Piyush Kuchhal, Ashish Mathur, James McLaughlin
View PDFAptamer-Enhanced Ultrasensitive Electrochemical Detection of HER-2 Using ZnO Tetrapod-K₂Ti₆O₁₃ Nanocomposite
An aptamer-enhanced electrochemical biosensor utilizing a ZnO tetrapod-K₂Ti₆O₁₃ nanocomposite for the ultrasensitive and selective detection of the HER-2 breast cancer biomarker, enabling rapid, reliable, and point-of-care cancer diagnostics.
Reema Rawat, Souradeep Roy, Tapas Goswami, Mustafa Ismael, Till Leissner, Krishna Kant, Ashish Mathur
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