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Tallur, S.

Publications and source records attributed to Tallur, S..

2 recordsLinked to original sources

Tracking Chemotherapy-Induced Oxidative Stressin Glioblastoma Cells Using NV-Based QuantumSensors

Glioblastoma (GBM) is a highly aggressive cancer with poor prognosis despite temozolomide(TMZ) treatment. TMZ induces oxidative stress, causing persistent redox alterations. We report the first use of nitrogen-vacancy centers in nanodiamonds as quantum sensors for T1 relaxometry in fixed GBM cells, detecting stable paramagnetic signatures linked to chemotherapy-induced persistent oxidative damage. U87-MG cells treated with TMZ show dose-dependent T1 shortening, consistent with conventional ROS fluorescence assays. TBHP studies confirm that the T1 response reflects accumulated redox adducts. Measurements remain robust across fixation and permeabilization protocols. Since drug-resistant GBM cells preserve antioxidant signatures, unchanged T1 times after treatment may indicate early resistance phenotypes. This fixed-tissue compatible readout could stratify patient response, guide adaptive therapy, and support biopsy-based diagnostics and post-treatment drug analysis in routinely preserved clinical specimens enabling retrospective studies and better outcomes for future personalized oncology decision making pathways.

biophysics↗

WELPCR: Low-cost polymerase chain reaction (PCR) thermal cycler for nucleic acid amplification and sensing

The COVID-19 pandemic highlighted the need for sensitive and cost-effective diagnostics. The gold standard test to diagnose infectious diseases such as COVID-19 is quantitative polymerase chain reaction (qPCR). Although there have been multiple advances in nucleic acid testing, PCR thermocyclers are expensive and typically not affordable for offering hands-on training to PCR in instructional laboratory courses in undergraduate colleges. We introduce a low-cost, portable, and automated real-time PCR device designed at the Wadhwani Electronics Lab (WEL) at IIT Bombay, christened WELPCR. WELPCR is an open-source design, and capable of reverse transcription PCR (RT-PCR) for complementary DNA synthesis, as well as end-point PCR of small amount of DNA in a test sample. The WELPCR design enables ramp rate up to 2 {degrees}C/s, weighs less than 2 kg, and is easy to assemble. The built-in LED display and keypad provides an intuitive and seamless user interface to configure and set up WELPCR. With bill of materials (BOM) cost less than INR Rs. 10 000, WELPCR is an attractive solution for bringing PCR technology to instructional and research laboratories in a cost-effective manner.

molecular biology↗