DOI: 10.3390/bios16100545 ISSN: 2079-6374

Hybrid Multi-Biorecognition Laser-Scribed Graphene Platform for Electrochemical Detection of Insulin Resistance Biomarkers

Lavita Nuraviana Rizalputri, Saptami Suresh Shetty, Mario Soto Martinez, Eckaard Le Roux, Veerappan Mani, Khaled Nabil Salama

Insulin resistance (IR) is a multifactorial metabolic condition that can precede type 2 diabetes, motivating integrated monitoring of complementary biomarkers associated with glucose–insulin homeostasis and adipose tissue dysfunction. Here, we present a hybrid multi-biorecognition laser-scribed graphene (LSG) electrochemical platform with four independently functionalized working electrodes for detecting glucose, insulin, adiponectin, and leptin. The platform combines glucose oxidase-mediated enzymatic sensing, a methylene-blue-labeled insulin aptamer, and antibody-based recognition for adiponectin and leptin. Each sensing channel showed concentration-dependent electrochemical responses in PBS and analyte-spiked 10% human serum. The glucose sensor retained comparable sensitivity in PBS and serum, while the insulin aptasensor and the adiponectin and leptin immunosensors remained responsive in the diluted biological matrix. A preliminary mixed-analyte study further showed that all four channels remained responsive in a common four-biomarker sample. Importantly, the four-analyte panel combines glucose and insulin, used in HOMA-IR, with adiponectin and leptin, which form the adiponectin-to-leptin ratio, demonstrating thcombines high surface area, good electrical conductivitye feasibility of integrating complementary biomarkers and distinct biosensing approaches side by side within a single multiplexed electrochemical platform, with potential for future application in early-stage insulin resistance assessment.