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"Cutting-Edge Lab-on-Chip Solutions for Diagnostics, Analytical Sciences and Life Sciences applications"
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We pioneer in both micro- and nanofluidic technology, developing eco-friendly Lab-on-a-chip systems for precise, rapid and cost-effective biomedical applications in diagnostics, pharmaceuticals and environmental monitoring.

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What We Offer

A typical FET-based biosensor

A typical FET-based biosensor

AFM image of a FET-based biosensor

AFM image of a FET-based biosensor

Electrical Measurement-1_edited

Electrical Measurement-1_edited

SEM image of a gold nanodot array with 100nm spacing

SEM image of a gold nanodot array with 100nm spacing

AFM image of a gold nanodot array with 100nm spacing

AFM image of a gold nanodot array with 100nm spacing

AFM Image-2

AFM Image-2

Optical microscope image of a gold pattern fabricated on a Si/SiOâ‚‚ substrate

Optical microscope image of a gold pattern fabricated on a Si/SiOâ‚‚ substrate

Optical microscope image of a gold pattern fabricated on a Si/SiOâ‚‚ substrate

Optical microscope image of a gold pattern fabricated on a Si/SiOâ‚‚ substrate

Confocal microscopy image of a gold nanodot array functionalized with ssDNA

Confocal microscopy image of a gold nanodot array functionalized with ssDNA

Image of a fabricated microfluidic reactor with tube connectors, created using soft lithography.

Image of a fabricated microfluidic reactor with tube connectors, created using soft lithography.

Image depicting laminar flow within a Y-shaped microfluidic channel containing two immiscible liquid

Image depicting laminar flow within a Y-shaped microfluidic channel containing two immiscible liquid

SEM image showcasing a nanoparticle cluster synthesized using a microfluidic reactor

SEM image showcasing a nanoparticle cluster synthesized using a microfluidic reactor

Photograph of a FET-based biosensor with probes for electrical characterization

Photograph of a FET-based biosensor with probes for electrical characterization

Precisely aligned gold nanodot within an open nanochannel

Precisely aligned gold nanodot within an open nanochannel

Three-dimensional nanofluidic structures

Three-dimensional nanofluidic structures

At Point-of-Care Microfluidics Pvt. Ltd., we develop FET-based biosensors integrated into PDMS Lab-on-Chip (LOC) devices for medical diagnostics, food safety, and pharmaceuticals. Our nanoelectrode array biosensors enable ultra-sensitive detection, while our microfluidic reactors support colloidal synthesis. We also fabricate sub-100 nm nanofluidic channels for DNA sequencing, drug delivery, and energy applications.

What sets our technology apart?

POINT-OF-CARE MICROFLUIDICS PRIVATE LIMITED is transforming the industry with innovative, cost-effective, and portable diagnostic solutions, driven by our advanced in-house R&D cleanroom infrastructure.

 

In healthcare, we design and fabricate miniaturized FET-based lab-on-chip (LOC) devices for highly accurate ionic and biochemical sensing, particularly in medical diagnostics. Adding to that, our LOC technology will accelerate drug discovery and high-throughput screening in pharmaceutical applications.

For food safety and environmental monitoring, we develop cutting-edge microfluidic prototypes for real-time contaminant detection. Additionally, we advance chemical synthesis, organ-on-chip models, and biosensor technologies. With microfluidic reactors enabling precise nanomaterial synthesis, our innovations enhance accessibility, precision, and efficiency, bridging the gap between research and real-world applications. Our work in nanofluidics focuses on sub-100 nm fluidic channels, fabricated using EBL, with selective gold nanoelectrode integration.

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