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Business Tech News: Latest Updates on Innovations, Startups, and Market Trends | The HinduBusinessLine

Geo-engineering against climate change ZincGel vs Li-ion battery Why the energy sector isn’t AI-ready yet IT services giant TCS takes an AI-led avatar IIT-M revives forgotten route to industrial wastewater treatment IIT-Kanpur-incubated start-up develops unique battery technology Two faces of water Why the made-in-India ePlane is unique Moving satellite data at laser speed Longer-lasting zinc battery How simulation tech can ready robots for the real world DAE commissions world’s first nuclear heat-based copper-chlorine hydrogen plant DAE commissions world’s first nuclear heat-based copper-chlorine hydrogen plant Subterranean forest of fungi Using sound waves to bypass charge-based circuits AI aides to decode Indian law How the US funding cut impacts cancer research The time to deploy thorium is now The protein-peptide bonds that heal IIT-Kanpur hosts India’s first DORIS beacon How plants summon help Fishing out fake news using a deep-learning neural network IIT-Madras sets up testing tank for ships, submarines Dentistry’s prehistoric drill With AI, science is borderless How ‘spent’ graphite breathes new life into fuel cell Coal gas can yield clean hydrogen at $1.25 a kg Light, compact antennas IMD launches pilot weather forecast within 1 km radius in UP, national roll out in 2-3 years Nationwide ban soon on Paraquat herbicide over toxicity concerns, health risks ParvAI: ‘Windows to the soul’ and workplace safety Why agreeable AI is a liability in competitive markets Indian material for magnet making When the grid becomes an all-knowing data system Micro-mining for critical rare earth minerals Half the capex, less carbon: The molten magic inside Tata Steel’s HIsarna bet Cosmic aid for miners Efficient brakes and EV range India contributes ₹745 crore to multi-country ITER Big budgets, slow science: BARC under-spends on R&D Artemis-2: Hurtling moon-ward on an epochal mission Power supply lessons for AI Why nuclear fusion is gaining funding Defence research stays underfunded Micro attacks on sewer lines Turning the ubiquitous optical fibre into a sensor The PRAGYA tokamak Mind-reading tech No exam is too hard for AI? Carnot battery: Carbon dioxide as ideal ‘working fluid’ On a leash of light On a wing and an AI-powered tool How do ‘natural polypills’ work? AI tool for capturing and managing hospital records How sea microbes can protect agri fields Why India should choose to build not just powerful, but also governable AI Flaring and quaking Qualcomm has an Edge in India Soil testing of rhizosphere CMFRI achieves captive breeding of threatened mangrove clam No erasures RDI scheme could be operationalised this year IIT-M’s ramjet shell is an engineering marvel Sun-powered supercapacitor 10 years on, NALCO yet to start gallium extraction project Budget doubles allocation for nuclear research to ₹2,410 cr Underwater water Recent successes in science-led atmanirbharta Electric mobility may take wing in the not-too-distant future Eco-friendly semiconductors Twinning prayers and AI at mega temple festival Solar cells of efficiencies above 30% A lesson from Germany on infrastructure maintenance Fabled city in the high mountains Optimising bioreactor design Sensing UV-C in femtoseconds ISRO to kick off 2026 with launch of Earth Observation Satellite Thriving in extremes Indo-Lankan leg-up for S&T Using AI to better assess cyclone damage War on drug resistance goes undersea Big, bad business of junk food Rosatom’s mini variant of small modular reactor Clear thinking on pranayama Can GenAI be a responsible teaching assistant? Pharma PLI fetches ₹26,832 cr sales ‘Scripting’ ideal AI output Honeywell’s technology may bring biomass to the centre stage India-made human-like robot Scorched by 163-year drought NTT’s quantum leap into near sci-fi realm A reality check on AI’s negotiation skills Salinity-proof epoxy coating for marine installations Heat from small-scale solar units could accelerate India’s net-zero transition Cross-species transplantation is at a regulatory crossroads Nature, the ultimate climate warrior Breakthrough in desalination technology, using carbon ‘flowers’ Epidemiology-ML collab decodes India’s struggles with air quality
Using lasers to punch holes in cell walls
By M Ramesh · 2026-05-04 · via Business Tech News: Latest Updates on Innovations, Startups, and Market Trends | The HinduBusinessLine
BIOMOLECULE CARGO. Light-driven graphene platform enables efficient intracellular delivery

BIOMOLECULE CARGO. Light-driven graphene platform enables efficient intracellular delivery

Scientists have developed a new technique to deliver biomolecules such as DNA, RNA and proteins into living cells more safely and efficiently — using light. This promises to advance cancer treatment, drug testing and gene therapy.

Getting materials into cells is crucial for studying diseases and developing therapies. Current methods use viruses (as trucks to ferry stuff inside), chemicals or physical techniques.

Viral methods can trigger immune reactions, while chemical methods may damage cells.

Physical methods, though less efficient, are generally preferred. Broadly, there are many ways to punch temporary holes in cell walls to enable the desired materials to slink in — mechanical, electrical, using sound waves or using light.

Researchers say ‘mechanoportation’ is low in efficiency, laborious and requires skills. Electrical and sound waves can cause irreversible damage to cells, so while solving one problem they create another.

Therefore, scientists are turning to light to “transfect” cells, a method called photoportation.

Here, lasers are used to create tiny, temporary openings in cell walls through which the desired biomolecules can enter the cell, before the wall slams shut again.

For this to work, you need ‘photosensitisers’ — materials that become hot when light hits them. The heat punches the holes in the cell walls.

Typically, gold or carbon nano particles are the photosensitising materials that come to mind for this process.

But the problem here is that nano materials will enter the cells and cause harm (cytotoxicity).

Now, researchers at IIT-Madras, Christian Medical College in Vellore and Toyohashi University of Technology in Japan have used a material called reduced graphene oxide (rGO), instead of commonly used nanoparticles. This material is cheaper, more stable and biocompatible.

Further, it can absorb a wide range of light — nano particles, on the other hand, absorb only certain parts (wavelengths) of light.

Using a laser-based system, “the team created a micro-patterned device that enables fast and controlled delivery of biomolecules into different types of cells, including human stem cells”, according to an IIT-Madras statement.

The method can treat up to a million cells within seconds, while maintaining high cell survival rates.

The platform successfully delivered a range of materials, including genetic molecules and enzymes, into cells.

The researchers — Srabani Kar, Tuhin Subhra Santra and Donia Dominic from IIT-Madras, Rajdeep Ojha from CMC and Moeto Nagai from Toyohashi University — say the technology could be useful in gene therapy, drug testing and regenerative medicine.

Prof Hwan You Chang, Emeritus Professor at the Institute of Molecular Medicine, National Tsing Hua University in Hsin Chu, Taiwan, noted that the work “addresses a critical bottleneck in cell biology and therapeutics: The need for a delivery method that is simultaneously high-throughput, efficient and compatible with a wide range of cargo types and cell lines”.

He told IIT-Madras that the scientists have devised “an elegant platform” that achieves these objectives while offering the additional advantage of avoiding undesired interference from the photosensitisers.

“I anticipate that commercialisation of this system would greatly benefit the broader cell biology community,” Chang said.

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Published on May 4, 2026