Google AI


Modern Australian

COVID proved the therapeutic potential of RNA technology – making it more available is the next goal

  • Written by: Rebecca McKenzie, Senior Specialist in Molecular Biology, Malaghan Institute of Medical Research
COVID proved the therapeutic potential of RNA technology – making it more available is the next goal

The recent award of the 2023 Nobel prize in physiology or medicine to Katalin Karikó and Drew Weissman highlights the growing importance of RNA technology in the medical world, with many potential applications beyond COVID vaccines.

But until now, one of the major hindrances in making this technology more widely available globally, and in translating research into clinical use, has been the need for proprietary products, often licensed by pharmaceutical companies.

Detailed methodology to deliver RNA vaccines to cells was also not easily available to the research community.

For these reasons we have published a protocol detailing how to make and package RNA with commercially available reagents.

How RNA therapies work

RNA stands for ribonucleic acid. It is a type of genetic material, which can act as a messenger (mRNA), that translates information held in DNA into specific proteins.

The concept behind RNA therapies is elegant and simple, in theory. There are two distinct components: the RNA payload and the fatty envelope, made of lipid nanoparticles, which safely delivers the payload to cells.

Once inside a cell, the lipid envelope releases the RNA, enabling it to act as a messenger that will be read and translated to make specific therapeutic proteins. In COVID vaccines, the manufactured protein mirrors the spike protein of the SARS-CoV-2 virus, training our immune system to recognise and remember it for a robust future immune defence.

Read more: Messenger RNA: how it works in nature and in making vaccines

It is hard to believe now, but even in the early 2000s RNA therapies were widely considered to be a pipe dream. There were several hurdles in place that, until relatively recently, were considered insurmountable.

Karikó and Weissman’s discovery revolutionised our understanding of how cells detect and react to different RNA structures.

Their discovery allowed therapeutic RNAs to be synthesised so they could avoid destruction by the body before the RNA had a chance to carry out its task. Their seminal paper was published in 2005 – 15 years before the COVID pandemic.

Read more: Beyond COVID vaccines: what else could mRNA technology do for our health?

A computer illustration of a lipid nanoparticle envelope used to hold a mRNA vaccine.
RNA is an unstable molecule and needs a protective casing to be delivered to cells. Getty Images

Delivering the message

Throughout this time, a viable delivery system was being developed as well. RNA is a negatively charged, unstable molecule and cannot maintain its structure in the body without some sort of protective casing.

It was only in the 2010s that lipid nanoparticles were developed and identified as a potential mechanism for delivery.

Two critical advancements are essential. First, the lipid nanoparticles are ionised. This allows the encapsulation of the negatively charged RNA with a positively charged envelope. Then, before injection into the body, this assemblage is converted to a neutral pH, reducing potential toxicity in the body.

Second, a method to achieve consistency in the particle size of the lipid nanoparticles was developed. Size consistency matters because it enhances the vaccine’s uptake by cells in the body.

Time in the spotlight

By the time the COVID pandemic arrived, the essential components to make a viable RNA vaccine had emerged. RNA vaccines were especially appealing as they can be rapidly synthesised in the lab using just the genetic code of the virus.

As a result, the research field progressed rapidly. In addition to pharmaceutical development, several research groups around the world started work on RNA technology, applying it to a plethora of different diseases, including cancer, gene therapy and vaccines for different infectious diseases.

Read more: How do you make a universal flu vaccine? A microbiologist explains the challenges, and how mRNA could offer a promising solution

However, intellectual property constraints surrounding the lipid nanoparticle envelope raised production costs and affected investment prospects. This meant that while research and design could move forward, taking the findings into the clinic was not possible without paying the premiums to license certain reagents.

The result has been that labs around the world are developing their own techniques from scratch, leading to a grossly inefficient system.

The democratisation of RNA technology

Our research expedites the method development process by providing a springboard others can launch off. It is a standardised technique researchers can use as a baseline for RNA therapies without the need for proprietary products.

This will mean more people around the world will be able to bring RNA technology into the clinic, broadening its scope, impact and safety.

Current lipid nanoparticle formulations have also been optimised for a generalised immune defence, rather than specific tissue-targeted immune responses. Unhindered research in this area may unlock findings that allow very specific organs or even cells to be targeted.

It will also enable more universities and even schools to teach and research this technology and improve it for applications beyond those that will be commercially profitable.

We have only seen the tip of the iceberg in terms of the therapeutic potential of RNA technology. By democratising this technology, we can more fully explore and harness its myriad possible therapies.

The protocol was developed in collaboration with Te Kāuru – Ferrier Research Institute at Te Herenga Waka Victoria University of Wellington.

Authors: Rebecca McKenzie, Senior Specialist in Molecular Biology, Malaghan Institute of Medical Research

Read more https://theconversation.com/covid-proved-the-therapeutic-potential-of-rna-technology-making-it-more-available-is-the-next-goal-215704

What to Do When an Older Car Is No Longer Worth Keeping in Melbourne

Ever looked at another repair quote and wondered whether your old car is still worth the trouble? It is a common turning point for Melbourne motoris...

Your Baby's First Year: A Local Guide to Feeding, Sleep, and When to Get Extra Support

Ask ten parents in a Brisbane mothers' group how their baby is feeding or sleeping, and expect ten different answers.  Someone's baby sleeps throug...

Kitchen and Laundry Makeover Ideas That Don't Require a Full Renovation

Full kitchen renos are expensive — and most people don't actually need one.  They need the kitchen to stop looking like it's stuck in 2009, or they...

How Technology Is Reshaping the Modern Australian Commercial Kitchen

The commercial kitchen has always been shaped by technology. Refrigeration changed how ingredients could be stored, modern ventilation transformed k...

The Number on a Roller Blind Fabric That Nobody Explains

Somewhere in the fabric book, next to the colour name, there is a percentage. Three per cent. Five per cent. Ten per cent. Nobody explains it, most c...

What’s Trending in Men’s Jewellery This Father’s Day!

Finding a Father’s Day gift that feels personal, stylish and genuinely wearable is not always easy. While socks and novelty mugs have traditionally ...

Road Signs: Understanding Their Role in Clear and Effective Signage

Effective signage and display hardware can help businesses communicate information, promote products and organise customer or visitor movement. Road...

Bottle Label Printing: Key Factors to Consider Before Your Next Packaging Run

Effective packaging begins with understanding the product, bottle material, artwork and production requirements when planning bottle label printing. H...

Planning a Long-Distance Move With Interstate Movers Melbourne

Moving between states involves more planning than a typical local relocation. Along with packing and transporting household belongings, you need to...

Understanding the Role of an I/O Controller in Industrial Automation

Modern industrial systems depend on accurate communication between sensors, machines and control systems. An I/O controller can help manage this commu...

How the Right Mining Hose Supports Demanding Operations

Mining environments place considerable demands on equipment used for material transfer, water management and processing. Hoses operating in these co...

Simple Ideas for Making Social Gatherings More Memorable

We have all been to those parties where everyone just stands around the kitchen island, staring at their phones, waiting for someone else to make a mo...

Outdoor Wall Lights: Improving Exterior Lighting Around Your Home

Lighting can influence how a room looks, feels and functions, so the right fitting should be selected according to both appearance and practical req...

Commercial Office Cleaning: Combining Routine Office Cleaning With Melbourne Service

Keeping a workplace clean requires a service that can accommodate everyday tasks as well as the particular needs of the business. Professional comme...

Caravan Sales in Queensland: How to Find the Right Caravan for Sale QLD

Caravan ownership is about more than having somewhere to sleep while travelling. For many Queenslanders, it is one of the best ways to explore regio...

What Sir Walter Buffalo Turf Actually Costs in 2026 (And Why Quotes Vary So Much)

Two quotes landed on a Hills District homeowner's kitchen table last spring for the exact same 80-square-metre backyard. One said $12 a metre. The o...

Nearly 1,300 NSW Hospital Beds Are Occupied By People Who Are Ready To Go Home

1,276 people in NSW hospitals have been medically cleared for discharge but remain in hospital because they're still waiting for NDIS or aged care sup...

National Survey Launched to Measure Operational Impacts of Federal NDIS Policy Reforms

The effects of recent NDIS reforms are beginning to move beyond policy papers and into day to day service delivery. A new national survey is asking ...