ADD ANI AS A TRUSTED SOURCE
googleads
Menu
Health

Nanobots made from DNA could fight cancer by delivering drugs directly to tumours

A team of Canadian researchers from Universite de Montreal has designed and validated a new class of drug transporters made of DNA that are 20,000 times smaller than a human hair and that could improve how cancers and other diseases are treated

ANI Nov 02, 2022 20:55 IST googleads

Representative image

Washington [US], November 2 (ANI): Chemists specializing in nanotechnology draw inspiration from nature to create molecular transporters that optimize the release of therapeutic drugs.
Reported in a new study in Nature Communications, these molecular transporters can be chemically programmed to deliver optimal concentration of drugs, making them more efficient than current methods.
One of the key ways to successfully treat disease is to provide and maintain a therapeutic drug dosage throughout treatment. Sub-optimal therapeutic exposure reduces efficiency and typically leads to drug resistance, while overexposure increases side effects.
Maintaining an optimal concentration of drugs in the blood remains a major challenge in modern medicine. Since most drugs undergo rapid degradation, patients are forced to (and often forget) to take multiple doses at regular intervals. And because each patient has a distinct pharmacokinetic profile, the drugs concentration in their blood varies significantly.
Observing that only about 50 per cent of cancer patients get an optimal drug dosage during certain chemotherapy, UdeM Chemistry associate professor Alexis Vallee-Belisle, an expert in bio-inspired nanotechnologies, started to explore how biological systems control and maintain the concentration of biomolecules.
"We have found that living organisms employ protein transporters that are programmed to maintain precise concentration of key molecules such as thyroid hormones, and that the strength of the interaction between these transporters and their molecules dictates the precise concentration of the free molecule," he said.
This simple idea led Vallee-Belisle -- who holds a Canada Research Chair in bioengineering and bionanotechnology -- and his research team to start developing artificial drug transporters that mimic the natural effect of maintaining a precise concentration of a drug during treatment.
UdeM PhD student Arnaud Desrosiers, the first author of the study, initially identified and developed two DNA transporters: one for quinine, an antimalarial, and the other for doxorubicin, a commonly used drug for treating breast cancer and leukemia.
He then demonstrated that these artificial transporters could be readily programmed to deliver and maintain any specific concentration of drug.
"More interestingly, we also found that these nanotransporters could also be employed as a drug reservoir to prolong the effect of the drug and minimize its dosage during treatment," said Desrosiers.
"Another impressive feature of these nanotransporters," he added, "is that they can be directed to specific parts of the body where the drug is most needed -- and that, in principle, should reduce most side effects."
To demonstrate the effectiveness of these nanotransporters, the researchers teamed up with Jeanne Leblond-Chain, a pharmacist at Universite de Bordeaux, in France; Luc DesGroseillers, a biochemist at UdeM; Jeremie Berdugo, a pathologist at UdeM; Celine Fiset, a pharmacist at the Montreal Heart Institute; and Vincent De Guire, a clinical biochemist at the UdeM-affiliated Maisonneuve-Rosemont Hospital.
Using the new drug transporter developed for doxorubicin, the team demonstrated that a specific drug-transporter formulation allows doxorubicin to be maintained in the blood and drastically reduces its diffusion towards key organs such as the heart, lungs and pancreas.
In mice treated with this formulation, doxorubicin was maintained 18 times longer in the blood and cardiotoxicity was reduced as well, keeping the mice more healthy as evidenced by their normal weight gain.
"Another great property of our nanotransporters is their high versatility," said Vallee-Belisle.
"For now, we have demonstrated the working principle of these nanotransporters for two different drugs. But thanks to the high programmability of DNA and protein chemistries, one can now design these transporters to precisely deliver a wide range of threrapeutic molecules."
And, he added, "additionally, these transporters could also be combined with human-designed liposomic transporters that are now being employed to deliver drugs at various rates."
The researchers are now eager to validate the clinical efficiency of their discovery. Since their doxorubicin nanotransporter is programmed to optimally maintain the drug in blood circulation, it could be deal to treat blood cancers, they believe.
"We envision that similar nanotransporters may also be developed to deliver drugs to other specific locations in the body and maximize the presence of the drug at tumor sites," said Vallee-Belisle. "This would drastically improve the efficiency of drugs as well as decrease their side effects." (ANI)

Get the App

What to Read Next

Health

The truth about ‘Eating for Two’ explained by doctors

The truth about ‘Eating for Two’ explained by doctors

Health experts warn that interpreting the advice literally can lead to excessive calorie intake, unhealthy weight gain and a higher risk of Gestational Diabetes Mellitus (GDM), a condition that affects blood sugar levels during pregnancy.

Read More
Health

High-fat keto diet may boost exercise benefits

High-fat keto diet may boost exercise benefits

A new study suggests that eating more fat rather than less could help the body gain greater benefits from exercise when blood sugar levels are high, offering an unexpected perspective on how diet and physical activity work together to support metabolic health.

Read More
Health

Scientists discover reason high altitude protects against diabete

Scientists discover reason high altitude protects against diabete

Living at high altitude appears to protect against diabetes, and scientists have finally discovered the reason. When oxygen levels drop, red blood cells switch into a new metabolic mode and absorb large amounts of glucose from the blood.

Read More
Health

Scientists reveal how exercise protects brain from Alzheimer's

Scientists reveal how exercise protects brain from Alzheimer's

Exercise may sharpen the mind by repairing the brain's protective shield. Researchers found that physical activity prompts the liver to release an enzyme that removes a harmful protein, causing the blood-brain barrier to become leaky with age.

Read More
Health

Scientists solve a major roadblock in cancer cell therapy: Study 

Scientists solve a major roadblock in cancer cell therapy: Study 

Researchers have found a reliable way to grow helper T cells from stem cells, solving a major challenge in immune-based cancer therapy. Helper T cells act as the immune system's coordinators, helping other immune cells fight longer and harder.

Read More
Home About Us Our Products Advertise Contact Us Terms & Condition Privacy Policy

Copyright © aninews.in | All Rights Reserved.