A Medicated Nail Enamel to Help Fight Infection Developed

A Medicated Nail Enamel to Help Fight Infection Developed

  • Research Stash
  • News
  • 1.7K

A fungus, Trichophyton rubrum, causes painful infection of toe and fingernails. Prevalent in coastal regions and wet work zones, the infection is known as Onychomycosis accounts for about half of all nail diseases. It causes brittleness, discolouration and disfigurement of nails.

The disease needs prolonged treatment with both oral medication and application of ointments, which are both expensive and have side effects.

Researchers from the Delhi-based Hamdard Institute of Medical Sciences and Research have now developed a novel translucent nail lacquer fortified with an antifungal drug to treat onychomycosis. The drug-infused, quick-drying polymer can be easily applied like nail polish.

This nail lacquer has shown promising results in delivering the antifungal drug for extended durations indicating its potential use as a topical application and effective remedy to treat onychomycosis.

“The antifungal Bilayer Nail Lacquer (BNL) reduces the need for frequent drug application, improves cosmetic appearance and yields fruitful therapeutic outcomes. It overcomes problems associated with conventional formulations and offers a novel drug delivery platform for the successful treatment of onychomycosis,” said Dr Zeenat Iqbal, lead investigator of the study, while speaking to India Science Wire.

The researchers used readily available and approved antifungal drug Luliconazole and incorporated it into the matrix of a polymer.

The drug was mixed with an organic solvent by using a magnetic stirrer. To this solution, film-forming polymers, plasticisers, humectants, and permeation enhancers were added sequentially to obtain the polymer. The drug-laden, water compatible polymer was obtained after evaporating the solvent.

Following a similar process, a drug-free, waterproof polymer was fabricated as the protective coat. The X-ray diffraction analysis of the formulation showed a smaller crystalline area compared to that of the pure drug, indicating its efficacy.

To conduct nail permeation studies, researchers tested the polymer on bovine hooves, as their outer structure is similar to that of the human nails. The tests revealed that the lacquer had an extensive nail plate coverage with high adhesion of the polymer.

Over 24 hours, 75% of the drug was released to the nail exhibiting its ability for prolonged drug delivery. The lacquer was also tested in animals for skin-safety and tolerability and found to be within the tolerable limits.

The researchers are now looking for industry collaboration to develop their innovation into a pharmaceutical product.

Besides Zeenat Iqbal, the team included Nazia Hassan, Manvi Singh, Sufiyanu Sulaiman, Pooja Jain, Kalicharan Sharma, Shyamasree Nandy, Mridu Dudeja and Asgar Ali. The study result has been published in the journal ACS Omega. (India Science Wire)

By Susheela Srinivas

If you liked this article, then please subscribe to our YouTube Channel for the latest Science & Tech news. You can also find us on Twitter & Facebook.

This nail lacquer has shown promising results in delivering the antifungal drug for extended durations indicating its potential use as a topical application and effective remedy to treat onychomycosis.

“The antifungal Bilayer Nail Lacquer (BNL) reduces the need for frequent drug application, improves cosmetic appearance and yields fruitful therapeutic outcomes. It overcomes problems associated with conventional formulations and offers a novel drug delivery platform for the successful treatment of onychomycosis,” said Dr Zeenat Iqbal, lead investigator of the study, while speaking to India Science Wire.

The researchers used readily available and approved antifungal drug Luliconazole and incorporated it into the matrix of a polymer.

The drug was mixed with an organic solvent by using a magnetic stirrer. To this solution, film-forming polymers, plasticisers, humectants, and permeation enhancers were added sequentially to obtain the polymer. The drug-laden, water compatible polymer was obtained after evaporating the solvent.

Following a similar process, a drug-free, waterproof polymer was fabricated as the protective coat. The X-ray diffraction analysis of the formulation showed a smaller crystalline area compared to that of the pure drug, indicating its efficacy.

To conduct nail permeation studies, researchers tested the polymer on bovine hooves, as their outer structure is similar to that of the human nails. The tests revealed that the lacquer had an extensive nail plate coverage with high adhesion of the polymer.

Over 24 hours, 75% of the drug was released to the nail exhibiting its ability for prolonged drug delivery. The lacquer was also tested in animals for skin-safety and tolerability and found to be within the tolerable limits.

The researchers are now looking for industry collaboration to develop their innovation into a pharmaceutical product.

Besides Zeenat Iqbal, the team included Nazia Hassan, Manvi Singh, Sufiyanu Sulaiman, Pooja Jain, Kalicharan Sharma, Shyamasree Nandy, Mridu Dudeja and Asgar Ali. The study result has been published in the journal ACS Omega. (India Science Wire)

By Susheela Srinivas

If you liked this article, then please subscribe to our YouTube Channel for the latest Science & Tech news. You can also find us on Twitter & Facebook.

" }
CSIR Transfers Technology for Disinfecting Water

CSIR Transfers Technology for Disinfecting Water

Scientists at the Council of Scientific and Industrial Research’s Lucknow-based Indian Institute of Toxicology Research have developed a technology for disinfecting water that promises to provide safe and clean drinking water at a cost of just two paise per liter

  • News
  • 1.7K
Read more
Europe-Origin Pathogen Poses Big Threat to Potato Crop in India

Europe-Origin Pathogen Poses Big Threat to Potato Crop in India

A rapidly evolving pathogen from Europe may spell doom for India’s potato yield, an essential staple crop that also fetches good income to millions of farmers.

  • News
  • 2.7K
Read more

Researchers Explain Disordered Proteins In COVID-19 Virus Through Computational Studies

A research team from the Indian Institute of Technology Mandi in collaboration with researchers from Virginia Commonwealth University and the University of South Florida, USA, has used computational tools to understand an important part of the viral proteome called Intrinsically Disordered Protein Regions

  • News
  • 1.9K
Read more

Internet is huge! Help us find great content

Newsletter

Never miss a thing! Sign up for our newsletter to stay updated.

About

Research Stash is a curated collection of tools and News for S.T.E.M researchers

Have any questions or want to partner with us? Reach us at [email protected]

Navigation

Submit