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Updated: May 9, 2025

Author Spotlight: Non-Surgical Treatment of Melasma– Microneedling with Tranexamic Acid
Published on: January 19, 2024
Advancing Melanoma Care: Microneedles for Diagnosis and Therapeutic Precision
Shreyansh Chauhan1, Jai Naik1, Preksha Vinchhi1
1Institute of Pharmacy, Nirma University, SG Highway, Chharodi, Ahmedabad, 382481, Gujarat, India.
Abstract:
Melanoma, an aggressive skin tumor derived from melanocytes, is associated with a high mortality rate attributed to its frequent metastasis, drug resistance, and high invasion rate. The current therapeutic interventions for melanoma, such as surgery, chemotherapy, immunotherapy, and radiation therapy, are not efficient enough to treat melanoma. The current melanoma care is associated with limitations, such as late diagnosis and staging, false positives, treatment resistance, immune-related side effects, lack of standardization, challenges in metastatic melanoma cure, high treatment costs, recurrence, etc. Conventional therapies have poor anti- cancer efficacy due to premature drug degradation, severe adverse effects owing to systemic drug exposure, and low drug concentration at the malignancy site. Moreover, the current diagnosis for melanoma is associated with painful sample collection techniques, limited imaging techniques, limited understanding of genetic markers, etc., leading to misdiagnosis or delayed diagnosis. An extensive literature review on Microneedles (MNs) for melanoma diagnosis and treatment was conducted using PubMed, ScienceDirect, and Google Scholar databases from 2012 to 2025. This mini-review presents the advantages of MNs over current therapy, their formulation aspects, and their advancements for the diagnosis and treatment of melanoma. MNs, an emerging drug delivery system, can efficiently penetrate the skin barriers and form reversible microchannels to deliver the drug at melanoma sites without drug leakage, mitigating the adverse effects and increasing drug accumulation. MNs also provide an excellent platform to integrate novel and conventional therapies by encompassing discrete therapeutic agents in a single matrix. Moreover, MNs can capture biomarkers by absorbing the skin Interstitial Fluid (ISF) and facilitate diagnosis by minimal biological samples.
Insights
Microneedles (MNs) offer a promising approach for melanoma diagnosis and treatment. This technology enhances drug delivery and enables early detection by capturing biomarkers from interstitial fluid.
Area of Science:
- Dermatology and Oncology
- Nanotechnology and Drug Delivery
Background:
- Melanoma is an aggressive skin cancer with high mortality due to metastasis and drug resistance.
- Current melanoma treatments and diagnostic methods face limitations including late diagnosis, treatment resistance, and adverse side effects.
Purpose of the Study:
- To review the advancements and advantages of Microneedles (MNs) for melanoma diagnosis and treatment.
- To explore MNs as an alternative to conventional melanoma therapies and diagnostic techniques.
Main Methods:
- An extensive literature review was conducted on Microneedles for melanoma diagnosis and treatment.
- Databases searched included PubMed, ScienceDirect, and Google Scholar from 2012 to 2025.
Main Results:
- Microneedles (MNs) efficiently penetrate skin barriers, creating microchannels for targeted drug delivery to melanoma sites.
- MNs mitigate adverse effects by reducing systemic drug exposure and increasing local drug concentration.
- MNs can capture biomarkers from interstitial fluid for early melanoma diagnosis and facilitate integrated therapies.
Conclusions:
- Microneedles represent a significant advancement in melanoma care, offering improved drug delivery and diagnostic capabilities.
- MNs provide a versatile platform for combining therapies and enabling minimally invasive diagnosis, addressing limitations of current approaches.

