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A Comprehensive Procedure to Evaluate the In Vivo Performance of Cancer Nanomedicines
Published on: March 4, 2017
Global Research Trends and Recent Advances in Medicinal Plant-Synthesized Nanoparticles for Cancer Treatment
Tomi Lois Adetunji1,2, Chijioke Olisah3, Marvellous Amarachi Acho4
1Agricultural Research Council-Vegetables, Industrial and Medicinal Plants, Private Bag X293, Pretoria 0001, South Africa.
Abstract:
Worldwide, cancer ranks among the foremost contributors to mortality despite recent medical progress. Alternative approaches in controlling various forms of cancer are being highly explored by researchers. This study provides the global research trends in the utilization of medicinal plant-synthesized nanoparticles for cancer treatment over the span of 18 years using scientometric analysis. Recent research advances on medicinal plant-derived nanoparticles for cancer treatment and their possible mechanisms of action were described. Relevant articles published between 2005 and 2023 were retrieved from Scopus and Web of Science and analyzed using RStudio and VOSViewer. Scientometric indicators were employed to analyze the results. The initial search returned 5695 articles, with a publication growth rate of 3.71% annually. Countries from Asia contributed the most (61.37%) to the total number of publications. The therapeutic effects of nanoparticles derived from medicinal plants can be attributed to various mechanistic pathways, including induced apoptosis from reactive oxygen species generation, as well as mitochondrial and cell membrane disruption, amongst others. Although some reported studies demonstrated promising safety and efficacy against certain cancer cells in vivo and in vitro, the little to no clinical data on medicinal plant-synthesized nanoparticles hinder the ability to make informed decisions about their clinical potential in cancer treatment.
Insights
Research trends show increasing global interest in medicinal plant-synthesized nanoparticles for cancer treatment. However, limited clinical data currently restricts understanding of their full therapeutic potential.
Area of Science:
- * Nanotechnology and Materials Science
- * Pharmacology and Toxicology
- * Oncology and Cancer Research
Background:
- * Cancer remains a leading global cause of mortality, driving exploration of novel therapeutic strategies.
- * Medicinal plant-derived nanoparticles offer a promising alternative approach for cancer treatment.
- * Understanding global research trends is crucial for advancing this field.
Purpose of the Study:
- * To analyze global research trends in medicinal plant-synthesized nanoparticles for cancer treatment from 2005-2023.
- * To describe recent advances and mechanisms of action for these nanoparticles.
- * To identify research output, geographical contributions, and publication growth.
Main Methods:
- * Scientometric analysis of 5695 articles published between 2005 and 2023.
- * Data sourced from Scopus and Web of Science databases.
- * Analysis performed using RStudio and VOSViewer.
Main Results:
- * Annual publication growth rate of 3.71% observed over 18 years.
- * Asia dominates contributions, accounting for 61.37% of publications.
- * Key mechanisms include induced apoptosis, reactive oxygen species generation, and disruption of cellular components.
Conclusions:
- * Significant research activity exists in medicinal plant-derived nanoparticles for cancer therapy.
- * Promising in vitro and in vivo results are reported, but clinical data is scarce.
- * Further clinical investigation is needed to ascertain the therapeutic potential of these nanoparticles.
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