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Author Spotlight: Advancements in Nanoparticle Technology for Drug Delivery and Immunotherapy
Published on: November 10, 2023
Recent advances in nanoformulation-based delivery for cancer immunotherapy
Seyedeh Saimeh Bokhari1, Tayyab Ali1, Muhammad Naeem2
1Clinico-Molecular Biochemistry Laboratory, Department of Biochemistry, University of Agriculture, 38000, Faisalabad, Pakistan.
Abstract:
Cancer is one of the leading causes of mortality worldwide, and its treatment faces several challenges. Phytoconstituents derived from recently discovered medicinal plants through nanotechnology potentially target cancer cells via PI3K/Akt/mTOR pathways and exert their effects selectively through the generation of reactive oxygen species through β-catenin inhibition, DNA damage, and increasing caspase 3/9 and p53 expression. These nanocarriers act specifically against different cancer cell lines such as HT-29, MOLT-4 human leukemia cancer and MCF-7 cell lines SKOV-3, Caov-3, SW-626, HepG2, A-549, HeLa, and MCF-7. This review comprehensively elaborates on the cellular and molecular mechanisms, and therapeutic prospects of various plant-mediated nanoformulations to attain a revolutionary shift in cancer immunotherapy.
Insights
Medicinal plant compounds delivered via nanotechnology offer a promising new approach to cancer treatment. These nanoformulations selectively target cancer cells, potentially revolutionizing cancer immunotherapy.
Area of Science:
- Nanotechnology
- Pharmacology
- Oncology
Background:
- Cancer remains a leading global cause of mortality, presenting significant treatment challenges.
- Phytoconstituents from medicinal plants are being explored for novel therapeutic applications.
Purpose of the Study:
- To review the cellular and molecular mechanisms of plant-mediated nanoformulations in cancer therapy.
- To explore the therapeutic prospects of these novel nanocarriers for cancer immunotherapy.
Main Methods:
- Literature review of plant-derived nanoparticles targeting cancer.
- Analysis of mechanisms including PI3K/Akt/mTOR pathway modulation, reactive oxygen species generation, and apoptosis induction.
- Evaluation of efficacy against various cancer cell lines (e.g., HT-29, MCF-7, HepG2, HeLa).
Main Results:
- Plant-mediated nanoformulations demonstrate selective targeting of diverse cancer cell lines.
- Mechanisms involve PI3K/Akt/mTOR pathway inhibition, β-catenin inhibition, DNA damage, and apoptosis induction (caspase 3/9, p53).
Conclusions:
- Plant-derived nanoformulations show significant potential as targeted cancer therapeutics.
- These nanocarriers could lead to a paradigm shift in cancer immunotherapy through selective cell killing.
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