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Published on: May 24, 2024
Engineering nanotheranostic strategies for liver cancer
Lei Cao1, Yu-Qin Zhu1, Zhi-Xian Wu2
1Department of Pathology, Quanzhou Women's and Children's Hospital, Quanzhou 362000, Fujian Province, China.
Abstract:
The incidence and mortality of hepatocellular carcinoma have continued to increase over the last few years, and the medicine-based outlook of patients is poor. Given great ideas from the development of nanotechnology in medicine, especially the advantages in the treatments of liver cancer. Some engineering nanoparticles with active targeting, ligand modification, and passive targeting capacity achieve efficient drug delivery to tumor cells. In addition, the behavior of drug release is also applied to the drug loading nanosystem based on the tumor microenvironment. Considering clinical use of local treatment of liver cancer, in situ drug delivery of nanogels is also fully studied in orthotopic chemotherapy, radiotherapy, and ablation therapy. Furthermore, novel therapies including gene therapy, phototherapy, and immunotherapy are also applied as combined therapy for liver cancer. Engineering nonviral polymers to function as gene delivery vectors with increased efficiency and specificity, and strategies of co-delivery of therapeutic genes and drugs show great therapeutic effect against liver tumors, including drug-resistant tumors. Phototherapy is also applied in surgical procedures, chemotherapy, and immunotherapy. Combination strategies significantly enhance therapeutic effects and decrease side effects. Overall, the application of nanotechnology could bring a revolutionary change to the current treatment of liver cancer.
Insights
Nanotechnology offers advanced solutions for liver cancer treatment, improving targeted drug delivery and enabling novel therapies like gene and phototherapy. These innovations promise revolutionary changes in managing hepatocellular carcinoma.
Area of Science:
- Biomedical Engineering
- Nanomedicine
- Oncology
Background:
- Hepatocellular carcinoma incidence and mortality are rising, with poor patient prognosis.
- Current treatments face limitations in efficacy and side effects.
- Nanotechnology presents promising advancements for liver cancer therapy.
Discussion:
- Engineered nanoparticles facilitate targeted drug delivery to liver cancer cells via active and passive targeting.
- Nanocarriers are designed for controlled drug release, responding to the tumor microenvironment.
- In situ nanogel delivery systems are explored for localized chemotherapy, radiotherapy, and ablation therapy.
Key Insights:
- Nonviral polymer vectors enhance gene delivery efficiency and specificity for cancer treatment.
- Co-delivery of therapeutic genes and drugs demonstrates significant efficacy against liver tumors, including drug-resistant types.
- Phototherapy, combined with other modalities, shows potential in surgical procedures and adjuvant therapies.
Outlook:
- Combination strategies involving nanotechnology significantly improve therapeutic outcomes and reduce adverse effects.
- Nanotechnology applications are poised to revolutionize hepatocellular carcinoma treatment paradigms.
- Further research into nanomedicine holds the key to overcoming challenges in liver cancer management.
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