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Manufacture and Drug Delivery Applications of Silk Nanoparticles
Published on: October 8, 2016
Advances in PD-1 signaling inhibition-based nano-delivery systems for tumor therapy
Songlin Liu1, Haiyang Wang1,2, Xinzhe Shao1
1School of Pharmaceutical Sciences & Institute of Materia Medica, Shandong First Medical University & Shandong Academy of Medical Sciences, National Key Laboratory of Advanced Drug Delivery System, Key Laboratory for Biotechnology Drugs of National Health Commission (Shandong Academy of Medical Sciences), Key Lab for Rare & Uncommon Diseases of Shandong Province, Jinan, 250117, Shandong, China.
Abstract:
In recent years, cancer immunotherapy has emerged as an exciting cancer treatment. Immune checkpoint blockade brings new opportunities for more researchers and clinicians. Programmed cell death receptor-1 (PD-1) is a widely studied immune checkpoint, and PD-1 blockade therapy has shown promising results in a variety of tumors, including melanoma, non-small cell lung cancer and renal cell carcinoma, which greatly improves patient overall survival and becomes a promising tool for the eradication of metastatic or inoperable tumors. However, low responsiveness and immune-related adverse effects currently limit its clinical application. Overcoming these difficulties is a major challenge to improve PD-1 blockade therapies. Nanomaterials have unique properties that enable targeted drug delivery, combination therapy through multidrug co-delivery strategies, and controlled drug release through sensitive bonds construction. In recent years, combining nanomaterials with PD-1 blockade therapy to construct novel single-drug-based or combination therapy-based nano-delivery systems has become an effective mean to address the limitations of PD-1 blockade therapy. In this study, the application of nanomaterial carriers in individual delivery of PD-1 inhibitors, combined delivery of PD-1 inhibitors and other immunomodulators, chemotherapeutic drugs, photothermal reagents were reviewed, which provides effective references for designing new PD-1 blockade therapeutic strategies.
Insights
Nanomaterials enhance cancer immunotherapy by improving targeted delivery and combination therapies for programmed cell death receptor-1 (PD-1) blockade. This approach aims to overcome limitations like low responsiveness and side effects in PD-1 therapies.
Area of Science:
- Oncology
- Nanotechnology
- Immunotherapy
Background:
- Cancer immunotherapy, particularly immune checkpoint blockade targeting Programmed Cell Death Receptor-1 (PD-1), shows promise but faces challenges.
- Limitations include low patient responsiveness and immune-related adverse effects, hindering widespread clinical application.
Purpose of the Study:
- To review the application of nanomaterial carriers in conjunction with PD-1 blockade therapy.
- To explore strategies for single-drug and combination therapies using nanomaterials to address PD-1 therapy limitations.
Main Methods:
- Review of studies utilizing nanomaterial carriers for PD-1 inhibitor delivery.
- Analysis of nanomaterial applications in co-delivery with immunomodulators, chemotherapeutics, and photothermal agents.
Main Results:
- Nanomaterials offer unique properties for targeted drug delivery, combination therapy, and controlled release.
- Novel nano-delivery systems combining nanomaterials with PD-1 blockade show potential to overcome existing therapeutic challenges.
Conclusions:
- Nanomaterial-based delivery systems represent a promising strategy to enhance PD-1 blockade therapy efficacy.
- This review provides references for designing advanced PD-1 blockade therapeutic strategies incorporating nanomaterials.

