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Updated: Feb 27, 2026

Injectable Supramolecular Polymer-Nanoparticle Hydrogels for Cell and Drug Delivery Applications
Published on: February 7, 2021
Recent Advances in Smart Stimulus-Responsive Hydrogels for Precision Drug Delivery in Tumours
Huiling Zuo1, Yuhang Jiao1, Jiaxin Chen1
1Yunnan Key Laboratory of Integrated Traditional Chinese and Western Medicine for Chronic Disease in Prevention and Treatment, Yunnan University of Chinese Medicine, Kunming 650500, China.
Abstract:
Cancer remains one of the most prominent global health concerns, posing a substantial threat to public health. Millions of people die from cancer each year, and many cancer types remain incurable at present. Conventional cancer treatments, including surgery, chemotherapy, radiotherapy, and immunotherapy, often fail to achieve optimal clinical outcomes and are frequently associated with severe trauma and adverse effects. Consequently, there is an urgent need to develop novel therapeutic strategies to address these limitations. Hydrogels have been widely utilised as platforms for loading drugs, proteins, DNA, and stem cells in biomedical tissue repair and cancer therapy. Through modification of their physicochemical properties and functions, hydrogels can be endowed with responsiveness to multiple stimuli. In recent years, stimuli-responsive hydrogels (also known as smart-responsive hydrogels), as novel drug delivery systems, have demonstrated remarkable efficacy in cancer treatment. Stimuli-responsive hydrogels are capable of altering their mechanical properties, swelling behaviour, hydrophilicity, bioactivity, and molecular permeability in response to endogenous stimuli (including pH, ROS, and temperature) and exogenous stimuli (including light, ultrasound, and magnetic fields). This review highlights recent advances and applications of responsive hydrogels triggered by endogenous stimuli (including pH, ROS, and temperature) and exogenous stimuli (including light, ultrasound, and magnetic force) in cancer drug delivery and treatment. Finally, the current application limitations and future prospects of smart-responsive hydrogels are summarised.
Insights
Stimuli-responsive hydrogels offer advanced cancer treatment by responding to internal and external triggers for targeted drug delivery. These smart hydrogels show great promise in overcoming limitations of conventional cancer therapies.
Area of Science:
- Biomedical Engineering
- Materials Science
- Oncology
Background:
- Cancer poses a significant global health challenge with many incurable types.
- Conventional treatments like chemotherapy and radiotherapy have limitations and severe side effects.
- There is a critical need for innovative cancer therapeutic strategies.
Purpose of the Study:
- To review recent advances in stimuli-responsive hydrogels for cancer therapy.
- To highlight the application of these hydrogels in drug delivery and treatment.
- To summarize current limitations and future prospects of smart hydrogels in oncology.
Main Methods:
- Review of recent scientific literature on stimuli-responsive hydrogels.
- Analysis of hydrogel responses to endogenous (pH, ROS, temperature) and exogenous (light, ultrasound, magnetic fields) stimuli.
- Evaluation of hydrogel applications in cancer drug delivery and treatment.
Main Results:
- Stimuli-responsive hydrogels demonstrate remarkable efficacy as novel drug delivery systems for cancer.
- These hydrogels can alter properties like swelling and permeability in response to various stimuli.
- Recent advances show significant progress in their application for cancer treatment.
Conclusions:
- Stimuli-responsive hydrogels represent a promising approach for targeted cancer drug delivery.
- Further research is needed to overcome current limitations and fully realize their therapeutic potential.
- Smart hydrogels offer a future direction for more effective and less toxic cancer treatments.
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