Skip to content

Dual-Responsive Hydrogel-Coated Nanoclusters for Combined Magnetic Hyperthermia and Drug Delivery: A Comprehensive In Vitro and In Vivo Toxicity Profiling.

Jul 2026 · Journal of drug targeting (Print) · pp. 1-26 · 0 citations · 58 references
Medicine

TL;DR

Hy-Si-IONC, a dual heat- and pH-responsive hydrogel-coated magnetic nanocluster, engineered to deliver chemotherapeutic drug within the tumor microenvironment, offers targeted, localized drug release, outperforming conventional single-stimulus carriers.

Abstract

Cancer therapy demands smarter, more targeted strategies that minimize healthy tissue damage while maximizing therapeutic efficacy. This study introduces Hy-Si-IONC, a dual heat- and pH-responsive hydrogel-coated magnetic nanocluster, engineered to deliver chemotherapeutic drug within the tumor microenvironment. When combined with magnetic hyperthermia, it offers targeted, localized drug release, outperforming conventional single-stimulus carriers. The encapsulation efficiency and drug loading capacity of the Hy-Si-IONC were 47.3% and 4.6%, respectively. Hy-Si-IONC exhibited a lower critical solution temperature (LCST) of 43 °C with drug-release potential of 41.89% under tumor-mimicking conditions. A combinational therapy of doxorubicin-loaded Hy-Si-IONC and magnetic hyperthermia reduced the cell viability to 18% in MDA-MB-231 cells, confirming a strong therapeutic effect between thermal and chemotherapy. The nanosystem displayed good compatibility with human lymphocytes, MCF-7 and MDA-MB-231 cell lines. Hemolysis remained below 1%, and no genotoxicity was detected. Long-term in vivo safety was confirmed in a 25-week mice study, the nanoclusters predominantly accumulated in the liver and spleen. Transient changes in antioxidant markers - superoxide dismutase (SOD), catalase, glutathione S-transferase (GST), and glutathione (GSH) normalized by end of the study. No major histopathological abnormalities were observed in vital organs. Collectively, Hy-Si-IONC presents a biocompatible and potential dual-modal cancer therapy.

View source

Similar papers

Aug 2026

Self-assembled nano-multiple warheads: A precise targeting platform for combinatorial chemotherapy, PTT and PDT therapy against glioma.

Combination therapy tactics that incorporate numerous therapies via innovative multi-drug co-loaded nanomedicine delivery systems have shown considerable benefits in crossing the blood-brain barrier (BBB) and slowing glioma growth. However, efficiently developing multi-drug co-loaded delivery systems with high drug loa...

Zhihao Chen, Mengru Wu, Qian-Wen Ren et al. · 0 citations
Sep 2026

Co-loaded pH-Responsive AOT Nanovesicles for Combinatorial Chemotherapy: Structure, Stability, and Mechanism of Drug Release and Anti-Cancer Activity

Controlled and targeted drug delivery to the diseased site can significantly reduce systemic toxicity and improve therapeutic efficacy by enhancing cellular uptake. In this study, we report the development of biocompatible sodium bis(2-ethylhexyl) sulfosuccinate (AOT)-based nanovesicles for the co-delivery of hydroph...

Khushnuma Asghar, Kumari Kiran, Bharath Raj Parthasarathy et al. · 0 citations
Sep 2026

Biocompatible HA-PBA/PVA Dual-Network Hydrogel Composite System: A Promising Localized Therapeutic Platform for Bladder Cancer.

In vitro studies showed that the composite hydrogel displayed good biocompatibility and significantly inhibited MB49 bladder cancer cell proliferation, induced apoptosis, and suppressed migration and invasion, indicating that the HA-PBA/PVA hydrogel-liposome composite system is a promising localized therapeutic strateg...

Zi-Hao Chen, Jia-Xin Li, Hong Hu et al. · 0 citations
Review Open access Aug 2026

Multifunctional chitosan/carbon nanotube nanocomposites for programable drug and gene delivery in cancer therapy, wound healing and antimicrobial applications

A new Triple-Stimuli Release Model is presented that provides a computational experimental bridge to expedite preclinical validation while mathematically forecasting concurrent release kinetics and how well molecular dynamics simulations and artificial intelligence combine to forecast toxicity, drug-carrier interaction...

H. Hashemi, Aref Zahiri Ghareh Mosa, Ketevan Tavamaishvili et al. · 0 citations
Sep 2026

Smart thermo/pH‑responsive Janus nanogel for synergistic chemo-magnetic hyperthermia therapy inducing caspase‑mediated apoptosis in the BALB/c 4T1 breast cancer model.

Effective treatment of aggressive breast tumors remains challenging due to poor drug selectivity, systemic toxicity, and limited therapeutic synergy. Here, a thermo/pH‑responsive magnetic Janus nanogel was employed as a smart platform for on‑demand co‑delivery of 5‑fluorouracil (5‑Fu) and quercetin (Qu) combined with m...

R. Sheervalilou, Sepideh Khoee, Maryam Soleymani et al. · 0 citations
Sep 2026

Tumor microenvironment-responsive injectable hydrogels for localized therapy of pancreatic cancer.

To address the clinical need for localized therapy for pancreatic cancer, an injectable, self-healing nanocomposite hydrogel (GPPA-Mn@DOX) was rationally designed and developed. The hydrogel consists of phenylboronic acid-modified gelatin (Gel-PBA) and polyvinyl alcohol (PVA), which are crosslinked through dynamic boro...

Chuan-Cang Xie, Yan-Yan Feng, Li-Ping Zhu et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.