Javascript must be enabled to continue!
Research Progress of Thermosensitive Hydrogel in Tumor Therapeutic
View through CrossRef
AbstractCompared with traditional tumor therapy strategies, hydrogel as a drug reservoir system can realize on-demand drug release and deep tissue penetration ability. It also exhibits great tumor-site retention to enhance the permeability and retention effect of tumor treatment. This can significantly overcome the drug's resistance and severe side effects. Inorganic/organic composite hydrogel has attracted wide attention due to its combined effects, enhancing therapeutic effects against various kinds of tumors. In situ injectable hydrogel can securely restrict the drugs in the lesion sites without leakage and guarantee better biosafety. Moreover, hydrogel possesses interconnected macropores which can provide enough space for nutrient transport, cellular activity, and cell–cell interactions. Thermal therapy is an effective strategy for tumor therapy due to its minimal invasiveness and high selectivity. Because the location temperature can be precisely controlled and helps avoid the risks of destroying the body's immune system and ablate normal cells, thermal therapy exhibits significant treatment outcomes. Nonetheless, when the cellular temperature reaches approximately 43 °C, it causes long-term cell inactivation. Based on these merits, thermosensitive hydrogel formulation with adaptive functions shows excellent efficacy, unlimited tissue penetration capacity, and few deleterious side effects. Furthermore, the thermosensitive hydrogel has unique physical properties under the external stimuli, which is the ideal drug delivery system for on-demand release in tumor treatment. This article will review the state of the thermosensitive hydrogel in clinic application for cancer therapy.
Title: Research Progress of Thermosensitive Hydrogel in Tumor Therapeutic
Description:
AbstractCompared with traditional tumor therapy strategies, hydrogel as a drug reservoir system can realize on-demand drug release and deep tissue penetration ability.
It also exhibits great tumor-site retention to enhance the permeability and retention effect of tumor treatment.
This can significantly overcome the drug's resistance and severe side effects.
Inorganic/organic composite hydrogel has attracted wide attention due to its combined effects, enhancing therapeutic effects against various kinds of tumors.
In situ injectable hydrogel can securely restrict the drugs in the lesion sites without leakage and guarantee better biosafety.
Moreover, hydrogel possesses interconnected macropores which can provide enough space for nutrient transport, cellular activity, and cell–cell interactions.
Thermal therapy is an effective strategy for tumor therapy due to its minimal invasiveness and high selectivity.
Because the location temperature can be precisely controlled and helps avoid the risks of destroying the body's immune system and ablate normal cells, thermal therapy exhibits significant treatment outcomes.
Nonetheless, when the cellular temperature reaches approximately 43 °C, it causes long-term cell inactivation.
Based on these merits, thermosensitive hydrogel formulation with adaptive functions shows excellent efficacy, unlimited tissue penetration capacity, and few deleterious side effects.
Furthermore, the thermosensitive hydrogel has unique physical properties under the external stimuli, which is the ideal drug delivery system for on-demand release in tumor treatment.
This article will review the state of the thermosensitive hydrogel in clinic application for cancer therapy.
Related Results
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Molecular Dynamics Simulation of the Thermosensitive Gelation Mechanism of Phosphorylcholine Groups-Conjugated Methylcellulose Hydrogel
Molecular Dynamics Simulation of the Thermosensitive Gelation Mechanism of Phosphorylcholine Groups-Conjugated Methylcellulose Hydrogel
The intelligently thermosensitive 2-methacryloyloxyethyl phosphorylcholine (MPC) groups-conjugated methylcellulose (MC) hydrogel, abbreviated as MPC-g-MC, exhibits good potential f...
Local Use of Hydrogel with Amiodarone in Cardiac Surgery: Experiment and Translation to the Clinic
Local Use of Hydrogel with Amiodarone in Cardiac Surgery: Experiment and Translation to the Clinic
The objective of this study was to study the use of the hydrogel biopolymer based on sodium alginate (“Colegel”) with a drug substance—amiodarone—for the prevention of postoperativ...
Giant Sacrococcygeal Teratoma in Infant: Systematic Review
Giant Sacrococcygeal Teratoma in Infant: Systematic Review
Abstract
Introduction
Sacrococcygeal teratoma (SCT) is a rare embryonal tumor that occurs in the sacrococcygeal region, with an incidence of about 1 in 35,000 to 40,000 live births...
Preparation and Characterization of Drug-Loaded Thermosensitive Hydrogels
Preparation and Characterization of Drug-Loaded Thermosensitive Hydrogels
Hydrogels are the promising classes of polymeric drug delivery systems with the controlled release rates. Among them, injectable thermosensitive hydrogels with transition temperatu...
Hydrogel-based biosensing using plasmonic nanoparticle labels for optical biomarker detection
Hydrogel-based biosensing using plasmonic nanoparticle labels for optical biomarker detection
Plasmonic nanoparticles are widely used in biosensing strategies because their localized surface plasmon resonance (LSPR) provides unique optical properties and is highly sensitive...
DETERMINATION OF RESWELLING PROPERTIES AND WATER DIFFUSION MECHANISM OF HYDROGEL COMPOSITES
DETERMINATION OF RESWELLING PROPERTIES AND WATER DIFFUSION MECHANISM OF HYDROGEL COMPOSITES
This study focused on acrylamide/N-vinyl-2-pyrrolidone chemically cross-linked hydrogel composites. As fillers, sepiolite and alkyl ammonium salt modified sepiolite were used in th...
Antibacterial Property of Cationic Hydrogels
Antibacterial Property of Cationic Hydrogels
【Introduction】
Physical and mechanical properties of a hydrogel, which is soft and has high water content, are similar to those of living tissues. Thus, a hydrogel ...

