2023
DOI: 10.3390/gels9070533
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Advancements and Applications of Injectable Hydrogel Composites in Biomedical Research and Therapy

Abstract: Injectable hydrogels have gained popularity for their controlled release, targeted delivery, and enhanced mechanical properties. They hold promise in cardiac regeneration, joint diseases, postoperative analgesia, and ocular disorder treatment. Hydrogels enriched with nano-hydroxyapatite show potential in bone regeneration, addressing challenges of bone defects, osteoporosis, and tumor-associated regeneration. In wound management and cancer therapy, they enable controlled release, accelerated wound closure, and… Show more

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Cited by 33 publications
(9 citation statements)
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“…The evaluation of drug release kinetics from injectable hydrogels involves the study of factors such as gelation time, drug loading efficiency, and drug release profiles (Singh et al, 2020). Researchers have employed techniques like diffusion studies, release kinetics analysis, and mathematical modeling to understand and optimize drug release from Tragacanth gum-based injectable hydrogels (Omidian and Chowdhury, 2023). Several examples demonstrate the effectiveness of injectable drug delivery using Tragacanth gum-based hydrogels.…”
Section: Tragacanth Gum-based Hydrogels For Injectable Drug Deliverymentioning
confidence: 99%
“…The evaluation of drug release kinetics from injectable hydrogels involves the study of factors such as gelation time, drug loading efficiency, and drug release profiles (Singh et al, 2020). Researchers have employed techniques like diffusion studies, release kinetics analysis, and mathematical modeling to understand and optimize drug release from Tragacanth gum-based injectable hydrogels (Omidian and Chowdhury, 2023). Several examples demonstrate the effectiveness of injectable drug delivery using Tragacanth gum-based hydrogels.…”
Section: Tragacanth Gum-based Hydrogels For Injectable Drug Deliverymentioning
confidence: 99%
“…Therefore, some substances with coagulation-promoting properties are added to the hemostatic material, such as gelatin, silk fibroin, Ca 2+ , nano clay, etc. Hydroxyapatite (HAp) is an inorganic mineral that exists in bone tissue. It has good biocompatibility and can promote bone tissue repair, so it is often used as bone tissue engineering biomaterials . In, addition, HAp has the property of releasing Ca 2+ , so it can not only promote bone tissue repair but also promote blood coagulation. , …”
Section: Introductionmentioning
confidence: 99%
“…It has good biocompatibility and can promote bone tissue repair, so it is often used as bone tissue engineering biomaterials. 27 In, addition, HAp has the property of releasing Ca 2+ , so it can not only promote bone tissue repair but also promote blood coagulation. 28,29 On the other hand, a simple and efficient hydrogel preparation process is desirable.…”
mentioning
confidence: 99%
“…Furthermore, injectable hydrogels can fill minor and irregular wounds caused by injuries and can also be implanted into treatment sites that are difficult to access. Equally significant, the injectable hydrogel benefits from gradually undergoing the "sol-gel" phase transition in physiological conditions, thereby accomplishing precise treatment (Liao et al 2020;Omidian and Chowdhury 2023).…”
Section: Introductionmentioning
confidence: 99%