Jun-kuan Shan, Jia-qi Fang, Shu-Hao Liu, Xue-han Jin, Zhi-jie Weng, Li-ping Nan, Jun-jian Liu and Yun Qian
{"title":"多糖基水凝胶在椎间盘退变治疗中的应用与展望。","authors":"Jun-kuan Shan, Jia-qi Fang, Shu-Hao Liu, Xue-han Jin, Zhi-jie Weng, Li-ping Nan, Jun-jian Liu and Yun Qian","doi":"10.1039/D5TB01191D","DOIUrl":null,"url":null,"abstract":"<p >Intervertebral disc degeneration (IVDD) is a primary contributor to chronic low back pain (LBP) and neurological dysfunction. It significantly impairs patients' quality of life. With an aging population and changing lifestyles, the incidence of IVDD has been rising steadily. However, traditional treatments, such as medications, physical therapy, and surgery, primarily alleviate symptoms without fundamentally repairing degenerated discs. Recent advances in tissue engineering and regenerative medicine have led to the development of new therapeutic strategies for IVDD. Among them, hydrogels, which are materials with excellent biocompatibility and tunable properties, show remarkable potential. In particular, polysaccharide-based hydrogels offer unique advantages in IVDD repair thanks to their structural and functional resemblance to native tissues. Their inherent biomimetic properties allow precise replication of the extracellular matrix (ECM) microenvironment in intervertebral discs, providing critical biochemical and biomechanical cues for cell adhesion, proliferation, and differentiation. Additionally, polysaccharide-based hydrogels, with their diverse material bases and modification methods, can flexibly meet the specific demands of various polysaccharide types, providing highly customizable solutions for different stages of the repair process. This paper presents a comprehensive review of recent developments in the application of polysaccharide hydrogels for IVDD therapy.</p>","PeriodicalId":83,"journal":{"name":"Journal of Materials Chemistry B","volume":" 37","pages":" 11525-11539"},"PeriodicalIF":6.1000,"publicationDate":"2025-09-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Application and prospects of polysaccharide-based hydrogels in the treatment of intervertebral disc degeneration\",\"authors\":\"Jun-kuan Shan, Jia-qi Fang, Shu-Hao Liu, Xue-han Jin, Zhi-jie Weng, Li-ping Nan, Jun-jian Liu and Yun Qian\",\"doi\":\"10.1039/D5TB01191D\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >Intervertebral disc degeneration (IVDD) is a primary contributor to chronic low back pain (LBP) and neurological dysfunction. It significantly impairs patients' quality of life. With an aging population and changing lifestyles, the incidence of IVDD has been rising steadily. However, traditional treatments, such as medications, physical therapy, and surgery, primarily alleviate symptoms without fundamentally repairing degenerated discs. Recent advances in tissue engineering and regenerative medicine have led to the development of new therapeutic strategies for IVDD. Among them, hydrogels, which are materials with excellent biocompatibility and tunable properties, show remarkable potential. In particular, polysaccharide-based hydrogels offer unique advantages in IVDD repair thanks to their structural and functional resemblance to native tissues. Their inherent biomimetic properties allow precise replication of the extracellular matrix (ECM) microenvironment in intervertebral discs, providing critical biochemical and biomechanical cues for cell adhesion, proliferation, and differentiation. Additionally, polysaccharide-based hydrogels, with their diverse material bases and modification methods, can flexibly meet the specific demands of various polysaccharide types, providing highly customizable solutions for different stages of the repair process. 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Application and prospects of polysaccharide-based hydrogels in the treatment of intervertebral disc degeneration
Intervertebral disc degeneration (IVDD) is a primary contributor to chronic low back pain (LBP) and neurological dysfunction. It significantly impairs patients' quality of life. With an aging population and changing lifestyles, the incidence of IVDD has been rising steadily. However, traditional treatments, such as medications, physical therapy, and surgery, primarily alleviate symptoms without fundamentally repairing degenerated discs. Recent advances in tissue engineering and regenerative medicine have led to the development of new therapeutic strategies for IVDD. Among them, hydrogels, which are materials with excellent biocompatibility and tunable properties, show remarkable potential. In particular, polysaccharide-based hydrogels offer unique advantages in IVDD repair thanks to their structural and functional resemblance to native tissues. Their inherent biomimetic properties allow precise replication of the extracellular matrix (ECM) microenvironment in intervertebral discs, providing critical biochemical and biomechanical cues for cell adhesion, proliferation, and differentiation. Additionally, polysaccharide-based hydrogels, with their diverse material bases and modification methods, can flexibly meet the specific demands of various polysaccharide types, providing highly customizable solutions for different stages of the repair process. This paper presents a comprehensive review of recent developments in the application of polysaccharide hydrogels for IVDD therapy.
期刊介绍:
Journal of Materials Chemistry A, B & C cover high quality studies across all fields of materials chemistry. The journals focus on those theoretical or experimental studies that report new understanding, applications, properties and synthesis of materials. Journal of Materials Chemistry A, B & C are separated by the intended application of the material studied. Broadly, applications in energy and sustainability are of interest to Journal of Materials Chemistry A, applications in biology and medicine are of interest to Journal of Materials Chemistry B, and applications in optical, magnetic and electronic devices are of interest to Journal of Materials Chemistry C.Journal of Materials Chemistry B is a Transformative Journal and Plan S compliant. Example topic areas within the scope of Journal of Materials Chemistry B are listed below. This list is neither exhaustive nor exclusive:
Antifouling coatings
Biocompatible materials
Bioelectronics
Bioimaging
Biomimetics
Biomineralisation
Bionics
Biosensors
Diagnostics
Drug delivery
Gene delivery
Immunobiology
Nanomedicine
Regenerative medicine & Tissue engineering
Scaffolds
Soft robotics
Stem cells
Therapeutic devices