The aim of this study was to prepare, characterize novel types of pH-sensitive konjac gum-xanthan gum-glycerol-sodium alginate hydrogel (KGM-XG-GLY-SA hydrogel) allowing for the site-specific delivering of drugs to the colon and evaluate its colon-targeting characteristic. In this study, hydrophilic drug of hydrocortisone sodium succinate (HSS) was chosen as a model drug and successfully loaded in hydrogel without any organic solvent. In vitro investigations were carried out to evaluate its release process. The drug-loaded hydrogel shown good sustained release property that drugs release from test hydrogel was minimal at pH 1.2 (2h, 23.40%), pH 6.8 (4h, 25.88%), and significantly higher (4h, 70.20%) at pH 7.4. It is clear that adding glycerol in hydrogel as hysteresis preparation prevented the rapid dissolution of material in the higher pH of the intestine. Thus ensuring a controlled release of the entrapped drug. We studied the colonic-targeting behavior, in vivo toxicity test, pharmacokinetic study, features to reduce drug toxicity, and therapeutic effect of experimental UC of this preparation. All the results in vitro were shown that the K (KGM-XG-GLY-SA) hydrogels with glycerol had a good colon-targeting characteristic. In addition, results in vivo were indicated that K (KGM-XG-GLY-SA) hydrogel were nontoxic, reduced the spleen and thymus index, and had an obvious effect on the treatment of UC. Therefore, all results suggested that the developed HSS/KGM-XG-GLY-SA hydrogel (HSS-GEL) with glycerol as a colon-targeting vector might have greatly potential application in the UC healing.
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http://dx.doi.org/10.1016/j.carbpol.2015.03.075 | DOI Listing |
J Neurosurg
January 2025
19Division of Medical Statistics, Division of Data Science, Foundation for Biomedical Research and Innovation at Kobe; and.
Objective: Studies have demonstrated the effectiveness of hydrogel-coated coils (HGCs) to achieve the composite endpoint of decreased recanalization rates and greater safety. Herein, the authors aimed to assess the true ability of second-generation HGCs to prevent recanalization.
Methods: This randomized controlled study, the HYBRID (Hydrocoil Versus Bare Platinum Coil in Recanalization Imaging Data) trial, comparing HGCs with bare platinum coils (BPCs), was conducted in 43 Japanese institutions.
Adv Sci (Weinh)
January 2025
Department of Orthopaedics, The First Affiliated Hospital of Soochow University, Orthopedic Institute, MOE Key Laboratory of Geriatric Diseases and Immunology, Suzhou Medical College, Soochow University, Suzhou, Jiangsu, 215000, China.
Extracellular matrix (ECM) derived from mesenchymal stem cells regulates antioxidant properties and bone metabolism by providing a favorable extracellular microenvironment. However, its functional role and molecular mechanism in mitochondrial function regulation and aged bone regeneration remain insufficiently elucidated. This proteomic analysis has revealed a greater abundance of proteins supporting mitochondrial function in the young ECM (Y-ECM) secreted by young bone marrow-derived mesenchymal stem cells (BMMSCs) compared to the aged ECM (A-ECM).
View Article and Find Full Text PDFACS Nano
January 2025
Guangdong Provincial Key Laboratory of Reproductive Medicine, Guangdong Provincial Clinical Research Center for Obstetrical and Gynecological Diseases, Department of Gynecology & Obstetrics, Reproductive Medicine Center, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou 510080, PR China.
Regeneration of the injured endometrium, particularly the functional layer, is crucial for the prevention of uterine infertility. At present, clinical treatment using sodium hyaluronate hydrogel injection is limited by its relatively low fluidity, short-term retention, and insufficient bioactive ingredients, so it is necessary to develop an advanced healing-promoting hydrogel. The modulation of the microenvironment by presents a bioactive component that can facilitate the regeneration of the functional layer.
View Article and Find Full Text PDFSci Adv
January 2025
Department of Bioengineering, University of Pennsylvania, Philadelphia, PA 19104, USA.
Tissues form during development through mechanical compaction of their extracellular matrix (ECM) and shape morphing, processes that result in complex-shaped structures that contribute to tissue function. While observed in vivo, control over these processes in vitro to understand both tissue development and guide tissue formation has remained challenging. Here, we use combinations of mesenchymal stromal cell spheroids and hydrogel microparticles (microgels) with varied hydrolytic stability to fabricate programmable and dynamic granular composites that control compaction and tissue formation over time.
View Article and Find Full Text PDFNano Lett
January 2025
Zhejiang Engineering Research Center for Tissue Repair Materials and Wenzhou Key Laboratory of Biomaterials and Engineering and Wenzhou Key Laboratory of Biophysics, Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou 325001, China.
Saccharides and peptides with markedly disparate stereochemical features serve as pivotal chiral molecular partners in living systems. The importance of glycosylation in influencing glycopeptide self-assembly has been recognized. However, how different chiral combinations of saccharides and peptides influence the macroscopic hydrogel mechanics, fiber nanomechanics, asymmetric molecular packing, and thermodynamic changes during glycopeptide self-assembly remains unknown.
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