Publications by authors named "Ruibao Ju"

Article Synopsis
  • The study addresses the challenges of corneal endothelial cell transplantation, which is limited by a shortage of donors and the inability of human corneal endothelial cells to proliferate effectively.
  • Researchers developed a new transplantation method using thermosensitive hydrogels combined with human corneal endothelial cells derived from induced pluripotent stem cells (iPSCs).
  • Results showed that the hydrogels had excellent transparency and biocompatibility, and the combination method improved corneal transparency in a rabbit model, suggesting potential for treating corneal endothelial dysfunction.
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Article Synopsis
  • - Endoscopic submucosal dissection (ESD) is effective for treating polyps and early GI cancers but requires skilled operators; injecting materials into the submucosa can improve outcomes by creating a cushion.
  • - Current submucosal injection materials often spread quickly and do not provide long-lasting support, highlighting the need for a more durable alternative.
  • - Researchers developed a new material called succinylated hydroxybutyl chitosan (HBC-SA), which has better lifting properties and biocompatibility than traditional materials, making it a promising option for use during ESD.
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Brucellosis is a zoonotic infectious disease that has long endangered the development of animal husbandry and human health. Currently, vaccination stands as the most efficacious method for preventing and managing brucellosis. Alum, as the most commonly used adjuvant for the brucellosis vaccine, has obvious disadvantages, such as the formation of granulomas and its non-degradability.

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Glycosaminoglycan (GAG) lyases have been critical in structural and functional studies of GAGs. HCLase_M28, a lyase identified from the genome of Microbacterium sp. M28 was heterologously expressed, enzymatically characterized, and prepared in large-scale fermentation for the production of chondroitin sulfate (CS) oligosaccharides.

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Injectable hydrogels have been employed for sutureless repair of corneal epithelial defects, which can perfectly fit the defect sites and minimize the associated discomfort. However, numerous hydrogels are ineffective in treating large corneal epithelial defects and still suffer from poor biocompatibility or weak applicability when used as cell carriers. Herein, hydroxypropyl chitin/carboxymethyl chitosan (HPCT/CMCS) temperature-sensitive hydrogels are fabricated, and their physicochemical properties and suitability for corneal epithelial repair are investigated.

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Herein, hydroxypropyl chitosan azide (AZ-HPCTS) was synthesized and prepared as a hydrogel coating applied to a polypropylene mesh (PPM) through UV irradiation. This study confirmed the hypothesis that hydrogels with porous three-dimensional network structures exhibited excellent biocompatibility and biodegradability and adhered well to PPM. During the 180-day follow-up period, the AZ-HPCTS-coated PPM (AH-PPM) promoted wound healing by promoting the secretion of transforming growth factor-beta1 (TGF-beta1) in the acute reaction stage, which was reduced to a lower level at 30 d.

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Herein, the thermosensitive hydroxypropyl chitin (HPCT) hydrogel was prepared and the chemical structures, microstructures, rheological properties and degradation in vitro were investigated. The HPCT hydrogel possessed satisfactory biocompatibility in mouse fibroblast cells and Sprague Dawley rats. On the other hand, N-acetylglucosamine (NAG) and carboxymethyl chitosan (CMCS) provided favorable capacity for promoting cell proliferation, delaying cell apoptosis, and facilitating the insulin secretion of rat pancreatic beta cells (RIN-m5F) in three-dimensional culture.

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