Locationally activated PRP via an injectable dual-network hydrogel for endometrial regeneration
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⤵ 4 in-corpus citations
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An injectable dual-network hydrogel was developed to enable locationally activated platelet-rich plasma (PRP) for promoting endometrial regeneration.
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Abstract
Enhancing the effectiveness of platelet-rich plasma (PRP) for endometrial regeneration is challenging, due to its limited mechanical properties and burst release of growth factors. Here, we proposed an injectable interpenetrating dual-network hydrogel that can locationally activate PRP within the uterine cavity, sustained release growth factors and further address the insufficient therapeutic efficacy. Locational activation of PRP is achieved using the dual-network hydrogel. The phenylboronic acid (PBA) modified methacrylated hyaluronic acid (HAMA) dispersion chelates Ca2+ by carboxy groups and polyphenol groups, and in situ crosslinked with PRP-loaded polyvinyl alcohol (PVA) dispersion by dynamic borate ester bonds thus establishing the soft hydrogel. Subsequently, in situ photo-crosslinking technology is employed to enhance the mechanical performance of hydrogels by initiating free radical polymerization of carbon-carbon double bonds to form a dense network. The PRP-hydrogel significantly promoted the endometrial cell proliferation, exhibited strong pro-angiogenic effects, and down-regulated the expression of collagen deposition genes by inhibiting the TGF-β1-SMAD2/3 pathway in vitro. In vivo experiments using a rat intrauterine adhesion (IUA) model showed that the PRP-hydrogel significantly promoted endometrial regeneration and restored uterine functionality. Furthermore, rats treated with the PRP-hydrogel displayed an increase in the number of embryos, litter size, and birth rate, which was similar to normal rats. Overall, this injectable interpenetrating dual-network hydrogel, capable of locational activation of PRP, suggests a new therapeutic approach for endometrial repair.
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Cites (3)
- Regulation of angiogenesis in the endometrium 2001
- Reconstructable Uterus‐Derived Materials for Uterus Recovery toward Efficient Live Births 2021
- Mesenchymal Stem Cell Derived Exosomes Repair Uterine Injury by Targeting Transforming Growth Factor-β Signaling 2024
Cited by (4)
- Injectable antioxidant hyaluronan/chitosan hydrogel as a platelet-rich plasma and stem cell carrier to promote endometrial regeneration and fertility restoration 2025
- Natural Regeneration-Inspired Sequential Delivery of Synergistic Growth Factors for Structural and Functional Endometrial Regeneration 2025
- A double network composite hydrogel with enhanced transdermal delivery by ultrasound for endometrial injury repair and fertility recovery 2025
- Natural regeneration-inspired sequential delivery of synergistic growth factors for structural and functional endometrial regeneration 2025
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Cited by (4)
- Natural Regeneration-Inspired Sequential Delivery of Synergistic Growth Factors for Structural and Functional Endometrial Regeneration 2025
- Injectable antioxidant hyaluronan/chitosan hydrogel as a platelet-rich plasma and stem cell carrier to promote endometrial regeneration and fertility restoration 2025
- A double network composite hydrogel with enhanced transdermal delivery by ultrasound for endometrial injury repair and fertility recovery 2025
- Natural regeneration-inspired sequential delivery of synergistic growth factors for structural and functional endometrial regeneration 2025
Source provenance
- openalex
- last seen: 2026-06-10T17:14:06.276822+00:00
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