journal
https://read.qxmd.com/read/38487713/a-transferrin-receptor-targeting-dual-modal-mr-nir-fluorescent-imaging-probe-for-glioblastoma-diagnosis
#21
JOURNAL ARTICLE
Jiaqi Hao, Huawei Cai, Lei Gu, Yiqi Ma, Yan Li, Beibei Liu, Hongyan Zhu, Fanxin Zeng, Min Wu
The prognosis of glioblastoma (GBM) remains challenging, primarily due to the lack of a precise, effective imaging technique for comprehensively characterization. Addressing GBM diagnostic challenges, our study introduces an innovative dual-modal imaging that merges near-infrared (NIR) fluorescent imaging with magnetic resonance imaging (MRI). This method employs superparamagnetic iron oxide nanoparticles coated with NIR fluorescent dyes, specifically Cyanine 7, and targeted peptides. This synthetic probe facilitates MRI functionality through superparamagnetic iron oxide nanoparticles, provides NIR imaging capability via Cyanine 7 and enhances tumor targeting trough peptide interactions, offering a comprehensive diagnostic tool for GBM...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38487712/macrophage-exosomes-modified-by-mir-365-2-5p-promoted-osteoblast-osteogenic-differentiation-by-targeting-olfml1
#22
JOURNAL ARTICLE
Caiyao Hou, Yujue Zhang, Zhaoyong Lv, Yurun Luan, Jun Li, Chunxiu Meng, Kun Liu, Xin Luo, Liyu Chen, Fengzhen Liu
In the bone immune microenvironment, immune cells can regulate osteoblasts through a complex communication network. Macrophages play a central role in mediating immune osteogenesis, exosomes derived from them have osteogenic regulation and can be used as carriers in bone tissue engineering. However, there are problems with exosomal therapy alone, such as poor targeting, and the content of loaded molecules cannot reach the therapeutic concentration. In this study, macrophage-derived exosomes modified with miR-365-2-5p were developed to accelerate bone healing...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38476678/cancer-cell-response-to-extrinsic-and-intrinsic-mechanical-cue-opportunities-for-tumor-apoptosis-strategies
#23
REVIEW
Jun Shu, Huan Deng, Yu Zhang, Fang Wu, Jing He
Increasing studies have revealed the importance of mechanical cues in tumor progression, invasiveness and drug resistance. During malignant transformation, changes manifest in either the mechanical properties of the tissue or the cellular ability to sense and respond to mechanical signals. The major focus of the review is the subtle correlation between mechanical cues and apoptosis in tumor cells from a mechanobiology perspective. To begin, we focus on the intracellular force, examining the mechanical properties of the cell interior, and outlining the role that the cytoskeleton and intracellular organelle-mediated intracellular forces play in tumor cell apoptosis...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38454966/3d-printing-sequentially-strengthening-high-strength-natural-polymer-hydrogel-bilayer-scaffold-for-cornea-regeneration
#24
JOURNAL ARTICLE
Xiongfeng Nie, Yong Tang, Tengling Wu, Xinrui Zhao, Ziyang Xu, Rong Yang, Yage Sun, Bin Wu, Quanhong Han, Jingwen Hui, Wenguang Liu
3D printing of high-strength natural polymer biodegradable hydrogel scaffolds simultaneously resembling the biomechanics of corneal tissue and facilitating tissue regeneration remains a huge challenge due to the inherent brittleness of natural polymer hydrogels and the demanding requirements of printing. Herein, concentrated aqueous solutions of gelatin and carbohydrazide-modified alginate (Gel/Alg-CDH) are blended to form a natural polymer hydrogel ink, where the hydrazides in Alg-CDH are found to form strong hydrogen bonds with the gelatin...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38435376/biofouling-on-titanium-implants-a-novel-formulation-of-poloxamer-and-peroxide-for-in-situ-removal-of-pellicle-and-multi-species-oral-biofilm
#25
JOURNAL ARTICLE
Badra Hussain, Roger Simm, Jaime Bueno, Savvas Giannettou, Ali-Oddin Naemi, Ståle Petter Lyngstadaas, Håvard Jostein Haugen
Eradicating biofouling from implant surfaces is essential in treating peri-implant infections, as it directly addresses the microbial source for infection and inflammation around dental implants. This controlled laboratory study examines the effectiveness of the four commercially available debridement solutions '(EDTA (Prefgel® ), NaOCl (Perisolv® ), H2 O2 (Sigma-Aldrich) and Chlorhexidine (GUM® Paroex® ))' in removing the acquired pellicle, preventing pellicle re-formation and removing of a multi-species oral biofilm growing on a titanium implant surface, and compare the results with the effect of a novel formulation of a peroxide-activated 'Poloxamer gel (Nubone® Clean)'...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38426010/facile-synthesis-of-nanoparticles-stacked-co-3-o-4-nanoflakes-with-catalase-like-activity-for-accelerating-wound-healing
#26
JOURNAL ARTICLE
Yanan Huang, Wanyi Liao, Wenxuan Wang, Tingting Zhang, Yan Zhang, Lei Lu
Delayed wound healing caused by excessive reactive oxygen species (ROS) remains a considerable challenge. In recent years, metal oxide nanozymes have gained significant attention in biomedical research. However, a comprehensive investigation of Co3 O4 -based nanozymes for enhancing wound healing and tissue regeneration is lacking. This study focuses on developing a facile synthesis method to produce high-stability and cost-effective Co3 O4 nanoflakes (NFs) with promising catalase (CAT)-like activity to regulate the oxidative microenvironment and accelerate wound healing...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38420353/application-of-metal-organic-frameworks-based-functional-composite-scaffolds-in-tissue-engineering
#27
REVIEW
Xinlei Yao, Xinran Chen, Yu Sun, Pengxiang Yang, Xiaosong Gu, Xiu Dai
With the rapid development of materials science and tissue engineering, a variety of biomaterials have been used to construct tissue engineering scaffolds. Due to the performance limitations of single materials, functional composite biomaterials have attracted great attention as tools to improve the effectiveness of biological scaffolds for tissue repair. In recent years, metal-organic frameworks (MOFs) have shown great promise for application in tissue engineering because of their high specific surface area, high porosity, high biocompatibility, appropriate environmental sensitivities and other advantages...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38414799/microbiome-friendly-ps-pvp-electrospun-fibrous-membrane-with-antibiofilm-properties-for-dental-engineering
#28
JOURNAL ARTICLE
Jiamin Chen, Jia Guo, Xueyun Lu, Derong Yin, Cuisong Zhou, Yuqing Li, Xuedong Zhou
Dental caries is one of the most prevalent and biofilm-associated oral diseases in humans. Streptococcus mutans , with a high ability to form biofilms by adhering to hard surfaces, has been established as an important etiological agent for dental caries. Therefore, it is crucial to find a way to prevent the formation of cariogenic biofilm. Here, we report an electrospun fibrous membrane that could inhibit the adhesion and biofilm formation of S. mutans . Also, the polystyrene (PS)/polyvinyl pyrrolidone (PVP) electrospun fibrous membrane altered the 3D biofilm architecture and decreased water-insoluble extracellular polysaccharide production...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38414798/antioxidant-and-anti-inflammatory-injectable-hydrogel-microspheres-for-in-situ-treatment-of-tendinopathy
#29
JOURNAL ARTICLE
Qibin Han, Lang Bai, Yinhua Qian, Xiaoyu Zhang, Juan Wang, Jing Zhou, Wenguo Cui, Yuefeng Hao, Xing Yang
Tendinopathy is a common disorder that causes local dysfunction and reduces quality of life. Recent research has indicated that alterations in the inflammatory microenvironment play a vital role in the pathogenesis of tendinopathy. Herein, injectable methacrylate gelatin (GelMA) microspheres (GM) were fabricated and loaded with heparin-dopamine conjugate (HDC) and hepatocyte growth factor (HGF). GM@HDC@HGF were designed to balance the inflammatory microenvironment by inhibiting oxidative stress and inflammation, thereby regulating extracellular matrix (ECM) metabolism and halting tendon degeneration...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38414797/anisotropic-microtopography-surface-of-chitosan-scaffold-regulating-skin-precursor-derived-schwann-cells-towards-repair-phenotype-promotes-neural-regeneration
#30
JOURNAL ARTICLE
Meng Cong, Xia Wu, Lingjie Zhu, Guohao Gu, Fei Ding, Guicai Li, Haiyan Shi
For repairing peripheral nerve and spinal cord defects, biomaterial scaffold-based cell-therapy was emerged as an effective strategy, requiring the positive response of seed cells to biomaterial substrate and environment signals. Previous work highlighted that the imposed surface properties of scaffold could provide important guidance cues to adhered cells for polarization. However, the insufficiency of native Schwann cells and unclear cellular response mechanisms remained to be addressed. Given that, this study aimed to illuminate the micropatterned chitosan-film action on the rat skin precursor-derived Schwann cells (SKP-SCs)...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38414796/a-strategy-for-mechanically-integrating-robust-hydrogel-tissue-hybrid-to-promote-the-anti-calcification-and-endothelialization-of-bioprosthetic-heart-valve
#31
JOURNAL ARTICLE
Haoshuang Wu, Nuoya Chen, Tiantian Zheng, Li Li, Mengyue Hu, Yumei Qin, Gaoyang Guo, Li Yang, Yunbing Wang
Bioprosthetic heart valve (BHV) replacement has been the predominant treatment for severe heart valve diseases over decades. Most clinically available BHVs are crosslinked by glutaraldehyde (GLUT), while the high toxicity of residual GLUT could initiate calcification, severe thrombosis, and delayed endothelialization. Here, we construed a mechanically integrating robust hydrogel-tissue hybrid to improve the performance of BHVs. In particular, recombinant humanized collagen type III (rhCOLIII), which was precisely customized with anti-coagulant and pro-endothelialization bioactivity, was first incorporated into the polyvinyl alcohol (PVA)-based hydrogel via hydrogen bond interactions...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38414795/enhancing-cartilage-regeneration-and-repair-through-bioactive-and-biomechanical-modification-of-3d-acellular-dermal-matrix
#32
JOURNAL ARTICLE
Wei Gao, Tan Cheng, Zhengya Tang, Wenqiang Zhang, Yong Xu, Min Han, Guangdong Zhou, Chunsheng Tao, Ning Xu, Huitang Xia, Weijie Sun
Acellular dermal matrix (ADM) shows promise for cartilage regeneration and repair. However, an effective decellularization technique that removes cellular components while preserving the extracellular matrix, the transformation of 2D-ADM into a suitable 3D scaffold with porosity and the enhancement of bioactive and biomechanical properties in the 3D-ADM scaffold are yet to be fully addressed. In this study, we present an innovative decellularization method involving 0.125% trypsin and 0.5% SDS and a 1% Triton X-100 solution for preparing ADM and converting 2D-ADM into 3D-ADM scaffolds...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38404619/fe-zn-alloy-a-new-biodegradable-material-capable-of-reducing-ros-and-inhibiting-oxidative-stress
#33
JOURNAL ARTICLE
Shuaikang Yang, Weiqiang Wang, Yanan Xu, Yonghui Yuan, Shengzhi Hao
Fe-based biodegradable materials have attracted significant attention due to their exceptional mechanical properties and favorable biocompatibility. Currently, research on Fe-based materials mainly focuses on regulating the degradation rate. However, excessive release of Fe ions during material degradation will induce the generation of reactive oxygen species (ROS), leading to oxidative stress and ferroptosis. Therefore, the control of ROS release and the improvement of biocompatibility for Fe-based materials are very important...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38404618/mild-synthesis-of-ultra-bright-carbon-dots-with-solvatochromism-for-rapid-lipid-droplet-monitoring-in-varied-physiological-processes
#34
JOURNAL ARTICLE
Borui Su, Dong Gao, Nini Xin, Kai Wu, Mei Yang, Shichao Jiang, Yusheng Zhang, Jie Ding, Chengheng Wu, Jing Sun, Dan Wei, Hongsong Fan, Zhenzhen Guo
Lipid droplets (LDs) participating in various cellular activities and are increasingly being emphasized. Fluorescence imaging provides powerful tool for dynamic tracking of LDs, however, most current LDs probes remain inconsistent performance such as low Photoluminescence Quantum Yield (PLQY), poor photostability and tedious washing procedures. Herein, a novel yellow-emissive carbon dot (OT-CD) has been synthesized conveniently with high PLQY up to 90%. Besides, OT-CD exhibits remarkable amphiphilicity and solvatochromic property with lipid-water partition coefficient higher than 2, which is much higher than most LDs probes...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38404617/decm-restores-macrophage-immune-homeostasis-and-alleviates-iron-overload-to-promote-dtpi-healing
#35
JOURNAL ARTICLE
Ju Zhang, Ruijuan Si, Yu Gao, Hui Shan, Qi Su, Zujian Feng, Pingsheng Huang, Deling Kong, Weiwei Wang
Due to its highly insidious and rapid progression, deep tissue pressure injury (DTPI) is a clinical challenge. Our previous study found that DTPI may be a skeletal muscle injury dominated by macrophage immune dysfunction due to excessive iron accumulation. Decellularized extracellular matrix (dECM) hydrogel promotes skeletal muscle injury repair. However, its role in polarizing macrophages and regulating iron metabolism in DTPI remains unclear. Here, porcine dECM hydrogel was prepared, and its therapeutic function and mechanism in repairing DTPI were investigated...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38343880/advances-in-functional-coatings-on-biliary-stents
#36
REVIEW
Kaining Yang, Wenxin Sun, Lanyue Cui, Yuhong Zou, Cuie Wen, Rongchang Zeng
Biliary stenting is an important interventional method for the prevention and treatment of biliary tract diseases. However, complications, such as postoperative biliary infection and restenosis, frequently occur due to the extensive scope of the biliary system and the complex composition of bile. The combination of coating technology and biliary stents is expected to bring new approaches to the solution of these problems. The cutting-edge advance on functional coatings on biliary stents is reviewed from seven perspectives: anticorrosion, -bacterial, -tumor, stone-dissolving, X-ray visibility, antistent migration and functional composite coatings...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38343879/vascular-endothelial-cellular-mechanics-under-hyperglycemia-and-its-role-in-tissue-regeneration
#37
JOURNAL ARTICLE
Kui Wang, Yongmei Ge, Yongshuai Yang, Zhenjian Li, Jiayi Liu, Yizebang Xue, Yuanjun Zhang, Xiangchao Pang, A H W Ngan, Bin Tang
Diabetes is one of the most prevalent diseases worldwide. The tissue regeneration of diabetes patients is known to be rather tricky as the result of vascular dysfunction, and this leads to various clinical complications including diabetic foot ulcers. The vascular endothelial cells, which compactly line the inner surface of blood vessels, are responsible for the growth and maintenance of blood vessels and play an essential role in tissue regeneration. Although the mechanical properties of cells are generally known to be regulated by physiological/pathological conditions, few studies have been performed to investigate vascular endothelial cellular mechanics under hyperglycemia and the biological functions related to tissue regeneration...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38333727/harnessing-cytokine-induced-killer-cells-to-accelerate-diabetic-wound-healing-an-approach-to-regulating-post-traumatic-inflammation
#38
JOURNAL ARTICLE
Yixi Yang, Cheng Zhang, Yuan Jiang, Yijun He, Jiawei Cai, Lin Liang, Zhaohuan Chen, Sicheng Pan, Chu Hua, Keke Wu, Le Wang, Zhiyong Zhang
Impaired immunohomeostasis in diabetic wounds prolongs inflammation and cytokine dysfunction, thus, delaying or preventing wound-surface healing. Extensive clinical studies have been conducted on cytokine-induced killer (CIK) cells recently, as they can be easily proliferated using a straightforward, inexpensive protocol. Therefore, the function of CIK cells in regulating inflammatory environments has been drawing attention for clinical management. Throughout the current investigation, we discovered the regenerative capacity of these cells in the challenging environment of wounds that heal poorly due to diabetes...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38313825/electrospun-pcl-gelatin-arbutin-nanofiber-membranes-as-potent-reactive-oxygen-species-scavengers-to-accelerate-cutaneous-wound-healing
#39
JOURNAL ARTICLE
Mindong Du, Shuhan Liu, Nihan Lan, Ruiming Liang, Shengde Liang, Maoqiang Lan, Disen Feng, Li Zheng, Qingjun Wei, Ke Ma
The presence of excessive reactive oxygen species (ROS) at a skin wound site is an important factor affecting wound healing. ROS scavenging, which regulates the ROS microenvironment, is essential for wound healing. In this study, we used novel electrospun PCL/gelatin/arbutin (PCL/G/A) nanofibrous membranes as wound dressings, with PCL/gelatin (PCL/G) as the backbone, and plant-derived arbutin (hydroquinone-β-d-glucopyranoside, ARB) as an effective antioxidant that scavenges ROS and inhibits bacterial infection in wounds...
2024: Regenerative Biomaterials
https://read.qxmd.com/read/38313824/recent-progress-in-functional-metal-organic-frameworks-for-bio-medical-application
#40
REVIEW
Wenwen Chai, Xiaochen Chen, Jing Liu, Liyan Zhang, Chunyu Liu, Li Li, John Robert Honiball, Haobo Pan, Xu Cui, Deping Wang
Metal-organic frameworks (MOFs) have a high specific surface area, adjustable pores and can be used to obtain functional porous materials with diverse and well-ordered structures through coordination and self-assembly, which has intrigued wide interest in a broad range of disciplines. In the arena of biomedical engineering, the functionalized modification of MOFs has produced drug carriers with excellent dispersion and functionalities such as target delivery and response release, with promising applications in bio-detection, disease therapy, tissue healing, and other areas...
2024: Regenerative Biomaterials
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