Mechanism and application of 3D-printed degradable bioceramic scaffolds for bone repair DOI Creative Commons
Hui‐Yi Lin, Liyun Zhang, Qiyue Zhang

и другие.

Biomaterials Science, Год журнала: 2023, Номер 11(21), С. 7034 - 7050

Опубликована: Янв. 1, 2023

3D-printed biodegradable bioceramic materials have a broad research base and application prospects for bone repair applications.

Язык: Английский

Printability of hybridized composite from maleic acid-treated bacterial cellulose with gelatin for bone tissue regeneration DOI

Xucai Wang,

Yibo Zhang,

Jiali Luo

и другие.

Advanced Composites and Hybrid Materials, Год журнала: 2023, Номер 6(4)

Опубликована: Июль 5, 2023

Язык: Английский

Процитировано

54

Janus Membrane with Intrafibrillarly Strontium-Apatite-Mineralized Collagen for Guided Bone Regeneration DOI

Yaning Zhao,

Wei Sun, Xiaoyi Wu

и другие.

ACS Nano, Год журнала: 2024, Номер 18(9), С. 7204 - 7222

Опубликована: Фев. 19, 2024

Commercial collagen membranes face difficulty in guided bone regeneration (GBR) due to the absence of hierarchical structural design, effective interface management, and diverse bioactivity. Herein, a Janus membrane called SrJM is developed that consists porous enhance osteogenic function dense maintain barrier function. Specifically, biomimetic intrafibrillar mineralization with strontium apatite realized by liquid precursors amorphous phosphate. Polycaprolactone methacryloyl further integrated on one side as face, which endows mechanical support prolonged lifespan. In vitro experiments demonstrate acts strong against fibroblasts, while significantly promotes cell adhesion differentiation through activation calcium-sensitive receptor/integrin/Wnt signaling pathways. Meanwhile, effectively enhances osteogenesis angiogenesis recruiting stem cells modulating osteoimmune response, thus creating an ideal microenvironment for regeneration. vivo studies verify defect region completely repaired newly formed vascularized bone. Overall, outstanding performance supports its ongoing development multifunctional GBR membrane, this study provides versatile strategy fabricating collagen-based biomaterials hard tissue

Язык: Английский

Процитировано

25

Composite Nanocoatings of Biomedical Magnesium Alloy Implants: Advantages, Mechanisms, and Design Strategies DOI Creative Commons
Dan Li, Danni Dai,

Gege Xiong

и другие.

Advanced Science, Год журнала: 2023, Номер 10(18)

Опубликована: Апрель 25, 2023

The rapid degradation of magnesium (Mg) alloy implants erodes mechanical performance and interfacial bioactivity, thereby limiting their clinical utility. Surface modification is among the solutions to improve corrosion resistance bioefficacy Mg alloys. Novel composite coatings that incorporate nanostructures create new opportunities for expanded use. Particle size dominance impermeability may increase prolong implant service time. Nanoparticles with specific biological effects be released into peri-implant microenvironment during promote healing. Composite nanocoatings provide nanoscale surfaces cell adhesion proliferation. activate cellular signaling pathways, while those porous or core-shell structures carry antibacterial immunomodulatory drugs. vascular reendothelialization osteogenesis, attenuate inflammation, inhibit bacterial growth, thus increasing applicability in complex microenvironments such as atherosclerosis open fractures. This review combines physicochemical properties efficiency Mg-based biomedical summarize advantages nanocoatings, analyzes mechanisms action, proposes design construction strategies, purpose providing a reference promoting application further nanocoatings.

Язык: Английский

Процитировано

43

Dopamine‐Integrated Nanointerface between Fibrillar Matrix and Hydrophilic Nanohydroxyapatite Regulates Immune Microenvironment to Boost Endogenous Bone Regeneration DOI
Xing Li,

Zhulian Li,

Peilei Wang

и другие.

Advanced Functional Materials, Год журнала: 2023, Номер 33(16)

Опубликована: Янв. 17, 2023

Abstract Driving endogenous bone regeneration by cell‐ and factor‐free biomaterials is the most ideal repair strategy. Herein, hybrid interleaved scaffold (HDSH) with nanosized interfacial integration assembled organic/inorganic interactive bonding at nanoscale. With help of transcriptome proteome analysis, regenerative mechanism this elaborated molecular level, which confirms that strategy recreates a suitable immune microenvironment (anti‐inflammatory M2‐polarizing) drives functional cell cytokine adhesion, as well inchoate vascularization. It greatly enhances stem recruitment, subsequently initiates robust vasculogenesis osteogenesis. Significant bony reconstitution in rabbit cranial defect model (Φ = 10 mm) observed after 12 weeks, realizes completely new coverage 79% breaking load strength relative to natural cranium. By enhancing nano‐sized integration, can provide effective guidance for developing highly bioactive bone‐regenerative implants.

Язык: Английский

Процитировано

31

Small Joint Organoids 3D Bioprinting: Construction Strategy and Application DOI
Yuan Zhang, Guangfeng Li, Jian Wang

и другие.

Small, Год журнала: 2023, Номер 20(8)

Опубликована: Окт. 9, 2023

Abstract Osteoarthritis (OA) is a chronic disease that causes pain and disability in adults, affecting ≈300 million people worldwide. It caused by damage to cartilage, including cellular inflammation destruction of the extracellular matrix (ECM), leading limited self‐repairing ability due lack blood vessels nerves cartilage tissue. Organoid technology has emerged as promising approach for repair, but constructing joint organoids with their complex structures special mechanisms still challenging. To overcome these boundaries, 3D bioprinting allows precise design physiologically relevant organoids, shape, structure, mechanical properties, arrangement, biological cues mimic natural In this review, authors will introduce structure tissues, summarize key procedures propose strategies using bioprinting. The also discuss challenges organoids’ approaches perspectives on future applications, opening opportunities model tissues response treatment.

Язык: Английский

Процитировано

29

Mild photothermal therapy assist in promoting bone repair: Related mechanism and materials DOI Creative Commons
Zehao Yu, Hao Wang, Boda Ying

и другие.

Materials Today Bio, Год журнала: 2023, Номер 23, С. 100834 - 100834

Опубликована: Окт. 20, 2023

Achieving precision treatment in bone tissue engineering (BTE) remains a challenge. Photothermal therapy (PTT), as form of therapy, has been extensively investigated for its safety and efficacy. It demonstrated significant potential the orthopedic diseases such tumors, postoperative infections osteoarthritis. However, high temperatures associated with PTT can lead to certain limitations drawbacks. In recent years, researchers have explored use biomaterials mild photothermal (MPT), which offers promising approach addressing these limitations. This review provides comprehensive overview mechanisms underlying MPT presents compilation agents their utilization strategies repair. Additionally, paper discusses future prospects MPT-assisted regeneration, aiming provide insights recommendations optimizing material design this field.

Язык: Английский

Процитировано

26

Platelet-rich fibrin as an autologous biomaterial for bone regeneration: mechanisms, applications, optimization DOI Creative Commons

Kewen Jia,

Jiaqian You, Yuemeng Zhu

и другие.

Frontiers in Bioengineering and Biotechnology, Год журнала: 2024, Номер 12

Опубликована: Апрель 16, 2024

Platelet-rich fibrin, a classical autologous-derived bioactive material, consists of fibrin scaffold and its internal loading growth factors, platelets, leukocytes, with the gradual degradation slow release physiological doses factors. PRF promotes vascular regeneration, proliferation migration osteoblast-related cells such as mesenchymal cells, osteoblasts, osteoclasts while having certain immunomodulatory anti-bacterial effects. has excellent osteogenic potential been widely used in field bone tissue engineering dentistry. However, there are still some limitations PRF, improvement biological properties is one most important issues to be solved. Therefore, it often combined scaffolds enhance mechanical delay degradation. In this paper, we present systematic review development platelet-rich derivatives, structure mechanisms, applications, optimization broaden their clinical applications provide guidance for translation.

Язык: Английский

Процитировано

14

The Role of Bioceramics for Bone Regeneration: History, Mechanisms, and Future Perspectives DOI Creative Commons
Md Amit Hasan Tanvir, Abdul Khaleque,

Ga-Hyun Kim

и другие.

Biomimetics, Год журнала: 2024, Номер 9(4), С. 230 - 230

Опубликована: Апрель 12, 2024

Osteoporosis is a skeletal disorder marked by compromised bone integrity, predisposing individuals, particularly older adults and postmenopausal women, to fractures. The advent of bioceramics for regeneration has opened up auspicious pathways addressing osteoporosis. Research indicates that can help bones grow back activating morphogenetic protein (BMP), mitogen-activated kinase (MAPK), wingless/integrated (Wnt)/β-catenin in the body when combined with stem cells, drugs, other supports. Still, have some problems, such as not being flexible enough prone breaking, well difficulties growing cells discovering suitable supports different types. While there been improvements making better healing bones, it important keep looking new ideas from areas medicine make them even better. By conducting thorough scrutiny pivotal role play facilitating regeneration, this review aspires propel forward rapidly burgeoning domain scientific exploration. In end, appreciation will contribute development novel enhance regrowth offer patients disorders alternative treatments.

Язык: Английский

Процитировано

12

Role of Bioceramics for Bone Regeneration; History, Mechanisms and Future Perspective DOI Open Access
Md Amit Hasan Tanvir, Abdul Khaleque,

Ga-Hyun Kim

и другие.

Опубликована: Апрель 4, 2024

Osteoporosis is a bone condition where bones become weaker, leading to fractures, especially in older adults and postmenopausal women. Bioceramics for regeneration have indeed emerged as promising solution conditions like osteoporosis. Choosing the right bioceramic depends on how quickly it dissolves, strong is, whether body will react it. Studies show that bioceramics can help grow back by activating (bone morphogenetic protein) BMP, (mitogen-activated protein kinase) MAPK, Wingless/integrated (Wnt)/β-catenin pathways when combined with stem cells, drugs, supports. However, some problems not being flexible enough prone breaking, well difficulties growing cells finding supports different types. While there has been progress improving healing, we need keep looking new ideas from other areas of medicine them. This review aims add expanding field scientific research offering detailed look at growth factors contribute regeneration. Ultimately, this knowledge creating types improve regrowth, providing treatment options people diseases.

Язык: Английский

Процитировано

11

ECM-mimicking composite hydrogel for accelerated vascularized bone regeneration DOI Creative Commons
Guanglong Li, Fei Gao, Donglei Yang

и другие.

Bioactive Materials, Год журнала: 2024, Номер 42, С. 241 - 256

Опубликована: Сен. 4, 2024

Язык: Английский

Процитировано

11