Platelet Membrane Biomimetic Manganese Carbonate Nanoparticles Promote Breast Cancer Stem Cell Clearance for Sensitized Radiotherapy DOI Creative Commons
Yi Jiang,

Xiaoming Liao,

Wei Tang

et al.

International Journal of Nanomedicine, Journal Year: 2024, Volume and Issue: Volume 19, P. 1699 - 1707

Published: Feb. 1, 2024

Introduction: The presence of cancer stem cells (CSCs) significantly limits the therapeutic efficacy radiotherapy (RT). Efficient elimination potential CSCs is crucial for enhancing effectiveness RT. Methods: In this study, we developed a biomimetic hybrid nano-system (PMC) composed MnCO 3 as inner core and platelet membrane (PM) outer shell. By exploiting specific recognition properties surface proteins, PMC enables precise targeting CSCs. Sonodynamic therapy (SDT) was employed using manganese carbonate nanoparticles (MnCO NPs), which generate abundant reactive oxygen species (ROS) upon ultrasound (US) irradiation, thereby impairing CSC self-renewal capacity eradicating Subsequent RT effectively eliminates common tumor cells. Results: Both in vitro cell experiments vivo animal studies demonstrate that SDT mediated by synergistically enhances to selectively combat while inhibiting growth without noticeable side effects. Discussion: Our findings offer novel insights safety profiles Keywords: clearance, radiosensitization, membrane, sonodynamic therapy,

Language: Английский

Structural and Functional Adaptive Artificial Bone: Materials, Fabrications, and Properties DOI
Pei Feng, Rongyang Zhao, Weiming Tang

et al.

Advanced Functional Materials, Journal Year: 2023, Volume and Issue: 33(23)

Published: March 6, 2023

Abstract It is an urgent need that defect repair can develop from simple device fixation to living tissue reconstruction, short life function replacement permanent regeneration repair. At present, bone transplantation has become the second largest surgery after blood transfusion, and artificial generates great hope for treatment of defect. In order defect, must have good biological properties sufficient mechanical properties, it should also shape matching site connected porous structure. For structures requirements bone, in this review three major challenges faced by are systemtically analyzed current methods strategies address these issues discussed: 1) developing a type scaffold material with both 2) realizing controllable fabrication individual multistage pore structure scaffold, 3) transformation man‐made Besides, summarizes advantages disadvantages discusses potential future directions structural functional adaptive regeneration.

Language: Английский

Citations

147

Recent Advances in 3D Printing of Smart Scaffolds for Bone Tissue Engineering and Regeneration DOI

Xun Yuan,

Wei Zhu, Zhongyuan Yang

et al.

Advanced Materials, Journal Year: 2024, Volume and Issue: 36(34)

Published: June 11, 2024

The repair and functional reconstruction of bone defects resulting from severe trauma, surgical resection, degenerative disease, congenital malformation pose significant clinical challenges. Bone tissue engineering (BTE) holds immense potential in treating these defects, without incurring prevalent complications associated with conventional autologous or allogeneic grafts. 3D printing technology enables control over architectural structures at multiple length scales has been extensively employed to process biomimetic scaffolds for BTE. In contrast inert grafts, next-generation smart possess a remarkable ability mimic the dynamic nature native extracellular matrix (ECM), thereby facilitating regeneration. Additionally, they can generate tailored controllable therapeutic effects, such as antibacterial antitumor properties, response exogenous and/or endogenous stimuli. This review provides comprehensive assessment progress 3D-printed BTE applications. It begins an introduction physiology, followed by overview technologies utilized scaffolds. Notable advances various stimuli-responsive strategies, efficacy, applications are discussed. Finally, highlights existing challenges development implementation scaffolds, well emerging this field.

Language: Английский

Citations

56

Oxygen vacancy boosting Fenton reaction in bone scaffold towards fighting bacterial infection DOI Creative Commons
Cijun Shuai,

Xiaoxin Shi,

Feng Yang

et al.

International Journal of Extreme Manufacturing, Journal Year: 2023, Volume and Issue: 6(1), P. 015101 - 015101

Published: Oct. 10, 2023

Highlights High-energy ball milling was proposed to construct oxygen vacancy defects. Scaffold with individualized shape and porous structure fabricated by selective laser sintering. Antibacterial material used adsorb H 2 O the site of bacterial infection. The accumulated could amplify Fenton reaction efficiency induce more ·OH. scaffold possessed matched mechanical properties good biocompatibility.

Language: Английский

Citations

49

Ag-doped CNT/HAP nanohybrids in a PLLA bone scaffold show significant antibacterial activity DOI
Cijun Shuai,

Xiaoxin Shi,

Kai Wang

et al.

Bio-Design and Manufacturing, Journal Year: 2024, Volume and Issue: 7(2), P. 105 - 120

Published: Feb. 27, 2024

Language: Английский

Citations

45

Accelerating Ce3+/Ce4+ Conversion in CeO2 via Mn doping to Endow Scaffolds with Chemodynamic Therapy Properties DOI
Cijun Shuai,

Kangdong Wang,

Shuping Peng

et al.

Surfaces and Interfaces, Journal Year: 2024, Volume and Issue: 45, P. 103846 - 103846

Published: Jan. 3, 2024

Language: Английский

Citations

37

3D-printed bone scaffolds containing graphene oxide/gallium nanocomposites for dual functions of anti-infection and osteogenesis differentiation DOI
Huihui Zhao, Min Liu, Junzhe Wang

et al.

Surfaces and Interfaces, Journal Year: 2025, Volume and Issue: 57, P. 105770 - 105770

Published: Jan. 1, 2025

Language: Английский

Citations

3

Laser-beam powder bed fusion followed by annealing with stress: A promising route for magnetostrictive improvement of polycrystalline Fe81Ga19 alloys DOI
Chengde Gao, Xiong Yao, Youwen Deng

et al.

Additive manufacturing, Journal Year: 2023, Volume and Issue: 68, P. 103516 - 103516

Published: March 23, 2023

Language: Английский

Citations

35

Enhancing bone scaffold interfacial reinforcement through in situ growth of metal–organic frameworks (MOFs) on strontium carbonate: Achieving high strength and osteoimmunomodulation DOI

Guowen Qian,

Yuqian Mao, Shuai Yang

et al.

Journal of Colloid and Interface Science, Journal Year: 2023, Volume and Issue: 655, P. 43 - 57

Published: Oct. 31, 2023

Language: Английский

Citations

33

Additive manufacturing of promising heterostructure for biomedical applications DOI Creative Commons
Cijun Shuai, Desheng Li, Yao Xiong

et al.

International Journal of Extreme Manufacturing, Journal Year: 2023, Volume and Issue: 5(3), P. 032012 - 032012

Published: June 15, 2023

Abstract As a new generation of materials/structures, heterostructure is characterized by heterogeneous zones with dramatically different mechanical, physical or chemical properties. This endows unique interfaces, robust architectures, and synergistic effects, making it promising option as advanced biomaterials for the highly variable anatomy complex functionalities individual patients. However, main challenges developing lie in control crystal/phase evolution distribution/fraction components structures. In recent years, additive manufacturing techniques have attracted increasing attention due to flexibility tailored structures synthetic multimaterials. review focuses on biomedical applications. The structural features functional mechanisms are summarized. typical material systems heterostructure, mainly including metals, polymers, ceramics, their composites, presented. And resulting effects multiple properties also systematically discussed terms biocompatible, biodegradable, antibacterial, biosensitive magnetostrictive Next, this work outlines research progress employed from aspects advantages, processes, properties, highlights prospective utilization fields, particular bioscaffolds, vasculatures, biosensors biodetections. Finally, future directions breakthroughs prospected focus more applications infection prevention drug delivery.

Language: Английский

Citations

26

Zeolitic imidazolate framework-8: a versatile nanoplatform for tissue regeneration DOI Creative Commons
Zhixin Li,

Yinjin Shao,

Youwen Yang

et al.

Frontiers in Bioengineering and Biotechnology, Journal Year: 2024, Volume and Issue: 12

Published: April 9, 2024

Extensive research on zeolitic imidazolate framework (ZIF-8) and its derivatives has highlighted their unique properties in nanomedicine. ZIF-8 exhibits advantages such as pH-responsive dissolution, easy surface functionalization, efficient drug loading, making it an ideal nanosystem for intelligent delivery phototherapy. These characteristics have sparked significant interest potential applications tissue regeneration, particularly bone, skin, nerve regeneration. This review provides a comprehensive assessment of ZIF-8’s feasibility engineering, encompassing material synthesis, performance testing, the development multifunctional nanosystems. Furthermore, latest advancements field, well limitations future prospects, are discussed. Overall, this emphasizes developments engineering highlights nanoplatforms effective complex repair.

Language: Английский

Citations

10