ArticleJournal of nanobiotechnology2024
Macrophage membrane-reversibly camouflaged nanotherapeutics accelerate fracture healing by fostering MSCs recruitment and osteogenic differentiation.
Article in Journal of nanobiotechnology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
What it found
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The trial behind it
Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
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Who cites it
8 citing papers in PubMed.
- Isopsoralen Promotes Mandibular Fracture Healing by Regulating Autophagy.Medical science monitor : international medical journal of experimental and clinical research · 2026Article
- Immunometabolic Modulation of the Bone Marrow Niche by Bioactive Materials to Rescue Impaired Fracture Healing.Stem cell reviews and reports · 2026Review
- Macrophage membrane-coated nanoparticles in inflammatory diseases: from bioinspired design to translational potential.Journal of nanobiotechnology · 2025Review
- ROS-scavenging nanomaterials as emerging tools for bone tissue regeneration: A comprehensive review of recent progress.Acta pharmaceutica Sinica. B · 2025Review
- Biomimetic Cell Membrane-Coated Scaffolds for Enhanced Tissue Regeneration.Advanced materials (Deerfield Beach, Fla.) · 2025Review
- Stealth missiles with precision guidance: A novel multifunctional nano-drug delivery system based on biomimetic cell membrane coating technology.Materials today. Bio · 2025Review
- Immunological and nutritional perspectives on macromolecular therapies for thoracic tumors.Frontiers in immunology · 2025Review
- [Research progress on bone repair biomaterials with the function of recruiting endogenous mesenchymal stem cells].Zhongguo xiu fu chong jian wai ke za zhi = Zhongguo xiufu chongjian waike zazhi = Chinese journal of reparative and reconstructive surgery · 2024Review
Corrections and comments
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Authors and funding
9 authors.
Funding
Abstract
The fracture healing outcome is largely dependent on the quantities as well as osteogenic differentiation capacities of mesenchymal stem cells (MSCs) at the lesion site. Herein, macrophage membrane (MM)-reversibly cloaked nanocomplexes (NCs) are engineered for the lesion-targeted and hierarchical co-delivery of short stromal derived factor-1α peptide (sSDF-1α) and Ckip-1 small interfering RNA (Ckip-1 siRNA, siCkip-1) to promote bone repair by concurrently fostering recruitment and osteogenic differentiation of endogenous MSCs. To construct the NCs, a membrane-penetrating α-helical polypeptide first assembles with siCkip-1, and the cationic NCs are sequentially coated with catalase and an outer shell of sSDF-1α-anchored MM. Due to MM-assisted inflammation homing, intravenously injected NCs could efficiently accumulate at the fractured femur, where catalase decomposes the local hydrogen peroxide to generate oxygen bubbles that drives the shedding of sSDF-1α-anchored MM in the extracellular compartment. The exposed, cationic inner core thus enables robust trans-membrane delivery into MSCs to induce Ckip-1 silencing. Consequently, sSDF-1α-guided MSCs recruitment cooperates with siCkip-1-mediated osteogenic differentiation to facilitate bone formation and accelerate bone fracture healing. This study provides an enlightened strategy for the hierarchical co-delivery of macromolecular drugs into different cellular compartments, and it also renders a promising modality for the management of fracture healing.
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