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Recent advances in biomimetic nanodelivery systems for the treatment of osteoporosis
Zhaozhou Ren1, Wan'an Xiao1, Tingting Yang2
1Department of Orthopedics, Shengjing Hospital of China Medical University, Liaoning, 110004, China.
Abstract:
Osteoporosis is a progressive skeletal disorder characterized by imbalanced bone remodeling, microarchitectural deterioration, and increased fracture risk. Despite the availability of various antiresorptive and anabolic therapies, their limited tissue specificity, suboptimal efficacy, and long-term safety concerns hinder their clinical outcomes. In recent years, biomimetic nanodelivery systems have emerged as a promising therapeutic platform for osteoporosis, offering enhanced bone targeting, improved biocompatibility, and potential for multi-mechanistic intervention. This review systematically summarizes three major classes of biomimetic nanomedicine strategies: cell membrane-coated nanoparticles, extracellular vesicle-based delivery systems, and nanozyme-enabled therapeutic platforms. We discuss their construction principles, biological functions, mechanisms of action in modulating osteoblast osteoclast dynamics and bone microenvironment, and current advances in preclinical research. Furthermore, we analyze the translational challenges of these systems, including material heterogeneity, large-scale manufacturing, pharmacokinetic uncertainty, and regulatory bottlenecks. Despite these limitations, biomimetic nanodelivery offers a paradigm shift in osteoporosis treatment, with the potential to integrate bone targeting, immune modulation, oxidative stress regulation, and bone regeneration within a single therapeutic platform. Future research focusing on intelligent design, engineering standardization, and clinical evaluation will be critical to accelerate their path toward clinical application.
Insights
Biomimetic nanodelivery systems show promise for treating osteoporosis by targeting bone and improving therapies. Further research is needed to overcome manufacturing and regulatory hurdles for clinical use.
Area of Science:
- Biomaterials Science
- Nanomedicine
- Skeletal Biology
Background:
- Osteoporosis is a skeletal disorder with limited treatment options due to efficacy and safety concerns.
- Current therapies for osteoporosis lack tissue specificity and have suboptimal outcomes.
- Biomimetic nanodelivery systems offer a novel approach for osteoporosis treatment.
Purpose of the Study:
- To review biomimetic nanomedicine strategies for osteoporosis.
- To discuss construction, function, and mechanisms of action of these systems.
- To analyze translational challenges and future directions.
Main Methods:
- Systematic review of literature on biomimetic nanodelivery for osteoporosis.
- Categorization of strategies into cell membrane-coated nanoparticles, extracellular vesicles, and nanozymes.
- Analysis of preclinical research and translational challenges.
Main Results:
- Cell membrane-coated nanoparticles, extracellular vesicles, and nanozymes are key biomimetic strategies.
- These systems demonstrate potential for enhanced bone targeting and multi-mechanistic intervention.
- Preclinical studies show promise in modulating bone microenvironment and cellular dynamics.
Conclusions:
- Biomimetic nanodelivery systems represent a paradigm shift in osteoporosis treatment.
- These platforms offer integrated bone targeting, immune modulation, and regeneration.
- Overcoming challenges in design, manufacturing, and clinical evaluation is crucial for translation.
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