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April 3, 2026Applied Sciences0 citationsOpen Access

Effects of Physical Stimulation and Bioactive Agents in Bone Regenerative Medicine: Recent Advances and Synergistic Approaches

EBElisa BorsaniFRFederica ReNSNathalie Steimberg

Key Points

  • This review examines how physical stimulation and bioactive agents contribute to bone regeneration.
  • Literature review of recent advances in bone regenerative medicine.
  • Analysis of biophysical stimuli like mechanical loading and ultrasound for tissue promotion.
  • Discussion on bioactive substances such as growth factors and peptides.
  • Evaluation of synergistic approaches integrating physical stimulation with bioactive delivery.
  • Biophysical stimuli enhance osteogenic differentiation and tissue remodeling.
  • Bioactive agents improve cellular responses and microenvironment modulation.
  • Synergistic approaches can reduce healing times and complications in bone regeneration.

Abstract

Bone tissue regeneration represents a complex biological process regulated by mechanical, biochemical, and cellular interactions. It remains a major challenge in regenerative medicine due to the limited self-healing capacity of large or complex bone defects. Recent advances have highlighted the pivotal role of biophysical stimuli, such as mechanical loading, electromagnetic fields, ultrasound, and photobiomodulation, in promoting osteogenic differentiation and tissue remodeling. At the same time, bioactive substances, including growth factors, peptides delivered primarily via extracellular vesicles, and biomaterial-based delivery systems, have shown a potential role in enhancing cellular responses and modulating the microenvironment to promote regeneration. This review aims to provide a comprehensive overview of the latest progress in understanding how biophysical and bioactive stimuli converge to regulate bone regeneration and to consider their synergistic approaches that integrate physical stimulation with the controlled release of bioactive molecules. These combined strategies are promising to improve tissue integration and reduce healing times and complications, representing a future research direction.

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Cite This Study

Borsani et al. (2026) studied this question.

synapsesocial.com/papers/69cf5cd15a333a821460a686https://doi.org/10.3390/app16073403
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