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February 28, 2026Frontiers in Bioengineering and Biotechnology0 citationsOpen Access

Microneedle-based transdermal delivery systems for metabolic bone diseases: advances, challenges, and future perspectives

XXXingwen XieXZXianli ZhengDLD.-Q. Li

Key Points

  • The aim is to explore microneedle technology for delivering treatments for metabolic bone diseases effectively.
  • Reviewed the classification and material properties of microneedle systems.
  • Analyzed the evolution of microneedles into intelligent therapeutic platforms.
  • Summarized preclinical advances in microneedle applications for metabolic bone diseases.
  • Examined manufacturing, safety, and clinical translation challenges.
  • Microneedle systems improve drug bioavailability and patient adherence compared to traditional methods.
  • Integration of bone-targeting ligands enhances therapeutic efficacy.
  • Recent studies demonstrate improved pharmacokinetic profiles for drugs delivered via microneedles.
  • Identified current manufacturing and safety hurdles for clinical use.

Abstract

Metabolic bone diseases (MBDs), such as osteoporosis and rickets, present significant clinical challenges due to the chronic nature of treatment and the limitations of conventional systemic therapies. Oral medications often suffer from low bioavailability and gastrointestinal intolerance, while injectable biologics are hampered by poor patient adherence. Microneedle (MN) systems have emerged as a transformative transdermal delivery platform capable of overcoming these barriers. This review provides a comprehensive overview of MN technology, detailing its classification, material properties, and advantages in bypassing the stratum corneum for painless administration. We analyze how MNs have evolved from physical conduits into intelligent therapeutic platforms that integrate bone-targeting ligands, stimuli-responsive release mechanisms, and immunomodulatory functions to precisely regulate the bone microenvironment. Furthermore, we summarize recent preclinical advances in MN applications for MBDs, highlighting their ability to improve pharmacokinetic profiles and therapeutic efficacy. Finally, the review critically examines current hurdles regarding manufacturing, safety, and clinical translation, and offers perspectives on next-generation systems that combine diagnostic sensing with adaptive therapy to realize personalized bone health management.

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Cite This Study

Xie et al. (2026) studied this question.

synapsesocial.com/papers/69a285aa0a974eb0d3c00ac8https://doi.org/10.3389/fbioe.2026.1793776
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