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February 8, 2026Micro2 citationsOpen Access

The Cutting-Edge Progress of Nanomaterials and Technologies in Biomedical Applications

HWHeyi WeiYZYang ZouXQXuecheng Qu

Key Points

  • The aim is to explore the design, synthesis, and application of nanomaterials in biomedicine.
  • Systematic review of nanomaterials in biomedicine
  • Focus on drug delivery, tissue engineering, and disease diagnosis
  • Evaluation of synthesis and characterization techniques
  • Nanocarriers enable precise drug targeting and controlled release
  • Nanocomposite scaffolds mimic natural extracellular matrix for tissue repair
  • Nanomaterials enhance sensitivity and specificity of biosensors for disease diagnosis

Abstract

Nanomaterials have emerged as a pivotal driving force in the field of biomedicine due to their unique physicochemical properties. This article systematically reviews the design, synthesis, and characterization of novel nanomaterials, with a focus on their application advances in three key areas: targeted drug delivery, tissue engineering and regenerative medicine, and disease diagnosis and sensing. In drug delivery, nanocarriers enable precise drug targeting and controlled release through surface functionalization and stimuli-responsive design. In tissue engineering, nanocomposite scaffolds mimic the structure and function of the natural extracellular matrix, providing an ideal microenvironment for tissue repair. In disease diagnosis, nanomaterials significantly enhance the sensitivity and specificity of biosensors, promoting the development of real-time, non-invasive, and ultra-early detection technologies. The article further summarizes current challenges in the clinical translation of nanomedicine and envisions its future trends toward intelligence, personalization, and the integration of diagnosis and therapy.

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Cite This Study

Wei et al. (2026) studied this question.

synapsesocial.com/papers/698828210fc35cd7a8847629https://doi.org/10.3390/micro6010012
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