4.6 Review

Biomedical Applications of Supramolecular Materials in the Controllable Delivery of Steroids

Journal

FRONTIERS IN MOLECULAR BIOSCIENCES
Volume 8, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fmolb.2021.700712

Keywords

steroids; supramolecular materials; interaction; biomedical application; chronic rhinosinusitis

Funding

  1. national key R and D program of China [2016YFC0905200]
  2. program for the Changjiang scholars and innovative research team [IRT13082]
  3. national natural science foundation of China [81630023, 81970852, 82000962]
  4. Beijing Bai-Qian-Wan talent project [2019A32]
  5. Public Welfare Development and Reform Pilot Project [2019-10]
  6. National Science and Technology Major Project [2019ZX09201-005]
  7. CAMS Innovation Fund for Medical Sciences [2019-I2M-5-022]

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Glucocorticoids are potent anti-inflammatory hormones used to treat chronic inflammatory diseases. Recent advances in the application of steroid-based supramolecular materials in drug delivery have shown promising results.
Glucocorticoids are a class of steroid hormones secreted from the adrenal glands. The strong anti-inflammatory effects make it be one of the most popular and versatile drugs available to treat chronic inflammatory diseases. Additionally, supramolecular materials have been widely exploited in drug delivery, due to their biocompatibility, tunability, and predictability. Thus, steroid-based supramolecular materials and the release of steroids have been applied in the treatment of inflammatory diseases. This mini-review summarized recent advances in supramolecular materials loaded with glucocorticoid drugs in terms of hydrophobic interactions, electrostatic interactions, hydrogen bonding, and pi-pi stackings. We also discussed and prospected the application of the glucocorticoid drugs-based supramolecular system on chronic rhinosinusitis, multifactorial inflammatory disease of the nasal and paranasal sinuses mucosal membranes. Overall, supramolecular materials can provide an alternative to traditional materials as a novel delivery platform in clinical practice.

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