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Microneedle Patches as Drug and Vaccine Delivery Platform.

作者信息

Li Junwei, Zeng Mingtao, Shan Hu, Tong Chunyi

机构信息

College of Animal Science and Veterinary Medicine, Qingdao Agricultural University, Qingdao, 266109, China.

Center of Emphasis in Infectious Diseases, Department of Biomedical Sciences, Paul L. Foster School of Medicine, Texas Tech University Health Sciences Center, El Paso, Texas 79905-2827, United States.

出版信息

Curr Med Chem. 2017;24(22):2413-2422. doi: 10.2174/0929867324666170526124053.


DOI:10.2174/0929867324666170526124053
PMID:28552053
Abstract

BACKGROUND: Transcutaneous delivery is the ideal method for delivering therapeutic reagents or vaccines into skin. With their promise of self-administration, cost-effective and high efficiency, microneedle patches have been studied intensively as therapeutic and vaccination delivery platform that replaces injection by syringe. This review aims to summarize the recent advancements of microneedle patches in application for drugs and vaccine delivery. METHODS: We reviewed the most of recently published papers on microneedle patches, summarized their evolution, classification, state-of the-art capabilities and discussed promising application in drugs and vaccine delivery. RESULTS: With the rapid development of nanotechnology, microneedle patches have been improved by switching from undissolving to dissolving microneedles, and their safety has also improved dramatically. As a drug delivery tool, microneedle patches can deliver bioactive molecular of different physical size. Additionally, microneedle patches can be coated or encapsulate with DNA vaccine, subunit antigen, inactivated or live virus vaccine. Combining clinical results with the results of patient interview, microneedle patches are found to be feasible and are predicated to soon be acceptable for the medical service. CONCLUSION: In this review, we summarized the evolution, current and future application of microneedle patches as delivery vehicle for drugs and vaccines. Compared with traditional delivery tools, microneedle patches have many advantages, such as providing pain-free, non-invasive, convenient route for reagent administration and delivery, with no cold chain required for storage and transportation as well as decreasing sharp medical waste, needle-caused injury and transmission of blood-borne infectious disease in rural area. However, even though there are dramatic progress in preclinical investigation of microneedle patches, further testing will be required for clinical application. Further research should be implemented in multiple fields, such as vaccinology, immunology, and materials science, to improve this delivery platform. Because of their advantages in dose sparing, safety and treatment compliance, microneedle patches are expected to be widely applied in clinical treatment and vaccine administration in near future.

摘要

相似文献

[1]
Microneedle Patches as Drug and Vaccine Delivery Platform.

Curr Med Chem. 2017

[2]
Dissolving Microneedle Patches for Dermal Vaccination.

Pharm Res. 2017-7-17

[3]
Microneedles-Based Transdermal Drug Delivery Systems: A Review.

J Biomed Nanotechnol. 2017-12-1

[4]
Microneedles for vaccine delivery: challenges and future perspectives.

Ther Deliv. 2017-6

[5]
Development of novel double-decker microneedle patches for transcutaneous vaccine delivery.

Int J Pharm. 2017-8-30

[6]
Rabies vaccination in dogs using a dissolving microneedle patch.

J Control Release. 2016-8-11

[7]
Microneedle patches for vaccination in developing countries.

J Control Release. 2016-10-28

[8]
Engineering Microneedle Patches for Vaccination and Drug Delivery to Skin.

Annu Rev Chem Biomol Eng. 2017-3-24

[9]
Enhanced Stability of Inactivated Influenza Vaccine Encapsulated in Dissolving Microneedle Patches.

Pharm Res. 2016-4

[10]
Microneedle technologies for (trans)dermal drug and vaccine delivery.

J Control Release. 2012-2-4

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[2]
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Gels. 2025-6-18

[3]
A Bibliometric Analysis of Microneedle-Mediated Drug Delivery: Trends, Hotspots, and Future Directions.

Drug Des Devel Ther. 2025-5-10

[4]
AG86 Peptide-modified Reactive Oxygen Species-responsive Polymer Nanovesicles for Transdermal Delivery of Hydrophilic Ergothioneine to Basal Keratinocytes.

AAPS PharmSciTech. 2025-5-9

[5]
Polymeric microneedle advancements in macromolecule drug delivery: current trends, challenges, and future perspectives.

Naunyn Schmiedebergs Arch Pharmacol. 2025-4-17

[6]
A review on recent advances and challenges of microneedle technology for enhanced topical treatment of skin disorders.

Arch Dermatol Res. 2025-4-12

[7]
Beyond the Needle: Innovative Microneedle-Based Transdermal Vaccination.

Medicines (Basel). 2025-2-7

[8]
Microneedles as a potential platform for improving antibiotic delivery to bacterial infections.

Heliyon. 2024-8-29

[9]
A Stereolithography-Based Modified Spin-Casting Method for Faster Laboratory-Scale Production of Dexamethasone-Containing Dissolving Microneedle Arrays.

Pharmaceutics. 2024-7-29

[10]
Leveraging Resource Centers for Strengthening Immunization Supply Chain.

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