Vaccines: An Important Tool for Infectious Disease.

Saika Saman, Iti Chauhan, Nimisha Srivastava
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引用次数: 1

Abstract

Vaccines are usually regarded as one of the most important tools in the battle against infectious diseases. Even though currently accessible vaccinations are an incredible success story in contemporary medicine and have had a significant impact on global morbidity and death rates, it is evident that current vaccine delivery approaches need to be improved. To allow the successful creation of vaccinations against contagious diseases that have proven challenging to manage with conventional procedures, improvements are necessary. Improvements could include the introduction of innovative injectable adjuvants or novel delivery methods, such as mucosal immunization. Protection against infections that infect mucosal areas may necessitate mucosal delivery. Alternatively, innovative techniques for delivery, such as intradermal administration using self-administrable devices or the use of microneedle technology to bypass the stratum corneum's skin penetration barrier and aid in the transport of antigens, could be utilized to increase vaccine compliance. Needle-free delivery systems are of particular relevance for safer mass immunization programs, as they would prevent problems caused by needles reuse in several regions of the world, as well as needle-stick accidents. Based on this information, future vaccine development will mainly concentrate on rational antigen, adjuvant, and, most importantly, delivery mechanism design, resulting in new and improved vaccinations. In addition, this study discusses the current state and prospects of vaccine delivery via a variety of channels, including non- or minimally invasive approaches.

疫苗:传染病的重要工具。
疫苗通常被认为是对抗传染病最重要的工具之一。尽管目前可获得的疫苗接种在当代医学上取得了令人难以置信的成功,并对全球发病率和死亡率产生了重大影响,但显然需要改进目前的疫苗提供方法。事实证明,用常规程序管理传染性疾病具有挑战性,为了能够成功地研制出针对这些疾病的疫苗,有必要进行改进。改进可能包括引入创新的注射佐剂或新的递送方法,如粘膜免疫。防止感染粘膜区域的感染可能需要粘膜输送。另外,可以利用创新的给药技术,如使用自给药装置的皮内给药或使用微针技术绕过角质层的皮肤渗透屏障,帮助抗原的运输,以提高疫苗的依从性。无针输送系统与更安全的大规模免疫规划特别相关,因为它们可以防止世界若干地区因针头重复使用造成的问题以及针头事故。基于这些信息,未来的疫苗开发将主要集中在合理的抗原、佐剂和最重要的递送机制设计上,从而产生新的和改进的疫苗接种。此外,本研究还讨论了通过多种途径(包括非侵入性或微创性途径)给药的现状和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.80
自引率
0.00%
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