vaccine delivery
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2022 ◽  
Vol 12 ◽  
Author(s):  
Bharti Mangla ◽  
Shamama Javed ◽  
Muhammad H. Sultan ◽  
Waquar Ahsan ◽  
Geeta Aggarwal ◽  
...  

Drug delivery using oral route is the most popular, convenient, safest and least expensive approach. It includes oral transmucosal delivery of bioactive compounds as the mucosal cavity offers an intriguing approach for systemic drug distribution. Owing to the dense vascular architecture and high blood flow, oral mucosal layers are easily permeable and can be an ideal site for drug administration. Recently, the transmucosal route is being investigated for other therapeutic candidates such as vaccines for their efficient delivery. Vaccines have the potential to trigger immune reactions and can act as both prophylactic and therapeutic conduit to a variety of diseases. Administration of vaccines using transmucosal route offers multiple advantages, the most important one being the needle-free (non-invasive) delivery. Development of needle-free devices are the most recent and pioneering breakthrough in the delivery of drugs and vaccines, enabling patients to avoid needles, reducing anxiety, pain and fear as well as improving compliance. Oral, nasal and aerosol vaccination is a novel immunization approach that utilizes a nanocarrier to administer the vaccine. Nanocarriers improve the bioavailability and serve as adjuvants to elicit a stronger immune response, resulting in increased effectiveness of vaccination. Drugs and vaccines with lower penetration abilities can also be delivered transmucosally while maintaining their biological function. The development of micro/nanocarriers for transmucosal delivery of macromolecules, vaccines and other substances is currently drawing much attention and a number of studies were performed recently. This comprehensive review is aimed to summarize the most recent investigations on needle-free and non-invasive approaches for the delivery of vaccines using oral transmucosal route, their strengths and associated challenges. The oral transmucosal vaccine delivery by nanocarriers is the most upcoming advancement in efficient vaccine delivery and this review would help further research and trials in this field.


Pharmaceutics ◽  
2022 ◽  
Vol 14 (1) ◽  
pp. 156
Author(s):  
Nur Adilah Abdul Rahman ◽  
Abdin Shakirin Mohamad Norpi ◽  
Muhammad Luqman Nordin ◽  
Mohd Cairul Iqbal Mohd Amin ◽  
Abdullah Al-Hadi Ahmad Fuaad ◽  
...  

Dengue remains a severe threat to public health. The safety and efficacy of the licensed dengue vaccine is not clinically satisfactory, which necessitate the need of new approach in designing an effective dengue vaccine without eliciting adverse reaction. Herein, we have designed a lipidated multi-epitope peptide vaccine (LipoDV) that can elicit highly targeted humoral and cell-mediated immune responses. To improve its immunogenicity, LipoDV was presented on the surface of MPLA-functionalized polymersome nanoparticles (PNs-LipoDV-MPLA). The as-constructed vaccine delivery platform resembles the structural morphology of DENV owing to its spherical nanoscale particle size and surface immunostimulatory properties given by LipoDV and MPLA that emulating the functional role of DENV E and prM/M proteins respectively. A proof-of-concept study demonstrated that BALB/c mice immunized with PNs-LipoDV-MPLA induced a stronger antigen-specific antibody response with an enhanced cell-mediated immunity as characterized by the elevated IFN-γ secretion in comparison to other tested vaccine candidates which possess a lesser structural trait of DENV. The DENV-mimicking nanoparticles vaccine exhibited negligible toxicity as analyzed by hemolytic test, MTT assay, histopathological examination and abnormal toxicity test on immunized mice. Collectively, our study provides a strong foundation in designing an effective peptide-based vaccine delivery platform against DENV infection.


Author(s):  
Keith D. King ◽  
Reagan Bartel ◽  
Ashton James ◽  
Shannon E. MacDonald
Keyword(s):  

2022 ◽  
pp. 494-516
Author(s):  
Sumira Malik ◽  
Shristi Kishore ◽  
Shradha A. Kumar ◽  
Anjali Kumari ◽  
Manisha Kumari ◽  
...  

Vaccination is one of the most effective approaches for the prevention of deadly and highly contagious diseases. One of the important biomedical applications of nanoemulsions is in the process of vaccination. Nanoemulsions are made from nano-sized safe, well-considered ingredients, amalgamated in a protective way to bring forth a stable emulsion. They have provided ways for vaccine delivery using intranasal or mucosal oil-based emulsions rather than using needles. Also, some nanoemulsions have effectively shown anti-pathogenic activities against several germs. Nanoemulsions are also used as vaccine adjuvants and are used to boost the effectiveness of vaccines. Nanoemulsion-based adjuvants put forward the possibility of non-irritating, needle-free vaccines, handed out as nose drops or as a simple nasal sprayer. The chapter aims to discuss the applications of nanoemulsions in the process of vaccination.


Molecules ◽  
2021 ◽  
Vol 27 (1) ◽  
pp. 204
Author(s):  
Xiaoyi Gao ◽  
Nan Liu ◽  
Zengming Wang ◽  
Jing Gao ◽  
Hui Zhang ◽  
...  

Chitosan is a natural polysaccharide, mainly derived from the shell of marine organisms. At present, chitosan has been widely used in the field of biomedicine due to its special characteristics of low toxicity, biocompatibility, biodegradation and low immunogenicity. Chitosan nanoparticles can be easily prepared. Chitosan nanoparticles with positive charge can enhance the adhesion of antigens in nasal mucosa and promote its absorption, which is expected to be used for intranasal vaccine delivery. In this study, we prepared chitosan nanoparticles by a gelation method, and modified the chitosan nanoparticles with mannose by hybridization. Bovine serum albumin (BSA) was used as the model antigen for development of an intranasal vaccine. The preparation technology of the chitosan nanoparticle-based intranasal vaccine delivery system was optimized by design of experiment (DoE). The DoE results showed that mannose-modified chitosan nanoparticles (Man-BSA-CS-NPs) had high modification tolerance and the mean particle size and the surface charge with optimized Man-BSA-CS-NPs were 156 nm and +33.5 mV. FTIR and DSC results confirmed the presence of Man in Man-BSA-CS-NPs. The BSA released from Man-BSA-CS-NPs had no irreversible aggregation or degradation. In addition, the analysis of fluorescence spectroscopy of BSA confirmed an appropriate binding constant between CS and BSA in this study, which could improve the stability of BSA. The cell study in vitro demonstrated the low toxicity and biocompatibility of Man-BSA-CS-NPs. Confocal results showed that the Man-modified BSA-FITC-CS-NPs promote the endocytosis and internalization of BSA-FITC in DC2.4 cells. In vivo studies of mice, Man-BSA-CS-NPs intranasally immunized showed a significantly improvement of BSA-specific serum IgG response and the highest level of BSA-specific IgA expression in nasal lavage fluid. Overall, our study provides a promising method to modify BSA-loaded CS-NPs with mannose, which is worthy of further study.


2021 ◽  
Vol 8 ◽  
Author(s):  
Zhe Sun ◽  
Wenyi Li ◽  
Jason C. Lenzo ◽  
James A. Holden ◽  
Michael J. McCullough ◽  
...  

Vaccination is one of the most efficacious and cost-effective ways to protect people from infectious diseases and potentially cancer. The shift in vaccine design from disrupted whole pathogens to subunit antigens has brought attention on to vaccine delivery materials. For the last two decades, nanotechnology-based vaccines have attracted considerable attention as delivery vehicles and adjuvants to enhance immunogenicity, exemplified with the current COVID vaccines. The nanoparticle vaccines display unique features in protecting antigens from degradation, controlled antigen release and longer persisting immune response. Due to their size, shape and surface charge, they can be outstanding adjuvants to achieve various immunological effects. With the safety and biodegradable benefit of calcium phosphate nanoparticles (CaP NPs), they are an efficient carrier for vaccine design and adjuvants. Several research groups have studied CaP NPs in the field of vaccination with great advances. Although there are several reports on the overview of CaP NPs, they are limited to the application in biomedicine, drug delivery, bone regeneration and the methodologies of CaP NPs synthesis. Hence, we summarised the basic properties of CaP NPs and the recent vaccine development of CaP NPs in this review.


Author(s):  
Jhanvi Sharma ◽  
Carcia S. Carson ◽  
Trevor Douglas ◽  
John T. Wilson ◽  
Sebastian Joyce

2021 ◽  
Author(s):  
Robert A. Bednarczyk ◽  
Kyra A. Hester ◽  
Sameer M. Dixit ◽  
Anna S. Ellis ◽  
Cam Escoffery ◽  
...  

Introduction - Increases in global childhood vaccine delivery have led to decreases in morbidity from vaccine-preventable diseases. However, these improvements in vaccination have been heterogeneous, with some countries demonstrating greater levels of change and sustainability. Understanding what these high-performing countries have done differently and how their decision-making processes will support targeted improvements in childhood vaccine delivery. Methods and analysis - We studied three countries - Nepal, Senegal, Zambia - with exemplary improvements in coverage between 2000-2018 as part of the Exemplars in Global Health Program. We apply established implementation science frameworks to understand the how and why underlying improvements in vaccine delivery and coverage. Through mixed methods research we will identify drivers of catalytic change in vaccine coverage and the decision-making process supporting these interventions and activities. Methods include quantitative analysis of available datasets and in-depth interviews and focus groups with key stakeholders in the global, national, and sub-national government and non-governmental organization space, as well as community members and local health delivery system personnel. Ethics and dissemination - Working as a multinational and multidisciplinary team, and under oversight from all partner and national-level (where applicable) institutional review boards, we collect data from participants who provided informed consent. Findings are disseminated through a variety of forms, including peer-reviewed manuscripts related to country-specific case studies and vaccine system domain-specific analyses, presentations to key stakeholders in the global vaccine delivery space, and narrative dissemination on the Exemplars.Health website.


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