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Review

Revolutionizing Veterinary Vaccines: Overcoming Cold-Chain Barriers Through Thermostable and Novel Delivery Technologies

1
Department of Poultry Science, Auburn University, Auburn, AL 36849-5416, USA
2
Livestock Service Branch, Madhyabindu Municipality, Rampur, Bharatpur 13712, Nepal
3
Faculty of Animal Science, Veterinary Science and Fisheries, Agriculture and Forestry University, Rampur, Bharatpur 13712, Nepal
4
Nepal Polytechnic Institute, Bharatpur 13712, Nepal
*
Authors to whom correspondence should be addressed.
Appl. Microbiol. 2025, 5(3), 83; https://doi.org/10.3390/applmicrobiol5030083
Submission received: 23 June 2025 / Revised: 19 July 2025 / Accepted: 8 August 2025 / Published: 19 August 2025

Abstract

Veterinary vaccines are essential tools for controlling infectious and zoonotic diseases, safeguarding animal welfare, and ensuring global food security. However, conventional vaccines are hindered by cold-chain dependence, thermal instability, and logistical challenges, particularly in low- and middle-income countries (LMICs). This review explores next-generation veterinary vaccines, emphasizing innovations in thermostability and delivery platforms to overcome these barriers. Recent advances in vaccine drying technologies, such as lyophilization and spray drying, have improved antigen stability and storage resilience, facilitating effective immunization in remote settings. Additionally, novel delivery systems, including nanoparticle-based formulations, microneedles, and mucosal routes (intranasal, aerosol, and oral), enhance vaccine efficacy, targeting immune responses at mucosal surfaces while minimizing invasiveness and cost. These approaches reduce reliance on cold-chain logistics, improve vaccine uptake, and enable large-scale deployment in field conditions. The integration of thermostable formulations with innovative delivery technologies offers scalable solutions to immunize livestock and aquatic species against major pathogens. Moreover, these strategies contribute significantly to One Health objectives by mitigating zoonotic spillovers, reducing antibiotic reliance, and supporting sustainable development through improved animal productivity. The emerging role of artificial intelligence (AI) in vaccine design—facilitating epitope prediction, formulation optimization, and rapid diagnostics—further accelerates vaccine innovation, particularly in resource-constrained environments. Collectively, the convergence of thermostability, advanced delivery systems, and AI-driven tools represents a transformative shift in veterinary vaccinology, with profound implications for public health, food systems, and global pandemic preparedness.
Keywords: vaccines; cold chain; thermostable vaccines; nanovaccines; microneedles; mucosal immunity; One Health; artificial intelligence (AI) vaccines; cold chain; thermostable vaccines; nanovaccines; microneedles; mucosal immunity; One Health; artificial intelligence (AI)

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MDPI and ACS Style

Raut, R.; Shrestha, R.; Adhikari, A.; Fatima, A.; Naeem, M. Revolutionizing Veterinary Vaccines: Overcoming Cold-Chain Barriers Through Thermostable and Novel Delivery Technologies. Appl. Microbiol. 2025, 5, 83. https://doi.org/10.3390/applmicrobiol5030083

AMA Style

Raut R, Shrestha R, Adhikari A, Fatima A, Naeem M. Revolutionizing Veterinary Vaccines: Overcoming Cold-Chain Barriers Through Thermostable and Novel Delivery Technologies. Applied Microbiology. 2025; 5(3):83. https://doi.org/10.3390/applmicrobiol5030083

Chicago/Turabian Style

Raut, Rabin, Roshik Shrestha, Ayush Adhikari, Arjmand Fatima, and Muhammad Naeem. 2025. "Revolutionizing Veterinary Vaccines: Overcoming Cold-Chain Barriers Through Thermostable and Novel Delivery Technologies" Applied Microbiology 5, no. 3: 83. https://doi.org/10.3390/applmicrobiol5030083

APA Style

Raut, R., Shrestha, R., Adhikari, A., Fatima, A., & Naeem, M. (2025). Revolutionizing Veterinary Vaccines: Overcoming Cold-Chain Barriers Through Thermostable and Novel Delivery Technologies. Applied Microbiology, 5(3), 83. https://doi.org/10.3390/applmicrobiol5030083

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