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February 28, 2026Vaccines1 citationsOpen Access

Future Pneumococcal Vaccines: Shifting from Capsular Polysaccharides to Protein-Based Immunogens

RZRuodan ZhengJSJiayi ShuXXXingchen Xie

Key Points

  • To evaluate the transition from polysaccharide-based vaccines to protein-based immunogens for pneumococcal disease.
  • Conducted a systematic literature search in PubMed and Web of Science from 2010 to present.
  • Identified and analyzed 10,273 articles, narrowing to 260 relevant research articles for evaluation.
  • Summarized mechanisms of colonization and invasive pneumococcal disease along with vaccine strategies.
  • Current polysaccharide vaccines have limitations in T-cell activation and coverage of prevalent strains.
  • Emerging protein-based vaccines show potential for broader protection against diverse serotypes.
  • Advancements in antigen design and delivery may optimize future pneumococcal vaccines.

Abstract

Streptococcus pneumoniae (S. pneumoniae) is a leading cause of pneumonia, meningitis, and sepsis worldwide, posing a major threat to young children and older adults. In China, it is a key pathogen responsible for life-threatening invasive pneumococcal disease (IPD)—including pneumonia, bacteremia, and meningitis—and contributes substantially to hospitalizations and deaths each year. The high disease burden, together with rising antibiotic resistance, underscores the urgent need for more effective strategies for prevention and control. Currently, the most established pneumococcal vaccines include polysaccharide vaccines (e.g., PPV23) and polysaccharide conjugate vaccines (e.g., PCV13), both of which provide effective protection against pneumococcal infections. However, challenges remain, such as the T-cell-independent nature of polysaccharide antigens and inadequate coverage against prevalent strains, which hinder to improve their overall effectiveness. In this review, we trace the progression from pneumococcal pathogenesis to vaccine development. We first outline the mechanisms of colonization, invasion, and key virulence factors, and then critically summarize historical and current vaccine strategies. A systematic literature search was conducted in PubMed and Web of Science (2010–present) using relevant keyword and MeSH combinations. A total of 10,273 articles were identified from PubMed; after removal of duplicates and non-full-text records, 260 research articles were included in the final analysis. Based on this body of evidence, we evaluate emerging approaches toward broadly protective, serotype-independent vaccines and discuss how advances in antigen design, delivery systems, and adjuvants may further optimize next-generation pneumococcal vaccines.

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Cite This Study

Zheng et al. (2026) studied this question.

synapsesocial.com/papers/69a286eb0a974eb0d3c0247ahttps://doi.org/10.3390/vaccines14030208
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