Engineered bacterial therapeutics from synthetic biology to clinical translation: A multi-database scientometric analysis, 2000–2026

Engineered bacterial therapeutics integrate programmable strain engineering with biomedical functions such as sensing, delivery, immune modulation, microbiome intervention, and disease management. This study conducted a multi-database bibliometric analysis to map the knowledge structure, collaboration patterns, and translational direction of this field. Bibliographic records were retrieved from Web of Science Core Collection, Scopus, and PubMed for publications from 1 January 2000 to 1 June 2026. After document-type filtering, time restriction, deduplication, language screening, and manual eligibility assessment, 1,730 English-language articles and reviews were included. CiteSpace 6.4.R1, VOSviewer 1.6.20, and the bibliometrix R package were used to analyze publication trends, collaboration networks, journal co-citation, dual-map citation trajectories, citation bursts, keyword co-occurrence, and thematic evolution. Publication output increased steadily, with faster growth after 2020; 2025 was the highest-output complete year, while 2026 represented a partial retrieval year. China and the United States were the leading contributors, although institutional collaboration remained regionally clustered. Co-citation, citation-burst, and keyword analyses showed a shift from bacterial chassis construction and circuit design toward engineered probiotics, gut microbiota-related therapy, cancer immunotherapy, drug delivery, live biotherapeutic products, and clinical translation. Persistent translational priorities include controllability, safety, manufacturing consistency, and regulatory alignment.

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Publication Details

Journal
Human Vaccines & Immunotherapeutics
Published
2026-08-25
DOI
https://doi.org/10.1080/21645515.2026.2720162
Primary Topic
Cancer Research and Treatments
Type
article
Field-Weighted Citation Impact
0.00

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article

Engineered bacterial therapeutics from synthetic biology to clinical translation: A multi-database scientometric analysis, 2000–2026

Ping Yü, Shuyu Ge, Hanyu Zhou, Jiaqi He et al.
Human Vaccines & Immunotherapeutics
Cancer Research and Treatments
article

Engineered bacterial therapeutics from synthetic biology to clinical translation: A multi-database scientometric analysis, 2000–2026

Ping Yü, Shuyu Ge, Hanyu Zhou, Jiaqi He, Jiabin Chen, Weibo Zhang
article en

Abstract

Engineered bacterial therapeutics integrate programmable strain engineering with biomedical functions such as sensing, delivery, immune modulation, microbiome intervention, and disease management. This study conducted a multi-database bibliometric analysis to map the knowledge structure, collaboration patterns, and translational direction of this field. Bibliographic records were retrieved from Web of Science Core Collection, Scopus, and PubMed for publications from 1 January 2000 to 1 June 2026. After document-type filtering, time restriction, deduplication, language screening, and manual eligibility assessment, 1,730 English-language articles and reviews were included. CiteSpace 6.4.R1, VOSviewer 1.6.20, and the bibliometrix R package were used to analyze publication trends, collaboration networks, journal co-citation, dual-map citation trajectories, citation bursts, keyword co-occurrence, and thematic evolution. Publication output increased steadily, with faster growth after 2020; 2025 was the highest-output complete year, while 2026 represented a partial retrieval year. China and the United States were the leading contributors, although institutional collaboration remained regionally clustered. Co-citation, citation-burst, and keyword analyses showed a shift from bacterial chassis construction and circuit design toward engineered probiotics, gut microbiota-related therapy, cancer immunotherapy, drug delivery, live biotherapeutic products, and clinical translation. Persistent translational priorities include controllability, safety, manufacturing consistency, and regulatory alignment.

Human Vaccines & ImmunotherapeuticsVol. 22(1)
Tongde Hospital of Zhejiang Province (CN)
Natural Science Foundation of Zhejiang Province
Openalex Percentile: Top 15%
Cancer Research and Treatments
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