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Updated: Jun 12, 2026

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Published on: April 26, 2016
Correction: A bottlebrush-architectured dextran polyprodrug as an acidity-responsive vector for enhanced chemotherapy
Tian Zhang1,2, Yajun Wang1,2, Xianbin Ma1,2
1Key Laboratory of Luminescent and Real-Time Analytical Chemistry (Southwest University), Ministry of Education, School of Materials and Energy, Southwest University, Chongqing, 400715, P. R. China. zgxu@swu.edu.cn.
This correction clarifies a study on dextran polyprodrugs. The bottlebrush-architectured vector shows improved acidity-responsive drug delivery for chemotherapy.
Area of Science:
- Biomaterials Science
- Polymer Chemistry
- Drug Delivery Systems
Context:
- The original study focused on developing novel drug delivery systems.
- Acidity-responsive materials are crucial for targeted cancer therapy.
- Bottlebrush polymer architectures offer unique properties for drug encapsulation and release.
Purpose:
- To correct inaccuracies in the original publication regarding a dextran polyprodrug.
- To ensure the accurate representation of the acidity-responsive vector's performance.
- To maintain the integrity of scientific reporting in biomaterials science.
Summary:
- This correction addresses errors in the article 'A bottlebrush-architectured dextran polyprodrug as an acidity-responsive vector for enhanced chemotherapy efficiency'.
- The modifications pertain to the characterization and performance data of the dextran-based drug delivery system.
- The core findings regarding the vector's potential in chemotherapy remain valid.
Impact:
- Ensures accurate data dissemination in the field of drug delivery.
- Upholds the reliability of research on acidity-responsive biomaterials.
- Provides corrected information for researchers utilizing dextran polyprodrugs in therapeutic applications.
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