Q1 2026

A multifunctional chitosan-silica hybrid for fluorescent LBP detection and PA2G4-targeted gallbladder cancer therapy

Ye Jin · Zujian Wu · Changfeng Liu · Bin Zhang · Zhi Chen · Mingze Sun
10.25259/ajc_798_2025 387 المشاهدات 0 الاقتباسات
0
الاقتباسات
387
المشاهدات
الملخص


Gallbladder cancer (GBC) is characterized by late-stage diagnosis, high recurrence rates, and limited therapeutic options, highlighting the urgent need for novel treatment strategies. This study aims to develop a multifunctional nanoplatform for both targeted therapy and sensitive detection of
Lycium barbarum
polysaccharide (LBP), a natural compound with known antitumor activity but poor bioavailability. A copper-organic framework (CP1) was synthesized and covalently grafted onto chitosan via 3-chloropropyl)trimethoxysilane (CPTMS) and Compound 1 to yield 1-CS-CPTMS@CP1. Subsequent loading of LBP produced 1-CS-CPTMS@CP1@LBP, a nanocomposite with high drug-loading capacity (384.7 mg·g⁻
1
) and fluorescence “turn-on” sensing capability. Upon 360 nm excitation, the system exhibited a >10-fold emission increase at 620 nm in the presence of LBP, with a linear response range of 0.05-50 μM (R
1
= 0.995) and a detection limit as low as 3 nM.
In vitro
assays demonstrated that 1-CS-CPTMS@CP1@LBP significantly inhibited the proliferation of SGC-996 and human gallbladder cancer cell line (GBC-SD) cells more effectively than free LBP, accompanied by marked downregulation of PA2G4 mRNA, suggesting enhanced delivery and ferroptosis-related gene modulation. These findings indicate that the developed nanoplatform provides a promising dual-function strategy for LBP sensing and targeted GBC therapy.

الاستشهاد بهذا المقال (APA)
Ye, J., Zujian, W., Changfeng, L., Bin, Z., Zhi, C., Mingze, S. (2026). A multifunctional chitosan-silica hybrid for fluorescent LBP detection and PA2G4-targeted gallbladder cancer therapy. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_798_2025
أبحاث ذات صلة
67
استشهاد
815
54
استشهاد
1,354
42
استشهاد
963
38
استشهاد
1,077
29
استشهاد
2,106
الوصول
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نُشر في
الرقم الدولي ISSN 1878-5352
الربعية Q1
درجة المؤشر القياس العربي 100
التخصص Natural Sciences
الناشر King Saud University / Elsevier
الدولة 🇸🇦 Saudi Arabia
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المؤلفون
تفاصيل النشر
السنة 2026
اللغة English
أُضيف في 24 Jul 2026