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◆ Pest management science2026-09-15

A pH-responsive O-carboxymethyl chitosan nanoencapsulation improves λ-cyhalothrin efficacy and induces sex-specific responses in Conogethes punctiferalis.

Lei Chen, Jiaxin Wang, Lianrong Li, Qiuyuan Zhang, Shuanggang Duan, Yan Wu, Qiong Yao

一句话结论 · In one sentence

These findings demonstrate that O-CMCS-based nanodelivery enhances insecticidal performance through optimized physicochemical properties and sex-specific mechanisms, offering a sustainable strategy for precision pest management. © 2026 Society of Chemical Industry.

原始摘要(英文原文)· Original abstract
BACKGROUND: Conventional pesticides suffer from poor foliar retention, rapid degradation, and high non-target toxicity, driving the need for smarter delivery systems. To address these limitations, we encapsulated λ-cyhalothrin in O-carboxymethyl chitosan (LC@O-CMCS), and comprehensively evaluated its physicochemical properties, insecticidal activity and safety. RESULTS: LC@O-CMCS exhibited spherical morphology, uniform pesticide encapsulation, and pH-dependent release characteristics, with 40.12% cumulative release at pH 8.0 after 168 h. LC@O-CMCS significantly enhanced foliar deposition and wettability on litchi leaves, prolonging the field half-life from 8.11 to 14.17 days compared to free LC. Bioassays against Conogethes punctiferalis demonstrated stage-specific efficacy of LC@O-CMCS, with lower median lethal concentration (LC50) values than free LC for larvae (0.43 mg/L versus 0.50 mg/L), female (0.99 mg/L versus 1.36 mg/L) and male (0.53 mg/L versus 0.69 mg/L) adults. Transcriptomic analysis revealed significant sex-specific responses. Free LC induced 139 differentially expressed genes (DEGs) in male moth and 3495 DEGs in female, while LC@O-CMCS treatment caused 7642 DEGs in male and 1107 DEGs in female. The carrier O-CMCS alone caused negligible DEGs in each sex, confirming that the observed sex-dependent transcriptional changes are attributable to the nanoformulation rather than to the carrier material itself. Detoxification enzyme activities were induced exclusively in female moths, with no corresponding induction observed in males, confirming a clear sex-specific response. Notably, LC@O-CMCS reduced acute contact toxicity to Eocanthecona furcellata by about 11-fold. CONCLUSION: These findings demonstrate that O-CMCS-based nanodelivery enhances insecticidal performance through optimized physicochemical properties and sex-specific mechanisms, offering a sustainable strategy for precision pest management. © 2026 Society of Chemical Industry.
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A pH-responsive O-carboxymethyl chitosan nanoencapsulation improves λ-cyhalothrin efficacy and induces sex-specific responses in Conogethes punctiferalis. — 科研速览 Science Skim