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◆ Methods and protocols2026-09-04

Quantification of Carnosine and Anserine in Diverse Meat Matrices via Optimized Extraction and Validated HPLC-DAD.

Chalita Kaewkhow, Chokwan Chumang, Piboon Pantu, Patraporn Luksirikul, Prapasiri Pongprayoon, Skorn Koonawootrittriron, Thanathip Suwanasopee, Tharinee Saleepoch, Sutasinee Kityakarn

原始摘要(英文原文)· Original abstract
Carnosine and anserine are bioactive, histidine-containing dipeptides recognized for their antioxidant, pH-buffering, and neuroprotective functions. However, their precise quantification is frequently compromised by their high structural similarity and complex matrix-induced analytical interferences. This study developed and validated an optimized, simplified extraction protocol coupled with high-performance liquid chromatography diode array detection (HPLC-DAD) for the simultaneous determination of both dipeptides across diverse meat matrices, including Thai native black-bone chicken (Nin-Kaset), commercial broiler, pork, beef, and buffalo meat. Extraction efficiency was systematically optimized by modulating the solution pH. Under optimized conditions, the validated method demonstrated excellent linearity (1-200 µg mL-1, r2 ≥ 0.9990) with limits of detection and quantification (LOD/LOQ) values at 0.0093/0.0283 mg g-1 for carnosine and 0.0139/0.0420 mg g-1 for anserine. Method accuracy was confirmed by satisfactory recoveries ranging from 96.64% to 102.68%, with repeatability values (RSDs) of 0.70-14.18%. Application to real matrices revealed distinct dipeptide profiles. Pork contained the highest carnosine level (3.59 ± 0.19 mg g-1), whereas white-feather Nin-Kaset exhibited the highest anserine level (6.77 ± 0.40 mg g-1). Overall, the validated framework offers a rapid, cost-effective, and robust approach for routine dipeptide profiling, supporting future applications in food authentication, nutritional evaluation and functional food development.
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Quantification of Carnosine and Anserine in Diverse Meat Matrices via Optimized Extraction and Validated HPLC-DAD. — 科研速览 Science Skim