Peng Ling, Liu Chaoping, Yin Tao, Xiong Shanbai, You Juan, Liu Ru, Huang Qilin
College of Food Science and Technology/National R&D Branch Center for Conventional Freshwater Fish Processing (Wuhan), Huazhong Agricultural University, Wuhan 430070, China.
Int J Mol Sci. 2025 Aug 8;26(16):7689. doi: 10.3390/ijms26167689.
This study evaluated the effects of ginger extract, applied via four methods-direct addition, microencapsulation, and combinations with NaCl or eugenol-on stress responses and muscle quality in crucian carp during transportation. Among the treatments, microcapsules and the eugenol compound showed the best results, each achieving a 50% survival rate after 72 h. The microcapsule group provided prolonged antioxidant protection, stabilized water quality, reduced cortisol levels, suppressed pro-apoptotic gene expression (, , , , , and ), while upregulating the anti-apoptotic gene . These alterations contributed to lower lactic acid accumulation and glycogen consumption, enhanced muscle shear force, reduced drip loss, and improved structural integrity of the gill, liver, and muscle tissues. The eugenol group effectively limited ammonia nitrogen accumulation, decreased glutathione peroxidase activity, and downregulated stress and apoptosis-related genes (, and ), resulting in reduced tissue damage. In contrast, the NaCl compound group accelerated water quality deterioration, increased TDS (total dissolved solids), lowered dissolved oxygen, and weakened stress resistance, leading to more severe tissue damage. Overall, microencapsulation or eugenol co-application were the most effective strategies for enhancing survival and maintaining muscle quality during transportation.
本研究评估了通过四种方法(直接添加、微胶囊化以及与氯化钠或丁香酚组合)施用生姜提取物对鲫鱼运输过程中的应激反应和肌肉品质的影响。在各处理组中,微胶囊和丁香酚化合物组效果最佳,72小时后每组的存活率均达到50%。微胶囊组提供了延长的抗氧化保护,稳定了水质,降低了皮质醇水平,抑制了促凋亡基因表达(、、、、和),同时上调了抗凋亡基因。这些变化有助于减少乳酸积累和糖原消耗,增强肌肉剪切力,减少滴水损失,并改善鳃、肝脏和肌肉组织的结构完整性。丁香酚组有效限制了氨氮积累,降低了谷胱甘肽过氧化物酶活性,并下调了应激和凋亡相关基因(和),从而减少了组织损伤。相比之下,氯化钠化合物组加速了水质恶化,增加了总溶解固体(TDS),降低了溶解氧,并削弱了抗应激能力,导致更严重的组织损伤。总体而言,微胶囊化或丁香酚联合应用是在运输过程中提高存活率和保持肌肉品质的最有效策略。