Rostami Parvin, Taheri Ali, Ghaffari Mostafa
Fisheries Department, Faculty of Marine Sciences, Chabahar Maritime University, Chabahar 9971778631, Iran.
Gels. 2025 Jan 1;11(1):21. doi: 10.3390/gels11010021.
The properties of biopolymer films prepared using Southern meagre fish () skin gelatin blends, both with and without clove bud extract (CE) at concentrations of 0.3% and 0.7%, were investigated. The addition of CE enhanced the light barrier properties and decreased water vapor permeability from 1.68 to 0.85 (×10 g smPa) ( < 0.05) in the films that contained CE. Additionally, the films' water solubility diminished as the concentration of CE increased (89.20 to 69.04%) ( < 0.05). SEM images revealed a smooth, uniform surface without cracks in the samples both with and without CE, whereas the films that included CE displayed a rougher and denser cross-section. FTIR spectra revealed variations in peaks between the films containing CE and those without it. The incorporation of CE raised the glass transition temperature (51.04 to 58.80 °C) and the melting temperature (124.65 to 141.92 °C) of the films. Additionally, the antioxidant activities, assessed through DPPH free radical scavenging activity (86.97%) and reduction power (λ of 0.85), along with moderate antibacterial activities against four distinct foodborne pathogens, improved with increased concentrations of CE. It can be concluded that phenolic compounds, such as eugenol in the clove extract, facilitated the formation of additional bonds between the peptide helixes of the gelatin, thereby enhancing the properties of the CE-incorporated films. Thus, Southern meagre fish gelatin film containing CE is an effective active packaging biomaterial for seafood products, exhibiting satisfactory properties.
研究了使用南方小鳞犬牙南极鱼()皮明胶混合物制备的生物聚合物薄膜的性能,该混合物添加和未添加浓度为0.3%和0.7%的丁香芽提取物(CE)。添加CE增强了薄膜的阻光性能,并使含CE薄膜的水蒸气透过率从1.68降至0.85(×10 g smPa)(<0.05)。此外,随着CE浓度的增加,薄膜的水溶性降低(从89.20%降至69.04%)(<0.05)。扫描电子显微镜(SEM)图像显示,含CE和不含CE的样品表面均光滑、均匀,无裂缝,而含CE的薄膜横截面更粗糙、更致密。傅里叶变换红外光谱(FTIR)显示含CE薄膜和不含CE薄膜的峰存在差异。CE的加入提高了薄膜的玻璃化转变温度(从51.04℃升至58.80℃)和熔点(从124.65℃升至141.92℃)。此外,通过二苯基苦味酰基自由基(DPPH)清除活性(86.97%)和还原能力(λ为0.85)评估的抗氧化活性,以及对四种不同食源性病原体的适度抗菌活性,均随着CE浓度的增加而提高。可以得出结论,丁香提取物中的酚类化合物,如丁香酚,促进了明胶肽螺旋之间额外键的形成,从而增强了含CE薄膜的性能。因此,含CE的南方小鳞犬牙南极鱼明胶薄膜是一种用于海产品的有效的活性包装生物材料,具有令人满意的性能。