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Insights into Intramuscular Connective Tissue Associated with Wooden Breast Myopathy in Fast-Growing Broiler Chickens

机译:快速生长肉鸡木乳肌病相关肌内结缔组织的见解

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摘要

Wooden breast myopathy (WBM) is a meat abnormality affecting pectoralis majors (PMs) of fast-growing broiler chickens. WBM-affected PMs exhibited varied meat qualities with increasing WBM severity. Normal PMs (NOR), mild WBM-affected PMs (MIL), moderate WBM-affected PMs (MOD), and severe WBM-affected PMs (SEV) were selected as raw materials. The structure and organization of connective tissue and fibrillar collagen were investigated through immersing with sodium hydroxide solution, Masson trichrome staining, and using an electron microscope. The mechanical strength of intramuscular connective tissue was analyzed via the shear force of samples treated with sodium hydroxide solution. The thermal property and secondary structure of connective tissue were analyzed by differential scanning calorimetry and Fourier transform infrared spectroscopy. The obtained connective tissue was dissolved in a sodium hydroxide solution for the evaluation of the physicochemical properties of proteins, including particle size, molecular weight, surface hydrophobicity, and intrinsic fluorescence. In particular, the particle size was measured using a zeta potential instrument. The molecular weight was analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis. The surface hydrophobicity and intrinsic fluorescence were measured by spectroscopy technology. Histologically, macrophage infiltration, myodegeneration and necrosis, regeneration, fibrous connective tissue, and thickened perimysial connective tissue were observed in WBM-affected PMs, especially SEV with fibrosis, including blood vessels. Compared with NOR, WBM led to increased average diameter of the collagen fibrils in perimysial (36.61 nm of NOR to 69.73 nm of SEV) and endomysial (34.19 nm of NOR to 56.93 nm of SEV) layers. A significant increase (p 270 kDa, 180–270 kDa, 110–180 kDa, 95–100 kDa, and <15 kDa. Taken together, WBM resulted in thickened organization, tightly packed collagen fibrils, increased mechanical strength and thermal temperature, and increased particle size, surface hydrophobicity, and intrinsic fluorescence of proteins in connective tissue, as the WBM severity increased.
机译:木乳肌病 (WBM) 是一种影响速生肉鸡胸大肌 (PM) 的肉类异常。随着 WBM 严重程度的增加,受 WBM 影响的 PM 表现出不同的肉质。选择正常 PM (NOR)、轻度 WBM 影响 PM (MIL)、中度 WBM 影响 PM (MOD) 和重度 WBM 影响 PM (SEV) 作为原料。通过氢氧化钠溶液浸泡、Masson 三色染色和电子显微镜研究结缔组织和纤维状胶原的结构和组织。通过氢氧化钠溶液处理样品的剪切力分析肌内结缔组织的机械强度。通过差示扫描量热法和傅里叶变换红外光谱分析结缔组织的热特性和二级结构。将获得的结缔组织溶于氢氧化钠溶液中,用于评价蛋白质的物理化学性质,包括粒径、分子量、表面疏水性和内禀荧光。特别是,使用 zeta 电位仪测量颗粒粒度。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳分析分子量。通过光谱技术测量表面疏水性和内禀荧光。组织学上,在受 WBM 影响的 PM 中观察到巨噬细胞浸润、肌变性和坏死、再生、纤维结缔组织和肌膜结缔组织增厚,尤其是伴有纤维化的 SEV,包括血管。与 NOR 相比,WBM 导致肌膜层 (36.61 nm NOR 至 69.73 nm SEV) 和肌内膜 (34.19 nm NOR 至 56.93 nm SEV) 层胶原纤维的平均直径增加。观察到新鲜 PM 的机械强度 (2.05 N 至 5.55 N) 和热转变温度 (起始温度 (TO),61.53 °C 至 67.50 °C;最高转变温度 (TM),66.46 °C 至 70.18 °C;终止温度 (TE),77.20 °C 至 80.88 °C)从 NOR 到 SEV 的结缔组织显着增加 (p 270 kDa、180-270 kDa、110-180 kDa、95-100 kDa 和 <15 kDa 的范围内。综上所述,随着 WBM 严重程度的增加,WBM 导致组织增厚,胶原纤维紧密堆积,机械强度和热温度增加,结缔组织中蛋白质的粒径、表面疏水性和内在荧光增加。

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