乳清分离蛋白,Tween 20和酪蛋白水解稳定的O/W纳米囊泡乳液系统与姜黄素货物

S. Mukherjee, Z. Haque, X. Zhang, W. Schilling
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摘要

采用140和210 MPa的超高压均质(UHPH)制备了稳定的水包油纳米乳液,作为纳米囊泡载体(NVV)在水营养保健体系中携带疏水公认安全(GRAS)姜黄素(CU)。以姜黄素为研究对象,在ph大于8.0的条件下,姜黄素具有抗氧化活性并参与了与亲核试剂的Michael反应。研究了两个变量(1)酪蛋白水解物(CH)的添加量(2%,WPI的w/w)和(2)超高压ph(140和210 MPa)的使用对单分散NVV的稳定性和CU作为货物在NVV储存过程中的抗氧化能力的影响。加入CH和Tween 20均可提高NVV的分散性和稳定性。与140 MPa相比,添加CH使210 MPa下的纳米颗粒粒径(dvs)降低了17% (P<0.05),并提高了超高ph压力下的稳定性,210 MPa下的dvs比140 MPa小63% (P<0.05)。CU的加入对纳米颗粒的分布没有影响,NVV和CU-NVV在140 MPa下的dvs分别为101和93 nm,在210 MPa下的dvs分别为73和92 nm。通过观察zeta电位、接触角和表面能,NVV系统在28天内保持稳定,可以用于输送CU并保持其抗氧化活性。
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Whey Protein Isolate, Tween 20 and Casein Hydrolysate Stabilized O/W Nano-Vesicular Emulsion Systems with Curcumin Cargo
Stable oil-in-water nanoemulsions were generated by ultra-high-pressure homogenization (UHPH) at 140 and 210 MPa for use as nano-vesicular vehicles (NVV) to carry hydrophobic generally recognized as safe (GRAS) curcumin (CU) by whey protein isolate (WPI) in aqueous nutraceutical systems. Curcumin was used for its antioxidant activity and participation in the Michael reaction with nucleophiles at pHs above 8.0. Two variables, (1) addition of casein hydrolysate (CH) (2%, w/w of WPI) and, (2) use of UHPH (140 and 210 MPa), were studied for their effect on the stabilization of monodispersed NVV and antioxidant capacity of the CU as cargo in the NVV throughout storage. CH and Tween 20 both were added to increase dispersibility and stability of the NVV. Addition of CH reduced nano-particle size (dvs) by 17% at 210 MPa when compared to140 MPa (P<0.05), and increased the stability with UHPH pressure as reflected by a 63% smaller dvs at 210 MPa as compared to 140 MPa (P<0.05). The nanoparticle distribution was not changed by the addition of CU, with dvs’s of 101 and 93 nm at 140 MPa and 73 and 92 at 210 MPa for NVV and CU-NVV, respectively. The NVV system was stable for 28 days as observed in zeta-potential, contact angle, and surface energy, and can be used to deliver CU and maintain its antioxidant activity.
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