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愈伤组织培养的果胶凝胶微球的溶胀行为和饱腹感。

Swelling behavior and satiating effect of the gel microparticles obtained from callus cultures pectins.

机构信息

Institute of Physiology, Komi Science Centre, The Urals Branch of the Russian Academy of Sciences, 50, Pervomaiskaya str., 167982 Syktyvkar, Russia.

Institute of Physiology, Komi Science Centre, The Urals Branch of the Russian Academy of Sciences, 50, Pervomaiskaya str., 167982 Syktyvkar, Russia.

出版信息

Int J Biol Macromol. 2019 Feb 15;123:300-307. doi: 10.1016/j.ijbiomac.2018.11.081. Epub 2018 Nov 13.

Abstract

Gel microparticles were prepared from pectins of campion (SVCgel) and duckweed (LMCgel) callus cultures, as well as from commercial apple pectin (APgel) by emulsion dehydration techniques with successive ionotropic gelation. The morphology and swelling behavior of the microparticles were determined after successive incubation in simulated gastric (SGF), intestinal (SIF), and colonic (SCF) fluids. Both SVCgel and LMCgel microparticles were found to swell in SGF and SIF gradually, and at oral administration decreased food intake by laboratory mice during the first 5 h of free-feeding. The SVCgel microparticles demonstrated the higher stability in SCF within 24 h than LMCgel ones. Only the SVCgel microparticles were shown to decrease food intake by 24% during the 21 h of free-feeding and decreased body weight of mice by 4% during 24 h after oral administration. The APgel microparticles lost their shape in SIF, then fully disintegrated after 0.5 h of incubation in SCF, and failed to affect food intake or mice body weight. The data obtained indicated that sustainability and swelling of the gel microparticles from the SVC pectin in the colonic fluid may provide the stronger satiating effect compared to that of the LMCgel microparticles.

摘要

采用乳化脱水技术,通过连续离子凝胶化,从荠(SVCgel)和浮萍(LMCgel)愈伤组织培养物的果胶以及商业苹果果胶(APgel)中制备凝胶微球。将微球在模拟胃液(SGF)、肠液(SIF)和结肠液(SCF)中连续孵育后,测定其形态和溶胀行为。结果发现,SVCgel 和 LMCgel 微球在 SGF 和 SIF 中逐渐溶胀,在自由喂养的前 5 小时内,口服给药会降低实验小鼠的食物摄入量。在 24 小时内,SVCgel 微球在 SCF 中的稳定性高于 LMCgel 微球。只有 SVCgel 微球在 21 小时的自由喂养期间降低了 24%的食物摄入量,并在口服给药后 24 小时降低了 4%的小鼠体重。APgel 微球在 SIF 中失去形状,然后在 SCF 孵育 0.5 小时后完全崩解,无法影响食物摄入量或小鼠体重。研究结果表明,SVC 果胶的凝胶微球在结肠液中的可持续性和溶胀性可能比 LMCgel 微球具有更强的饱腹感。

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