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海藻酸盐固定化藻类细胞的稳定性。

Stability of alginate-immobilized algal cells.

作者信息

Dainty A L, Goulding K H, Robinson P K, Simpkins I, Trevan M D

机构信息

School of Natural Sciences, The Hatfield Polytechnic, P.O. Box 109, College Lane, Hatfield, Herts AL10 9AB, England.

出版信息

Biotechnol Bioeng. 1986 Feb;28(2):210-6. doi: 10.1002/bit.260280210.

Abstract

Investigations were carried out using immobilized Chlorella cells to determine the diameter, compressibility, tolerance to phosphate chelation, and ability to retain algal cells during incubation of various alginate beads. These physical bead characteristics were found to be affected by a variety of interactive factors, including multivalent cation type (hardening agent) and cell, cation, and alginate concentration, the latter exhibiting a predominant influence. The susceptibility of alginate beads to phosphate chelation was found to involve a complex interaction of cation type, concentration, and pH of phosphate solution. A scale of response ranging from gel swelling to gel shrinking was observed for a range of conditions. However, stable calcium alginate beads were maintained in incubation media with a pH of 5.5 and a phosphate concentration of 5 microM. A preliminary investigation into cell leakage from the beads illustrated the importance of maintaining a stable gel structure and limiting cell growth to reduce leakage.

摘要

使用固定化小球藻细胞进行了研究,以确定各种藻酸盐珠在孵育过程中的直径、压缩性、对磷酸盐螯合的耐受性以及保留藻类细胞的能力。发现这些珠子的物理特性受到多种相互作用因素的影响,包括多价阳离子类型(硬化剂)以及细胞、阳离子和藻酸盐的浓度,其中藻酸盐浓度的影响最为显著。发现藻酸盐珠对磷酸盐螯合的敏感性涉及阳离子类型、浓度以及磷酸盐溶液pH值之间的复杂相互作用。在一系列条件下观察到了从凝胶膨胀到凝胶收缩的响应范围。然而,在pH值为5.5且磷酸盐浓度为5微摩尔的孵育培养基中,藻酸钙珠保持稳定。对珠子中细胞泄漏的初步研究表明,维持稳定的凝胶结构并限制细胞生长以减少泄漏非常重要。

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