Ho Yin Ying, Lu Hao Kim, Lim Zhi Feng Sherman, Lim Hao Wei, Ho Ying Swan, Ng Say Kong
Bioprocessing Technology Institute, Agency for Science, Technology, and Research (ASTAR), 20 Biopolis Way, #06-01 Centros, Singapore, 138668 Singapore.
Bioresour Bioprocess. 2021;8(1):93. doi: 10.1186/s40643-021-00443-w. Epub 2021 Sep 28.
Animal cells are used in the manufacturing of complex biotherapeutic products since the 1980s. From its initial uses in biological research to its current importance in the biopharmaceutical industry, many types of culture media were developed: from serum-based media to serum-free to protein-free chemically defined media. The cultivation of animal cells economically has become the ultimate goal in the field of biomanufacturing. Serum serves as a source of amino acids, lipids, proteins and most importantly growth factors and hormones, which are essential for many cell types. However, the use of serum is unfavorable due to its high price tag, increased lot-to-lot variations and potential risk of microbial contamination. Efforts are progressively being made to replace serum with recombinant proteins such as growth factors, cytokines and hormones, as well as supplementation with lipids, vitamins, trace elements and hydrolysates. While hydrolysates are more complex, they provide a diverse source of nutrients to animal cells, with potential beneficial effects beyond the nutritional value. In this review, we discuss the use of hydrolysates in animal cell culture and briefly cover the composition of hydrolysates, mode of action and potential contaminants with some perspectives on its potential role in animal cell culture media formulations in the future.
自20世纪80年代以来,动物细胞一直被用于生产复杂的生物治疗产品。从最初在生物学研究中的应用到如今在生物制药行业的重要地位,人们开发了多种类型的培养基:从基于血清的培养基到无血清培养基,再到无蛋白化学限定培养基。经济地培养动物细胞已成为生物制造领域的最终目标。血清是氨基酸、脂质、蛋白质的来源,最重要的是生长因子和激素的来源,这些对许多细胞类型来说都是必不可少的。然而,血清的使用存在不利之处,因其价格高昂、批次间差异大以及存在微生物污染的潜在风险。人们正逐步努力用重组蛋白(如生长因子、细胞因子和激素)替代血清,并添加脂质、维生素、微量元素和水解产物。虽然水解产物更为复杂,但它们为动物细胞提供了多样化营养来源,其潜在益处超出了营养价值。在本综述中,我们讨论了水解产物在动物细胞培养中的应用,并简要介绍了水解产物的组成、作用方式和潜在污染物,同时对其未来在动物细胞培养基配方中的潜在作用提出了一些观点。