Costagliola C, Del Prete A, Winkler N R, Carpineto P, Ciancaglini M, Piccolomini R, Mastropasqua L
Istituto di Clinica Oculistica, II Università degli Studi di Napoli, Italy.
Acta Ophthalmol Scand. 1996 Dec;74(6):566-8. doi: 10.1111/j.1600-0420.1996.tb00736.x.
The objective of this study was to test bacteria ability to use Na-hyaluronate as a nutrient in vitro. Thirteen bacteria strains were tested in three different media: specific culture medium, agar-Healon medium and agar-Healon GV medium. The bacterial growth criteria were determined by counting the number of new colonies appearing at each observation time (0, 24, 48 and 72 h). The results were expressed as the percentage of growth in agar-Na-hyaluronate compared to each corresponding specific culture medium. After 24 h in the medium containing agar-Healon, S. aureus, S. epidermidis, S. pyogenes and S. viridans grew using hyaluronic acid as a nutrient. The percentage of growth of these species remained constant over the follow-up period. The other bacteria strains tested were unable to use Healon as a nutrient. After 24 h of incubation in the medium containing agar-Healon GV, S. aureus, S. epidermidis, S. pyogenes, and S. viridans exhibited about 20% growth. Subsequently, this percentage slowly increased to about 50%. The other bacteria stains tested were unable to employ Healon GV as a nutrient. With the exception of Staphylococci and Streptococci, the other species do not synthesize the necessary enzymes to break glucosidic bonds, therefore neither concentration of hyaluronic acid can be utilized as a source of carbohydrate for their survival in culture media.
本研究的目的是在体外测试细菌利用透明质酸钠作为营养物质的能力。在三种不同的培养基中对13种细菌菌株进行了测试:特定培养基、琼脂-透明质酸钠溶液培养基和琼脂-透明质酸钠溶液GV培养基。通过计算每个观察时间(0、24、48和72小时)出现的新菌落数量来确定细菌生长标准。结果以琼脂-透明质酸钠培养基中的生长百分比与每种相应的特定培养基相比来表示。在含有琼脂-透明质酸钠溶液的培养基中培养24小时后,金黄色葡萄球菌、表皮葡萄球菌、化脓性链球菌和绿色链球菌利用透明质酸作为营养物质生长。在随访期间,这些菌种的生长百分比保持不变。测试的其他细菌菌株无法利用透明质酸钠溶液作为营养物质。在含有琼脂-透明质酸钠溶液GV的培养基中孵育24小时后,金黄色葡萄球菌、表皮葡萄球菌、化脓性链球菌和绿色链球菌的生长率约为20%。随后,该百分比缓慢增加至约50%。测试的其他细菌菌株无法利用透明质酸钠溶液GV作为营养物质。除葡萄球菌和链球菌外,其他菌种不合成分解糖苷键所需的酶,因此两种浓度的透明质酸都不能用作它们在培养基中生存的碳水化合物来源。