Department of Physics, Savitribai Phule Pune University, Ganeshkhind road, Pune, 411007, India.
Life Sci Space Res (Amst). 2021 Aug;30:1-8. doi: 10.1016/j.lssr.2021.04.001. Epub 2021 Apr 6.
Continuous rotation of liquid bacterial culture in random positioning machine (RPM) causes formation of a colloidal bacterial culture in the culture tube, due to lack of sedimentation and convection. Interestingly, similar colloidal bacterial cultures can also be seen in suspended bacterial cultures in a spaceflight environment. Thus, as a consequence of no sedimentation, an alteration in the microenvironment of each bacterial cell in simulated microgravity is introduced, compared to the bacterial culture grown in normal gravity wherein they sediment slowly at the bottom of the culture tube. Apparently, a bacterial cell can sense changes in its environment through various receptors and sensors present at its surface, thus it can be speculated that this change in its microenvironment might induce changes in its cell wall and cell surface properties. In our study, changes in growth kinetics, cell wall constitution using FTIR (Fourier Transform Infrared Spectroscopy), cell surface hydrophobicity, autoaggregation ability and antibiotic susceptibility of Staphylococcus aureus NCIM 2079 strain, in simulated microgravity (using RPM) was studied in detail. Noteworthy alterations in its growth kinetics, cell wall constitution, cell surface hydrophobicity, autoaggregation ability and antibiotic susceptibility especially to Erythromycin and Clindamycin were observed. Our data suggests that microgravity may cause alterations in the cellular envelope of planktonic S.aureus cultures.
在随机定位机(RPM)中连续旋转液体细菌培养物会导致培养管中的细菌培养物形成胶体,这是由于缺乏沉降和对流所致。有趣的是,在航天环境中的悬浮细菌培养物中也可以看到类似的胶体细菌培养物。因此,由于没有沉降,与在正常重力下生长的细菌培养物相比,模拟微重力环境中每个细菌细胞的微环境发生了变化,在正常重力下,它们会缓慢沉降到培养管的底部。显然,细菌细胞可以通过其表面存在的各种受体和传感器感知其环境的变化,因此可以推测这种微环境的变化可能会诱导其细胞壁和细胞表面特性的变化。在我们的研究中,详细研究了金黄色葡萄球菌 NCIM 2079 菌株在模拟微重力(使用 RPM)下的生长动力学、使用傅里叶变换红外光谱(FTIR)的细胞壁组成、细胞表面疏水性、自动聚集能力和抗生素敏感性的变化。观察到其生长动力学、细胞壁组成、细胞表面疏水性、自动聚集能力和抗生素敏感性(特别是对红霉素和克林霉素)的显著变化。我们的数据表明,微重力可能会导致浮游金黄色葡萄球菌培养物的细胞包膜发生变化。