Background: Small colony variants (SCVs) of bacterial pathogens are smaller, slow-growing variants which often pose a challenge to the clinical microbiologist in their identification and characterization. SCVs are receiving much attention in recent years due to their association with several types of chronic infections. In this study, we aimed to develop a suitable culture media for high frequency generation and stable maintenance of SCV of Klebsiella pneumoniae. We also intended to compare different phenotypic characteristics such as growth, antibiotic resistance pattern, and biofilm-forming potential of SCVs with the original parental strain. Methods: We used Mueller–Hinton agar containing the extract of clove (Syzygium aromaticum) for the generation of SCV. Antibiotic sensitivity was determined using disk diffusion method and minimum inhibitory concentration determinations using microdilution method. Biofilm formation was assessed using crystal violet dye binding assay. Results: Mueller–Hinton agar (MHA) containing clove (Syzygium aromaticum) extract (10% volume/volume; MHA-C10) supported generation of SCV from K. pneumoniae at high frequency. SCVs were smaller in colony size and grew slowly in comparison to the wild-type original strain. In addition, SCVs exhibited increased resistance to aminoglycoside group of antibiotics (gentamicin and kanamycin). Crystal violet dye binding spectrophotometric method showed increased biofilm formation potential by SCVs in comparison to their parental counterparts. Conclusions: The findings of this study show that MHA-C10 can be used as a bacterial culture media for the formation of SCV by K. pneumoniae. SCVs, thus, generated on MHS-C10 exhibited typical characteristics of SCVs.
Vitamin D is one of the essential vitamins and has recently been demonstrated to be much more important for the appropriate functioning of the human body and well-being than initially believed. Although vitamin D is mainly known for its link with bone fractures and bone diseases, recent studies revealed that vitamin D and its analogues have revealed many pharmacological actions covering the regulation of cell growth, inhibition of inflammation, and improvement of neuromuscular function and immune function. Moreover, vitamin D and its analogues are reported to have role in different types of cancers, skin diseases, diabetes mellitus and infections caused by different bacterial and viral pathogens including SARS-CoV-2. The goal of this study is to evaluate the scientific literature on therapeutic uses of vitamin D and its analogues against different diseases and health condition. Special attention has been given to COVID-19 infection, cancer, skin diseases, and diabetes. The molecular mechanisms involved are also explored.
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