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Biology subjects

Patil, D. S.

Publications and source records attributed to Patil, D. S..

3 recordsLinked to original sources

PHYTOREMEDIATION OF REACTIVE TURQUOISE BLUE H5G USING IN VITRO CULTURES OF SOLANUM VIRGINIANUM (L.)

Solanum virginianum (L.) belonging to family Solanaceae selected for decolourisation of Reactive Turquoise Blue H5G dye. In vitro grown cultures of S. virginianum were able to remove more than 50% dye concentration up to 110mg/l. comparative analysis of biochemical and antioxidant study showed more activity in treated plants as compared to untreated plants. The phytotoxicity study demonstrated the non-toxic nature of degraded metabolites. Use of such non-edible yet medicinal plant for phytoremediation is discussed.

plant biology↗

REGENERATION VIA SOMATIC EMBRYOGENESIS FROM SEED EXPLANT OF MEDICINAL PLANT SOLANUM VIRGINIANUM (L.)

Solanum virginianum (L.) belonging to family Solanaceae is an important medicinal plant, used in traditional ayurvedic medicines. It is one of the ten constituents of "Dashmoola". Present work deals with the development of efficient procedure for inducing somatic embryogenesis followed by regeneration of Solanum virginianum (L.). Initially, seeds of S. virginianum were used as explant and inoculated on [1/2] MS basal medium. The stem explant from in vitro germinated seeds was used for callus induction. MS medium supplemented with BAP (1mg/L) was used for callus induction. Callus proliferation started when initiated callus was subcultured on different concentrations and combination of BAP, IAA, IBA, 2,4-D and NAA. Where highest embryogenesis took place in BAP (2mg/l)+IAA(5mg/l) combination. The somatic embryos were transferred onto MS basal medium for maturation. These embryos matured and were converted into complete plantlets with well developed shoot and root system.

plant biology↗

Single Cell RNA-Sequence Analyses Reveal Uniquely Expressed Genes and Heterogeneous Immune Cell Involvement in the Rat Model of Intervertebral Disc Degeneration

Intervertebral disc (IVD) degeneration is characterized by a loss of cellularity, and changes in cell-mediated activity that drives anatomic changes to IVD structure. In this study, we use single cell RNA-sequencing analysis of cells extracted from the degenerating tissues of the rat IVD following lumbar disc puncture. Two control, uninjured IVDs (L2-3, L3-4) and two degenerated, injured IVDs (L4-5, L5-6) from each animal were examined either at two- and eight-week post-operative time points. The cells from these IVDs were extracted and transcriptionally profiled at a single-cell resolution. Unsupervised cluster analysis revealed the presence of 4 known cell types in both non-degenerative and degenerated IVDs based on previously established gene markers: IVD cells, endothelial cells, myeloid cells, and lymphoid cells. As a majority of cells were associated with the IVD cell cluster, sub-clustering was used to further identify the cell populations of the nucleus pulposus, inner and outer annulus fibrosus. The most notable difference between control and degenerated IVDs was the increase of myeloid and lymphoid cells in degenerated samples at 2- and 8- weeks post-surgery. Differential gene expression analysis revealed multiple distinct cell types from the myeloid and lymphoid lineages, most notably macrophages and B lymphocytes and demonstrated a high degree of immune specificity during degeneration. In addition to the heterogenous infiltrating immune cell populations in the degenerating IVD, the increased number of cells in the AF sub-cluster expressing Ngf and Ngfr, encoding for p75NTR, suggest that NGF signaling may be one of the key mediators of the IVD crosstalk between immune and neuronal cell populations. These findings provide the basis for future work to understand the involvement of select subsets of non-resident cells in IVD degeneration.

cell biology↗