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Biology subjects

Fatema, K.

Publications and source records attributed to Fatema, K..

3 recordsLinked to original sources

Phytochemical and Therapeutic Evaluation of Ficus nervosa Leaves: Impact on Oxidative Stress, Analgesic, Diarrhea, and Blood Clotting in a Mice Model

BackgroundFicus nervosa (FN) leaves have been traditionally used in ethnomedicine for the treatment of various ailments, this study aimed to investigate the cold methanol extract of FN for its antioxidant, analgesic, antidiarrheal, and thrombolytic properties, along with preliminary phytochemical screening to identify key bioactive compounds and acute toxicity test to assess the safety profile of the extract. MethodsIn this study, we conducted an initial investigation to identify the major phytochemical groups present in the leaves of Ficus nervosa. Using conventional phytochemical screening methods on cold methanol extracts, we consistently identified phenols and flavonoids as the predominant bioactive compounds. Following this phytochemical characterization, we assessed the biological activities of the extracts across multiple models. The antioxidant capacity and free radical-scavenging ability of the leaves extracts were evaluated using the DPPH (2,2-Diphenyl-1-picrylhydrazyl) assay. Analgesic efficacy was assessed through acetic acid-induced writhing and electrically induced heat nociception tests. Antidiarrheal effects were examined using castor oil-induced diarrhea and an enteropooling assay in mice. To determine thrombolytic activity, we conducted a human blood clot lysis assay, while preclinical toxicity testing was conducted to evaluate the safety profile of the extracts. Statistical analysis was performed using one-way ANOVA with Duncans Multiple Range Test (DMRT) to validate the significance of the results. ResultsThe study of Antioxidant Potential, the ESFs (ethyl soluble fraction) antioxidant capacity, measured at 409.91 {+/-} 0.59 mg of ascorbic acid equivalent (AAE)/g in the phosphomolybdenum assay, signifies a strong free radical scavenging activity. This level of antioxidant action, alongside a potent free radical neutralizing concentration (IC of 9.99 {+/-} 0.41 g/mL), suggests that the ESF could effectively counteract oxidative stress. Analgesic activity at 500 mg/kg, FN extract produced a 68.05% suppression of writhing in mice, which was statistically significant (p<0.001) compared to standard morphines (74.05%) inhibition. The extract also significantly prolonged reaction latency to thermal-induced pain in hotplate model. The antidiarrheal activity showed 52.09% and 59.0% suppression of defecation, compared to standard loperamides 73.1%, with statistically significant p-values (p<0.04 and p<0.01). These effects, combined with the notable decrease in intestinal fluid accumulation and defecation frequency in enteropooling assays, indicate that FN extract might interact with intestinal motility or fluid secretion pathways, providing antidiarrheal benefits. Additionally, the chloroform-soluble fraction of FN exhibited moderate thrombolytic activity, achieving 39.79% clot lysis compared to streptokinase (69.52%). Although this thrombolytic potential is moderate, it indicates that the fraction contains compounds with some fibrinolytic properties, which could be useful as adjunctive agents in preventing thrombosis. ConclusionOverall, the cold methanol extract of FN leaves demonstrates the therapeutic potential in preclinical settings. Future research is warranted to isolate the specific bioactive compounds and explain their mechanisms of action to further support the development of new treatments and contributing to modern medicinal practices based on this plant leaves.

plant biology↗

A VLP vaccine platform comprising the core protein of hepatitis B virus with N-terminal antigen capture

Nanoparticle presentation systems offer the potential to develop new vaccines rapidly in response to emerging diseases, a public health need that has become increasingly evident in the wake of the COVID-19 pandemic. Previously, we reported a nanoparticle scaffold system termed VelcroVax. This was constructed by insertion of a high affinity SUMO binding protein (Affimer), able to recognise a SUMO peptide tag, into the major immunodominant region of VLPs assembled from a tandem (fused dimer) form of hepatitis B virus (HBV) core protein (HBc). Here we describe a modified form of VelcroVax, comprising monomeric HBc with the Affimer inserted at the N-terminus (termed N-VelcroVax). In contrast to the tandem form of VelcroVax, N-VelcroVax VLPs were expressed well in E. coli. The VLPs effectively bound SUMO-tagged Junin virus glycoprotein, gp1 as assessed by structural and serological analyses. Cryo-EM characterisation of N-VelcroVax complexed with a SUMO-Junin gp1 showed continuous density attributable to the fused Affimer, in addition to evidence of target antigen capture. Collectively, these data suggest that N-VelcroVax has potential as a versatile next generation vaccine scaffold.

molecular biology↗

Enhancing Rice Growth and Yield with Weed Endophytic Bacteria Alcaligenes faecalis and Metabacillus indicus Under Reduced Chemical Fertilization

Endophytic bacteria, recognized as eco-friendly biofertilizers, have demonstrated the potential to enhance crop growth and yield. While the plant growth-promoting effects of endophytic bacteria have been extensively studied, the impact of weed endophytes remains less explored. In this study, we aimed to isolate endophytic bacteria from native weeds and assess their plant growth-promoting abilities in rice under varying chemical fertilization. The evaluation encompassed measurements of mineral phosphate and potash solubilization, as well as indole-3-acetic acid (IAA) production activity by the selected isolates. Two promising strains, tentatively identified as Alcaligenes faecalis (BTCP01) from Eleusine indica (Goose grass) and Metabacillus indicus (BTDR03) from Cynodon dactylon (Bermuda grass) based on 16S rRNA gene phylogeny, exhibited noteworthy phosphate and potassium solubilization activity, respectively. BTCP01 demonstrated superior phosphate solubilizing activity, while BTDR03 exhibited the highest potassium (K) solubilizing activity. Both isolates synthesized IAA in the presence of L-tryptophan, with the detection of nifH and ipdC genes in their genomes. Application of isolates BTCP01 and BTDR03 through root dipping and spraying at the flowering stage significantly enhanced the agronomic performance of rice variety BRRI dhan29. Notably, combining both strains with 50% of recommended N, P, and K fertilizer doses led to a substantial increase in rice grain yields compared to control plants receiving 100% of recommended doses. Taken together, our results indicate that weed endophytic bacterial strains hold promise as biofertilizers, potentially reducing the dependency on chemical fertilizers by up to 50%, thereby fostering sustainable rice production.

microbiology↗