4 vials — 10% off · 10 vials — 20% off|Volume discounts applied automatically at checkout|Shop catalog →
Frontiers in Pharmacology··2 min read
Improvement of Cordyline terminalis micropropagation and bioactive compounds using biochar associated with pain and inflammation relief
IntroductionCordyline terminalis is an important ornamental and medicinal plant valued for its antioxidant, antimicrobial, anti-inflammatory, antiproliferative, hypolipidemic, and wound-healing activities outcomes. Biochar is a carbonaceous substance derived from the controlled p...
Fadia El Sherif
IntroductionCordyline terminalis is an important ornamental and medicinal plant valued for its antioxidant, antimicrobial, anti-inflammatory, antiproliferative, hypolipidemic, and wound-healing activities outcomes. Biochar is a carbonaceous substance derived from the controlled pyrolysis of biomass with limited oxygen availability and is commonly used in plant tissue culture to improve nutrient availability and adsorb toxic compounds. This study evaluates the effect of biochar supplementation, applied individually or in combination with 6-benzylaminopurine (BAP), on in vitro proliferation of C. terminalis Another goal of the existing study is to explore the targets of C. terminalis in the amelioration of pain and inflammation.Material and MethodsRandomized design with six treatments was employed in this experiment to estimate the effect of biochar on in vitro multiplication of C. terminalis. Shoot tips were cultured on MS media supplemented with 0, 4, or 6 g/L biochar, with or without 1.0 mg/L BAP. Growth responses including shoot, leaf and root number, plant height, explant fresh weight and root length were assessed. Air dried plantlets from each treatment were processed to obtain methanolic extracts for GC–MS analysis to evaluate the effect of biochar on phytochemical composition. Network pharmacology approach was conducted to recognize the promising molecular targets of C. terminalis and to clarify their mechanistic association with pain and inflammation.ResultsBiochar enhanced in vitro growth, physiological performance, and secondary metabolite accumulation, supporting its potential for sustainable plant propagation and metabolite production. Explants cultured with 1 mg/L BAP combined with 4 g/L biochar showed the highest shoot proliferation, leaf number, and explant fresh weight. In contrast, biochar alone (4–6 g/L) enhanced shoot elongation, root development, and increased chlorophyll and carotenoid contents. GC–MS analysis indicated that 6 g/L biochar with BAP improved the diversity and abundance of bioactive compounds, including glucosides and sterol-related metabolites. Venn diagram included 414 common targets which are the potential therapeutic targets through which C. terminalis may exert anti-inflammatory and analgesic effects. PPI enrichment suggested that the action of C. terminalis against inflammation/pain is likely multi-target and multi-pathway. Gene Ontology enrichment analysis of the common targets supported multi-target and multi-pathway mechanism, in which the studied bioactive compounds may modulate inflammation and pain by regulating transcription factors, cytokine signaling, kinase activity, nuclear receptor pathways, and cellular stress responses.
The products on this website are only for research professionals of 21+ years of age, purchasing for research purposes only. Any human or animal consumption is strictly prohibited.
Research Use Only
— not for human or animal consumption.