Javascript must be enabled to continue!
Plumbagin, a Biomolecule with (Anti)Osteoclastic Properties
View through CrossRef
Plumbagin is a plant-derived naphthoquinone that is widely used in traditional Asian medicine due to its anti-inflammatory and anti-microbial properties. Additionally, plumbagin is cytotoxic for cancer cells due to its ability to trigger reactive oxygen species (ROS) formation and subsequent apoptosis. Since it was reported that plumbagin may inhibit the differentiation of bone resorbing osteoclasts in cancer-related models, we wanted to elucidate whether plumbagin interferes with cytokine-induced osteoclastogenesis. Using C57BL/6 mice, we unexpectedly found that plumbagin treatment enhanced osteoclast formation and that this effect was most pronounced when cells were pre-treated for 24 h with plumbagin before subsequent M-CSF/RANKL stimulation. Plumbagin caused a fast induction of NFATc1 signalling and mTOR-dependent activation of p70S6 kinase which resulted in the initiation of protein translation. In line with this finding, we observed an increase in RANK surface expression after Plumbagin stimulation that enhanced the responsiveness for subsequent RANKL treatment. However, in Balb/c mice and Balb/c-derived RAW264.7 macrophages, these findings could not be corroborated and osteoclastogenesis was inhibited. Our results suggest that the effects of plumbagin depend on the model system used and can therefore either trigger or inhibit osteoclast formation.
Title: Plumbagin, a Biomolecule with (Anti)Osteoclastic Properties
Description:
Plumbagin is a plant-derived naphthoquinone that is widely used in traditional Asian medicine due to its anti-inflammatory and anti-microbial properties.
Additionally, plumbagin is cytotoxic for cancer cells due to its ability to trigger reactive oxygen species (ROS) formation and subsequent apoptosis.
Since it was reported that plumbagin may inhibit the differentiation of bone resorbing osteoclasts in cancer-related models, we wanted to elucidate whether plumbagin interferes with cytokine-induced osteoclastogenesis.
Using C57BL/6 mice, we unexpectedly found that plumbagin treatment enhanced osteoclast formation and that this effect was most pronounced when cells were pre-treated for 24 h with plumbagin before subsequent M-CSF/RANKL stimulation.
Plumbagin caused a fast induction of NFATc1 signalling and mTOR-dependent activation of p70S6 kinase which resulted in the initiation of protein translation.
In line with this finding, we observed an increase in RANK surface expression after Plumbagin stimulation that enhanced the responsiveness for subsequent RANKL treatment.
However, in Balb/c mice and Balb/c-derived RAW264.
7 macrophages, these findings could not be corroborated and osteoclastogenesis was inhibited.
Our results suggest that the effects of plumbagin depend on the model system used and can therefore either trigger or inhibit osteoclast formation.
Related Results
Anti‐inflammatory, antioxidant, anti‐fibrotic and schistosomicidal properties of plumbagin in murine schistosomiasis
Anti‐inflammatory, antioxidant, anti‐fibrotic and schistosomicidal properties of plumbagin in murine schistosomiasis
AbstractSchistosomiasis is still a major health problem affecting nearly 250 million people worldwide and causes approximately 280,000 deaths per year. The disease causes a serious...
Exploring the Neuroprotective Behaviour and Hepatoprotective Effects of Plumbagin in MPTP-Induced Parkinson's Disease
Exploring the Neuroprotective Behaviour and Hepatoprotective Effects of Plumbagin in MPTP-Induced Parkinson's Disease
Aims: Parkinson’s disease (PD) is a neurodegenerative disorder characterized by the loss of dopaminergic neurons in the substantia nigra, leading to motor symptoms like tremors and...
Plumbagin Attenuates Depression-Like Behavior in Mice by Modulating Dopamine Levels
Plumbagin Attenuates Depression-Like Behavior in Mice by Modulating Dopamine Levels
This research was done to investigate the antidepressant properties of plumbagin using a chronic mild stress induced depression model in experimental animals. Albino mice of either...
Resistance Modulation Action, Time-Kill Kinetics Assay, and Inhibition of Biofilm Formation Effects of Plumbagin from Plumbago zeylanica Linn
Resistance Modulation Action, Time-Kill Kinetics Assay, and Inhibition of Biofilm Formation Effects of Plumbagin from Plumbago zeylanica Linn
Antimicrobial resistance (AMR) is a threat to the prevention and treatment of the increasing range of infectious diseases. There is therefore the need for renewed efforts into anti...
Synergistic Anticancer Activity of Plumbagin and Xanthohumol Combination on Pancreatic Cancer Models
Synergistic Anticancer Activity of Plumbagin and Xanthohumol Combination on Pancreatic Cancer Models
Among diverse cancers, pancreatic cancer is one of the most aggressive types due to inadequate diagnostic options and treatments available. Therefore, there is a necessity to use c...
Investigation of Acid-Base Indicator Property of Plumbagin fromPlumbago zeylanicaLinn
Investigation of Acid-Base Indicator Property of Plumbagin fromPlumbago zeylanicaLinn
There has been an increasing interest in the search for colour indicators of natural origin for titrimetric analysis. This is due to some challenges associated with the currently u...
Comparative Estimation of Plumbagin in Aerial and Root Part of Plumbago zeylanica Using UV-Visible Spectrophotometric
Comparative Estimation of Plumbagin in Aerial and Root Part of Plumbago zeylanica Using UV-Visible Spectrophotometric
Plumbago zeylanicais one such important medicinal plant which is being used the world over in the traditional system of medicines. The plant is being used extensively in commercial...
Plumbagin, a Potent Naphthoquinone from Nepenthes Plants with Growth Inhibiting and Larvicidal Activities
Plumbagin, a Potent Naphthoquinone from Nepenthes Plants with Growth Inhibiting and Larvicidal Activities
Some plant species are less susceptible to herbivore infestation than others. The reason for this is often unknown in detail but is very likely due to an efficient composition of s...

