1.Influence of soft capsule of compound oil of jujube, arborvitae and gardenia on learning and memory, and brain NO, Ach content of castrated rats.
Bao-Li LI ; Zhao-Ying FU ; Ya-Hui CHEN ; Feng GAO ; Zheng-Xiang ZANG
Chinese Journal of Applied Physiology 2012;28(5):403-424
Acetylcholine
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metabolism
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Animals
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Brain
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drug effects
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metabolism
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Female
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Gardenia
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chemistry
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Maze Learning
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drug effects
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Nitric Oxide
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metabolism
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Ovariectomy
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Plant Extracts
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pharmacology
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Rats
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Thuja
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chemistry
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Ziziphus
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chemistry
2.Homeopathic Thuja 30C ameliorates benzo(a)pyrene-induced DNA damage, stress and viability of perfused lung cells of mice in vitro.
Avinaba MUKHERJEE ; E-mail: PROF_ARKB@YAHOO.CO.IN ; Naoual BOUJEDAINI ; Anisur Rahman KHUDA-BUKHSH
Journal of Integrative Medicine 2013;11(6):397-404
OBJECTIVETo examine if the ultra-highly diluted homeopathic remedy Thuja 30C can ameliorate benzo(a)pyrene (BaP)-induced DNA damage, stress and viability of perfused lung cells of Swiss albino mice in vitro.
METHODSPerfused normal lung cells from mice were cultured in 5% Roswell Park Memorial Institute medium and exposed to BaP, a potent carcinogen, at the half maximal inhibitory concentration dose (2.2 μmol/L) for 24 h. Thereafter, the intoxicated cells were either treated with Thuja 30C (used against tumor or cancer) or its vehicle media, succussed alcohol 30C. Relevant parameters of study involving reactive oxygen species (ROS) accumulation, total glutathione (GSH) content, and generations of heat shock protein (hsp)-90 were measured; the cell viability and other test parameters were measured after treatment with either Thuja 30C or its vehicle media. Circular dichroism spectroscopy was performed to examine if Thuja 30C directly interacted with calf thymus DNA as target. For ascertaining if DNA damaged by BaP could be partially repaired and restituted by the remedy, 4',6-diamidino-2-phenylindole staining was performed.
RESULTSThuja 30C increased cell viability of BaP-intoxicated cells significantly, as compared to drug-untreated or drug-vehicle control. A minimal dose of Thuja 30C significantly inhibited BaP-induced stress level, by down-regulating ROS and hsp-90, and increasing GSH content. Thuja 30C itself had no DNA-damaging effect, and no direct drug-DNA interaction. However, it showed quite striking ability to repair DNA damage caused by BaP.
CONCLUSIONThuja 30C ameliorates BaP-induced toxicity, stress and DNA damage in perfused lung cells of mice and it apparently has no effect on normal lung cells.
Animals ; Benzo(a)pyrene ; toxicity ; Cell Survival ; drug effects ; DNA Damage ; drug effects ; Glutathione ; metabolism ; HSP90 Heat-Shock Proteins ; biosynthesis ; Homeopathy ; Mice ; Mice, Inbred Strains ; Reactive Oxygen Species ; metabolism ; Thuja
3.Apoptotic and autophagic death union by Thuja occidentalis homeopathic drug in cervical cancer cells with thujone as the bioactive principle.
Asmita PAL ; Sucharita DAS ; Soumalee BASU ; Rita KUNDU
Journal of Integrative Medicine 2022;20(5):463-472
OBJECTIVE:
"Multi-targeting" drugs can prove fruitful to combat drug-resistance of multifactorial disease-cervical cancer. This study envisioned to reveal if Thuja homeopathic mother tincture (MT) and its bioactive component could combat human papillomavirus (HPV)-16-infected SiHa cervical cancer cells since it is globally acclaimed for HPV-mediated warts.
METHODS:
Thuja MT was studied for its antiproliferative and antimigratory properties in SiHa cells followed by microscopic determination of reactive oxygen species (ROS) generation by 2',7'-dichlorodihydrofluorescein diacetate (DCFDA) staining and loss in mitochondrial membrane potential (MtMP) by rhodamine 123 (Rh123) staining. Apoptosis and autophagy inductions were studied by acridine orange/ethidium bromide (AO/EB) staining and immunoblot analyses of marker proteins. The bioactive component of Thuja MT detected by gas chromatography-mass spectrometry was studied for antiproliferative and antimigratory properties along with in silico prediction of its cellular targets by molecular docking and oral drug forming competency.
RESULTS:
Thuja MT showed significant antiproliferative and antimigratory potential in SiHa cells at a 50% inhibitory concentration (IC50) of 17.3 µL/mL. An increase in DCFDA fluorescence and loss in Rh123 fluorescence prove that Thuja MT acted through the burst of ROS and loss in MtMP respectively. AO/EB-stained cells under the microscope and immunoblot analyses supported Thuja-induced cellular demise via dual pathways-apoptosis and autophagy. Immunoblots showed cleavage of caspase-3 and poly(adenosine diphosphate-ribose) polymerase-1 (PARP-1) along with upregulation of Beclin-1, microtubule-associated protein 1 light chain 3B (LC3B)-II, and p62 proteins. Hence, the apoptotic cascade followed a caspase-3-dependent pathway supported by PARP-1 cleavage, while autophagic death was Beclin-1-dependent and mediated by accumulation of LC3BII and p62 proteins. Thujone, detected as the bioactive principle of Thuja MT, showed greater anti-proliferative and anti-migratory potential at an IC50 of 77 µg/mL, along with excellent oral drug competency with the ability for gastrointestinal absorption and blood-brain-barrier permeation with nil toxicity. Molecular docking depicted thujone with the strongest affinity for mammalian target of rapamycin, phosphoinositide 3-kinase, and protein kinase B followed by B-cell lymphoma 2, murine double minute 2 and adenosine monophosphate-activated protein kinase, which might act as upstream triggers of apoptotic-autophagic crosstalk.
CONCLUSION
Robust "multi-targeting" anticancer potential of Thuja drug and thujone for HPV-infected cervical cancer ascertained its therapeutic efficacy for HPV infections.
Animals
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Apoptosis
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Autophagy
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Beclin-1/pharmacology*
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Bicyclic Monoterpenes
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Caspase 3
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Cell Line, Tumor
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Female
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Humans
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Mammals/metabolism*
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Mice
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Molecular Docking Simulation
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Papillomavirus Infections/drug therapy*
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Phosphatidylinositol 3-Kinases
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Poly(ADP-ribose) Polymerase Inhibitors/therapeutic use*
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Reactive Oxygen Species/metabolism*
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Thuja/metabolism*
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Uterine Cervical Neoplasms/pathology*