43 research outputs found
Curcuminβs Therapeutic Potential
ΠΡΡΠΊΡΠΌΠ°ΡΠ° (Curcuma longa L., ΡΠ΅ΠΌ. Zingiberaceae) Π΅ ΠΏΠΎΠ΄ΠΏΡΠ°Π²ΠΊΠ°, ΠΊΠΎΡΡΠΎ Π΅ ΡΠΈΡΠΎΠΊΠΎ ΠΈΠ·ΠΏΠΎΠ»Π·Π²Π°Π½Π° Π² ΠΈΠ½Π΄ΠΈΠΉΡΠΊΠ°ΡΠ° ΠΌΠ΅Π΄ΠΈΡΠΈΠ½Π°. Π ΡΠΏΠ΅ΠΊΡΡΡΠ° Π½Π° Π·Π°Π±ΠΎΠ»ΡΠ²Π°Π½ΠΈΡΡΠ°, ΠΏΡΠΈ ΠΊΠΎΠΈΡΠΎ Π½Π°ΠΌΠΈΡΠ° ΠΏΡΠΈΠ»ΠΎΠΆΠ΅Π½ΠΈΠ΅, Π²Π»ΠΈΠ·Π°Ρ ΠΆΠ»ΡΡΠ½ΠΈ ΠΈ ΡΠ΅ΡΠ½ΠΎΠ΄ΡΠΎΠ±Π½ΠΈ Π·Π°Π±ΠΎΠ»ΡΠ²Π°Π½ΠΈΡ, Π±Π΅Π·Π°ΠΏΠ΅ΡΠΈΡΠΈΠ΅, ΡΠΈΠ½ΡΠ·ΠΈΡ, ΡΠ΅Π²ΠΌΠ°ΡΠΈΠ·ΡΠΌ, Π½Π°Π²ΡΡ
Π²Π°Π½ΠΈΡ ΠΈ ΡΠ°Π½ΠΈ. ΠΡΠ½ΠΎΠ²Π½ΠΎΡΠΎ Π±ΠΈΠΎΠ»ΠΎΠ³ΠΈΡΠ½ΠΎ Π°ΠΊΡΠΈΠ²Π½ΠΎ Π²Π΅ΡΠ΅ΡΡΠ²ΠΎ Π² ΠΊΠΎΡΠ΅Π½Π° ΠΎΡ ΠΊΡΡΠΊΡΠΌΠ° Π΅ ΠΊΡΡΠΊΡΠΌΠΈΠ½ΡΡ, ΡΡΠΏΡΡΡΡΠ²Π°Π½ΠΎ ΠΎΡ Π΄ΡΡΠ³ΠΈ Π±Π»ΠΈΠ·ΠΊΠΎΡΠΎΠ΄ΡΡΠ²Π΅Π½ΠΈ ΡΡΠ΅Π΄ΠΈΠ½Π΅Π½ΠΈΡ. ΠΠ° ΡΠ΅ΡΠ°ΠΏΠ΅Π²ΡΠΈΡΠ½ΠΈΡ ΠΏΠΎΡΠ΅Π½ΡΠΈΠ°Π» Π½Π° ΠΊΡΡΠΊΡΠΌΠΈΠ½Π° ΠΈΠΌΠ° ΡΠ΅Π΄ΠΈΡΠ° Π΄Π°Π½Π½ΠΈ ΠΎΡ Π΅ΠΊΡΠΏΠ΅ΡΠΈΠΌΠ΅Π½ΡΠ°Π»Π½ΠΈ ΠΈΠ·ΡΠ»Π΅Π΄Π²Π°Π½ΠΈΡ, ΠΊΠ°ΠΊΡΠΎ ΠΈ ΠΊΠ»ΠΈΠ½ΠΈΡΠ½ΠΈ Π΄Π°Π½Π½ΠΈ. ΠΠ½ΠΎΠ³ΠΎΠ±ΡΠΎΠΉΠ½ΠΈ ΠΏΡΠΎΡΡΠ²Π°Π½ΠΈΡ ΠΏΠΎΠΊΠ°Π·Π²Π°Ρ, ΡΠ΅ ΡΠΎΠΉ ΠΈΠΌΠ° Π·Π½Π°ΡΠΈΡΠ΅Π»Π½Π° ΠΏΡΠΎΡΠΈΠ²ΠΎΡΡΠΌΠΎΡΠ½Π° ΠΈ Π² ΡΠ°ΡΡΠ½ΠΎΡΡ ΠΏΡΠΎΡΠΈΠ²ΠΎΠΌΠΈΠ΅Π»ΠΎΠΌΠ½Π° Π°ΠΊΡΠΈΠ²Π½ΠΎΡΡ ΠΈ ΠΎΡΠΊΡΠΈΠ²Π°Ρ ΠΏΠ΅ΡΡΠΏΠ΅ΠΊΡΠΈΠ²Π° Π·Π° Π±ΡΠ΄Π΅ΡΠΎΡΠΎ ΠΌΡ ΠΏΡΠΈΠ»ΠΎΠΆΠ΅Π½ΠΈΠ΅ ΠΊΠ°ΡΠΎ Π»Π΅ΠΊΠ°ΡΡΡΠ²Π΅Π½ ΠΏΡΠΎΠ΄ΡΠΊΡ. ΠΠ°Π±ΠΈΠ»Π½ΠΎΡΡΡΠ° ΠΌΡ ΠΏΡΠΈ ΠΎΡΠ°Π»Π½ΠΎ ΠΏΡΠΈΠ»ΠΎΠΆΠ΅Π½ΠΈΠ΅, ΠΊΠ°ΠΊΡΠΎ ΠΈ ΠΏΠΎΡΠ΅Π½ΡΠΈΠ°Π»Π½ΠΈΡΠ΅ Π»Π΅ΠΊΠ°ΡΡΡΠ²Π΅Π½ΠΈ Π²Π·Π°ΠΈΠΌΠΎΠ΄Π΅ΠΉΡΡΠ²ΠΈΡ Ρ ΡΠ°Π·Π»ΠΈΡΠ½ΠΈ ΠΌΠ΅Π΄ΠΈΠΊΠ°ΠΌΠ΅Π½ΡΠΈ, ΠΎΠ³ΡΠ°Π½ΠΈΡΠ°Π²Π°Ρ Π½Π΅Π³ΠΎΠ²ΠΎΡΠΎ ΡΠ²ΠΎΠ±ΠΎΠ΄Π½ΠΎ ΠΏΡΠΈΠ»ΠΎΠΆΠ΅Π½ΠΈΠ΅ ΠΏΠΎΠ΄ ΡΠΎΡΠΌΠ°ΡΠ° Π½Π° ΠΊΠ°ΠΏΡΡΠ»Π½ΠΈ ΠΈ ΡΠ°Π±Π»Π΅ΡΠ½ΠΈ ΡΠΎΡΠΌΠΈ, Π½ΠΎ ΠΏΡΠΈΠ΅ΠΌΡΡ ΠΌΡ ΠΊΠ°ΡΠΎ ΠΏΠΎΠ΄ΠΏΡΠ°Π²ΠΊΠ° Π΅ ΠΏΠΎΠΊΠ°Π·Π°Π» ΡΠ°ΠΌΠΎ ΠΈ Π΅Π΄ΠΈΠ½ΡΡΠ²Π΅Π½ΠΎ ΠΏΠΎΠ»Π·ΠΈ Π·Π° ΡΠΏΠΎΡΡΠ΅Π±ΡΠ²Π°ΡΠΈΡΠ΅ Π³ΠΎ.Turmeric (Curcuma longa L., Zingiberaceae) is a spice that is widely used in Indian medicine. The spectrum of diseases in which it is applied includes bile and liver diseases, dizziness, sinusitis, rheumatism, sprains and wounds. The main biologically active substance in the turmeric root is curcumin, accompanied by other closely related compounds. For the therapeutic value of curcumin, there are a number of data from experimental studies as well as clinical data. Numerous studies have shown that it has significant anti-tumor and, in particular, anti-myeloma activity, and have discovered prospects for its future use as a medicinal product. Its lability in oral administration as well as potential drug interactions with various drugs restrict its free use in the form of capsule and tablet formulations, but its administration as a spice has only shown benefits to the patients
Cannabinoids Usage In The Fight Against Oncological Diseases
ΠΡΠ΅Π· ΠΏΠΎΡΠ»Π΅Π΄Π½ΠΎΡΠΎ Π΄Π΅ΡΠ΅ΡΠΈΠ»Π΅ΡΠΈΠ΅ ΠΊΠ»Π°ΡΠΈΡΠ΅ΡΠΊΠ°ΡΠ° Ρ
ΠΈΠΌΠΈΠΎΡΠ΅ΡΠ°ΠΏΠΈΡ ΠΎΡΡΡΡΠΏΠ²Π° ΠΌΡΡΡΠΎ Π½Π° Π½ΠΎΠ²ΠΈ ΡΠ°ΡΠΌΠ°ΠΊΠΎΠ»ΠΎΠ³ΠΈΡΠ½ΠΈ ΠΏΠΎΠ΄Ρ
ΠΎΠ΄ΠΈ, Π½Π°ΡΠΎΡΠ΅Π½ΠΈ ΠΊΡΠΌ ΠΏΠ°ΡΠΎΠ»ΠΎΠ³ΠΈΡΠ½ΠΎ ΠΈΠ·ΠΌΠ΅Π½Π΅Π½ΠΈΡΠ΅ ΡΠΈΠ³Π½Π°Π»Π½ΠΎ-ΡΡΠ°Π½ΡΠ΄ΡΠΊΡΠΈΠΎΠ½Π½ΠΈ ΠΏΡΡΠΈΡΠ°. ΠΠ°Π½Π°Π±ΠΈΡΡΡ Π΅ Π΅Π΄Π½Π° ΠΎΡ ΠΌΠ½ΠΎΠΆΠ΅ΡΡΠ²ΠΎΡΠΎ Π΄ΡΠ΅Π²Π½ΠΈ Π±ΠΈΠ»ΠΊΠΈ ΠΈΠ·ΠΏΠΎΠ»Π·Π²Π°Π½ΠΈ ΠΎΡ Π°ΠΌΠ΅ΡΠΈΠΊΠ°Π½ΡΠΊΠΈΡΠ΅ ΠΈΠ½Π΄ΠΈΠ°Π½ΡΠΈ ΠΎΡ Ρ
ΠΈΠ»ΡΠ΄ΠΎΠ»Π΅ΡΠΈΡ Π½Π°ΡΠ°ΠΌ. Π Π½Π°ΡΠΈ Π΄Π½ΠΈ Π½Π°ΡΡΠ½ΠΈΡΠ΅ Π΄Π°Π½Π½ΠΈ Π·Π° ΠΏΠΎΠ»Π·ΠΎΡΠ²ΠΎΡΠ½ΠΈΡΠ΅ ΠΌΡ Π΅ΡΠ΅ΠΊΡΠΈ ΠΏΡΠΈ ΡΠΈΡΠΎΠΊ ΡΠΏΠ΅ΠΊΡΡΡ ΠΎΡ Π·Π°Π±ΠΎΠ»ΡΠ²Π°Π½ΠΈΡ Π½Π΅ΠΏΡΠ΅ΠΊΡΡΠ½Π°ΡΠΎ Π½Π°ΡΠ°ΡΡΠ²Π°Ρ. ΠΠΌΠ° ΠΌΠ½ΠΎΠ³ΠΎ Π΅ΠΊΡΠΏΠ΅ΡΠΈΠΌΠ΅Π½ΡΠ°Π»Π½ΠΈ Π΄Π°Π½Π½ΠΈ, ΠΊΠ°ΠΊΡΠΎ ΠΈ Π΅ΠΊΡΠΏΠ΅ΡΠΈΠΌΠ΅Π½ΡΠ°Π»Π½ΠΈ ΠΌΠΎΠ΄Π΅Π»ΠΈ ΠΈ ΠΏΡΠΈ Ρ
ΠΎΡΠ° ΠΈΠ·ΡΠ»Π΅Π΄Π²Π°ΡΠΈ, ΠΏΠΎΠ²Π»ΠΈΡΠ²Π°Π½ΠΈΡΠ΅ ΠΎΡ Π±ΠΈΠΎΠ»ΠΎΠ³ΠΈΡΠ½ΠΎ Π°ΠΊΡΠΈΠ²Π½ΠΈΡΠ΅ Π²Π΅ΡΠ΅ΡΡΠ²Π° Π² Π½Π΅Π³ΠΎ, ΡΠΈΠ³Π½Π°Π»Π½ΠΈ ΠΊΠ°ΡΠΊΠ°Π΄ΠΈ.Π ΡΠΎΠ·ΠΈ ΠΎΠ±Π·ΠΎΡ ΡΠ° ΠΎΠΏΠΈΡΠ°Π½ΠΈ ΡΠ΅Π΄ΠΈΡΠ° ΠΈΠ·ΡΠ»Π΅Π΄Π²Π°Π½ΠΈΡ ΠΈ ΠΊΠ»ΠΈΠ½ΠΈΡΠ½ΠΈ ΠΏΡΠΎΡΡΠ²Π°Π½ΠΈΡ, ΠΊΠΎΠΈΡΠΎ ΠΏΠΎΠΊΠ°Π·Π²Π°Ρ Π·Π½Π°ΡΠΈΡΠ΅Π»Π½ΠΈΡ Π½Π°ΠΏΡΠ΅Π΄ΡΠΊ ΠΏΠΎΡΡΠΈΠ³Π½Π°Ρ ΠΏΠΎΡΠ»Π΅Π΄Π½ΠΈΡΠ΅ Π³ΠΎΠ΄ΠΈΠ½ΠΈ ΠΏΡΠΈ ΠΈΠ·ΠΏΠΎΠ·Π»Π²Π°Π½Π΅ΡΠΎ Π½Π° ΠΊΠ°Π½Π°Π±ΠΈΠ½ΠΎΠΈΠ΄ΠΈΡΠ΅ Π·Π° Π±ΠΎΡΠ±Π° Ρ ΠΎΠ½ΠΊΠΎΠ»ΠΎΠ³ΠΈΡΠ½ΠΈΡΠ΅ Π·Π°Π±ΠΎΠ»ΡΠ²Π°Π½ΠΈΡ. ΠΡΠΊΠΎΠ»ΠΊΠΎ ΠΏΡΠΎΡΡΠ²Π°Π½ΠΈΡ in vivo ΠΈ in vitro Π΄ΠΎΠΊΠ°Π·Π²Π°Ρ Π΄ΠΎΠ±ΡΠ°ΡΠ° ΠΏΠΎΠ½ΠΎΡΠΈΠΌΠΎΡΡ ΠΈ Π±Π΅Π·ΠΎΠΏΠ°ΡΠ½ΠΎΡΡ Π½Π° ΠΊΠ°Π½Π°Π±ΠΈΠ΄ΠΈΠΎΠ»Π° ΠΏΡΠΈ Ρ
ΠΎΡΠ° ΠΈ ΠΆΠΈΠ²ΠΎΡΠ½ΠΈ. ΠΠΎΠ»ΠΎΠΆΠΈΡΠ΅Π»Π½ΠΈΡ Π΅ΡΠ΅ΠΊΡ Π½Π° ΡΡΠ±ΡΡΠ°Π½ΡΠΈΡΡΠ° ΠΏΡΠΈ ΡΠ°Π·Π»ΠΈΡΠ½ΠΈ ΡΡΡΡΠΎΡΠ½ΠΈΡ, Π²ΡΠ·ΠΏΠ°Π»ΠΈΡΠ΅Π»Π½ΠΈ ΠΈ ΠΎΠ½ΠΊΠΎΠ»ΠΎΠ³ΠΈΡΠ½ΠΈ ΡΡΡΠ±Π²Π° Π΄Π° Π±ΡΠ΄Π΅ ΠΎΡΡΠ΅ΡΠ΅Π½, Π½ΠΎ Π·Π° Π΄Π° Π½Π°Π²Π»Π΅Π·Π΅ ΠΏΠΎ-ΠΏΡΠ»Π½ΠΎ Π² ΠΌΠ΅Π΄ΠΈΡΠΈΠ½ΡΠΊΠ°ΡΠ° ΠΏΡΠ°ΠΊΡΠΈΠΊΠ° ΡΠ° Π½Π΅ΠΎΠ±Ρ
ΠΎΠ΄ΠΈΠΌΠΈ ΠΎΡΠ΅ ΠΌΠ½ΠΎΠ³ΠΎ Π·Π°Π΄ΡΠ»Π±ΠΎΡΠ΅Π½ΠΈ ΠΏΡΠΎΡΡΠ²Π°Π½ΠΈΡ.Over the last decade, classical chemotherapy has given way to new pharmacological approaches aimed at pathologically altered signal transduction pathways. Cannabis is one of the many ancient herbs used by American Indians for millennia. Nowadays, scientific data on its beneficial effects over a wide range of diseases are constantly increasing. There are many experimental data, as well as experimental models, and in humans studying the signal cascades influenced by the biologically active substances in it.This review describes a number of studies and clinical trials that show the significant advances made in recent years in the use of cannabinoids to combat oncological diseases. In vivo and in vitro studies demonstrate the good tolerability and safety of cannabidiol in humans and animals. The positive effect of the substance in various conditions, inflammatory and oncological, should be taken into account, but more extensive research is needed to gain access to medical practice
In Vitro Evaluation of a Stable Monomeric Gold(II) Complex with Hematoporphyrin IX: Cytotoxicity against Tumor and Kidney Cells, Cellular Accumulation, and Induction of Apoptosis
The antineoplastic potential of a stable monomeric Au(II) complex with hematoporphyrin IX (Hp), namely [Au(II)Hpβ2H.(H2O)2], was investigated in a panel of tumor cell lines. The complex exhibits strong cytotoxicity, whereby the leukaemia- and lymphoma-derived cell lines are more sensitive, with IC50 values comparable to those of the reference anticancer drug cisplatin. In contrast, the solid tumor models are more sensitive to the platinum drug. A comparative assessment of both agents against the human kidney cell line 293T has shown that [Au(II)Hpβ2H.(H2O)2] is less cytotoxic. The gold complex induces oligonucleosomal DNA fragmentation in tumour cells following 24-hour treatment and hence its cytotoxic effect is at least partly mediated by induction of apoptotic cell death. A prominent intracellular gold accumulation was detected after treating tumor cells with [Au(II)Hpβ2H.(H2O)2] which shows that its putative pharmacological targets are readily accessible after a short incubation period
Poly (ethylene oxide)-block-poly (n-butyl acrylate)-blockpoly (acrylic acid) triblock terpolymers with highly asymmetric hydrophilic blocks: synthesis and aqueous solution properties
The synthesis and aggregation behaviour in aqueous media of novel amphiphilic poly(ethylene oxide)-
block-poly(n-butyl acrylate)-block-poly(acrylic acid) (PEOβPnBAβPAA) triblock terpolymers were
studied. Terpolymers composed of two highly asymmetric hydrophilic PEO (113 monomer units) and
PAA (10β17 units) blocks, and a longer soft hydrophobic PnBA block (163 or 223 units) were
synthesized by atom transfer radical polymerisation (ATRP) of n-butyl acrylate and tert-butyl acrylate
(tBA), followed by selective hydrolysis of the PtBA blocks. These terpolymers are not directly soluble in
water but form defined spherical micelles by employing the dialysis method as confirmed by dynamic
light scattering (DLS) and cryogenic transmission microscopy (cryo-TEM). Based on terpolymer
architecture and composition, a three-layered micellar structure comprising a PnBA core, a PEO/PAA
middle layer, and a PEO outer layer is suggested. The micelles do not dissociate to very low
concentrations and, therefore, are promising candidates for long-circulating drug delivery systems.
Further, as evidenced by high-performance liquid chromatography (HPLC), the micelles can load and
release, without burst effect, the hydrophobic drug paclitaxel
Curcumin loaded pH-sensitive hybrid lipid/block copolymer nanosized drug delivery systems
Curcumin is a perspective drug candidate with pleiotropic antineoplastic activity, whose exceptionally low aqueous solubility and poor pharmacokinetic properties have hampered its development beyond the preclinical level. A possible approach to overcome these limitations is the encapsulation of curcumin into nano-carriers, incl. liposomes. The present contribution is focused on feasibility of using hybrid pH-sensitive liposomes, whereby curcumin is entrapped as a free drug and as a water soluble inclusion complex with PEGylated tert-butylcalix[4]arene, which allows the drug to occupy both the phospholipid membranes and the aqueous core of liposomes. The inclusion complexes were encapsulated in dipalmithoylphosphathydilcholine:cholesterol liposomes, whose membranes were grafted with a poly(isoprene-b-acrylic acid) diblock copolymer to confer pH-sensitivity. The liposomes were characterized by DLS, ΞΆ-potential measurements, cryo-TEM, curcumin encapsulation efficacy, loading capacity, and in vitro release as a function of pH. Free and formulated curcumin were further investigated for cytotoxicity, apoptosis-induction and caspase-8, and 9 activation in chemosensitive HL-60 and its resistant sublines HL-60/Dox and HL-60/CDDP. Formulated curcumin was superior cytotoxic and apoptogenic agent vs. the free drug. The mechanistic assay demonstrated that the potent proapoptotic effects of pH-sensitive liposomal curcumin presumably mediated via recruitment of both extrinsic and intrinsic apoptotic pathways in both HL-60 and HL-60/CDDP cells
Curcumin loaded pH-sensitive hybrid lipid/block copolymer nanosized drug delivery systems
Curcumin is a perspective drug candidate with pleiotropic antineoplastic activity, whose exceptionally low aqueous solubility and poor pharmacokinetic properties have hampered its development beyond the preclinical level. A possible approach to overcome these limitations is the encapsulation of curcumin into nano-carriers, incl. liposomes. The present contribution is focused on feasibility of using hybrid pH-sensitive liposomes, whereby curcumin is entrapped as a free drug and as a water soluble inclusion complex with PEGylated tert-butylcalix[4]arene, which allows the drug to occupy both the phospholipid membranes and the aqueous core of liposomes. The inclusion complexes were encapsulated in dipalmithoylphosphathydilcholine:cholesterol liposomes, whose membranes were grafted with a poly(isoprene-b-acrylic acid) diblock copolymer to confer pH-sensitivity. The liposomes were characterized by DLS, ΞΆ-potential measurements, cryo-TEM, curcumin encapsulation efficacy, loading capacity, and in vitro release as a function of pH. Free and formulated curcumin were further investigated for cytotoxicity, apoptosis-induction and caspase-8, and 9 activation in chemosensitive HL-60 and its resistant sublines HL-60/Dox and HL-60/CDDP. Formulated curcumin was superior cytotoxic and apoptogenic agent vs. the free drug. The mechanistic assay demonstrated that the potent proapoptotic effects of pH-sensitive liposomal curcumin presumably mediated via recruitment of both extrinsic and intrinsic apoptotic pathways in both HL-60 and HL-60/CDDP cells
Curcumin loaded pH-sensitive hybrid lipid/block copolymer nanosized drug delivery systems
Curcumin is a perspective drug candidate with pleiotropic antineoplastic activity, whose exceptionally low aqueous solubility and poor pharmacokinetic properties have hampered its development beyond the preclinical level. A possible approach to overcome these limitations is the encapsulation of curcumin into nano-carriers, incl. liposomes. The present contribution is focused on feasibility of using hybrid pH-sensitive liposomes, whereby curcumin is entrapped as a free drug and as a water soluble inclusion complex with PEGylated tert-butylcalix[4]arene, which allows the drug to occupy both the phospholipid membranes and the aqueous core of liposomes. The inclusion complexes were encapsulated in dipalmithoylphosphathydilcholine:cholesterol liposomes, whose membranes were grafted with a poly(isoprene-b-acrylic acid) diblock copolymer to confer pH-sensitivity. The liposomes were characterized by DLS, ΞΆ-potential measurements, cryo-TEM, curcumin encapsulation efficacy, loading capacity, and in vitro release as a function of pH. Free and formulated curcumin were further investigated for cytotoxicity, apoptosis-induction and caspase-8, and 9 activation in chemosensitive HL-60 and its resistant sublines HL-60/Dox and HL-60/CDDP. Formulated curcumin was superior cytotoxic and apoptogenic agent vs. the free drug. The mechanistic assay demonstrated that the potent proapoptotic effects of pH-sensitive liposomal curcumin presumably mediated via recruitment of both extrinsic and intrinsic apoptotic pathways in both HL-60 and HL-60/CDDP cells