Abstract:The objective of this study was to investigate the potential of various formulation strategies to achieve 1-month continuous (improved) release of the novel anti-cancer drug, 2-methoxyestradiol (2-ME), from injectable cylindrical poly(DL-lactide-co-glycolide) (PLGA) implants. PLGA implants were prepared by a solvent extrusion method. PLGA 50:50 (M w = 51 kDa, end group = lauryl ester) (PLGA-lauryl ester) implants loaded with 3-30 wt% 2-ME exhibited a pronounced lag phase (i.e., corresponding to induction time … Show more
“…They may increase or decrease the drug release rates by changing the matrix lipophilicity, matrix porosity, microclimate pH and or polymer drug interactions (37,38). Excipients, especially hydrophilic polymers compatible with the polymeric matrix, are helpful in providing aqueous channels to facilitate the diffusion-mediated drug release.…”
Section: Effect Of Formulation Additivesmentioning
Our data showed that these implants were able to release curcumin for long duration and to modulate liver phase I and phase II enzymes, demonstrating curcumin's biological efficacy delivered via this delivery system.
“…They may increase or decrease the drug release rates by changing the matrix lipophilicity, matrix porosity, microclimate pH and or polymer drug interactions (37,38). Excipients, especially hydrophilic polymers compatible with the polymeric matrix, are helpful in providing aqueous channels to facilitate the diffusion-mediated drug release.…”
Section: Effect Of Formulation Additivesmentioning
Our data showed that these implants were able to release curcumin for long duration and to modulate liver phase I and phase II enzymes, demonstrating curcumin's biological efficacy delivered via this delivery system.
“…2-ME is highly lipophilic with very low water solubility (solubility of 2-ME in water at 37 C was determined to be about 1.8 mg/mL) [39] and can be quickly metabolized, thus losing the therapeutic efficacy on cancer cells. Using dendrimer/2-ME complexes as a formulation could overcome the water-insolubility and improve the bioavailability of the drug.…”
Section: Encapsulation Of 2-me Within G5nhac-fi-fa Dendrimersmentioning
“…2 a The effect of six sulphamoylated 2ME derivatives on tubulin polymerization. DMSO was used as a negative control, while CMO2 was used as a positive control [14]. [7].…”
Section: Discussionmentioning
confidence: 99%
“…Those with no cytotoxic effects below 10,000 nM are denoted by '>10 k.' Values depict nanomolar (nM) concentrations. All experiments are conducted in triplicate (2MEbisMATE) and an azaindole derivative CMO2 [14] were used as positive controls. Following a 10-min incubation, tubulin assembly was initiated by injection of 1 mmol/L guanine triphosphate (GTP) and 5 mmol/L MgCl 2 .…”
Section: In Vitro Tubulin Polymerizationmentioning
confidence: 99%
“…In vitro tubulin polymerization assays were performed as previously described [14]. Pure bovine tubulin was prepared as described [15].…”
Section: In Vitro Tubulin Polymerizationmentioning
overexpressing multidrug-resistant uterine sarcoma cell line. The non-sulphamoylated compounds were only cytotoxic at micromolar ranges, if at all. The sulphamoylated compounds inhibited pure tubulin polymerization in a dose-dependent manner and induced microtubule destruction in cells after 24-h exposure. Conclusion Results revealed that the novel sulphamoylated 2ME derivatives have potential as anti-cancer drugs, possibly even against chemoresistant cancer cells. These compounds disrupt the intracellular microtubule integrity which leads to mitotic block of the cells.
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