Inhibition of bcl-2 and cox-2 Protein Expression after Local Application of a New Carmustine-Loaded Clinoptilolite-Based Delivery System in a Chemically Induced Skin Cancer Model in Mice.
Cristina Mihaela GhiciucAurel Lulu StratLăcrămioara OchiuzCatalina Elena LupusoruMaria IgnatAurelia VasileAlexandru GrigoroviciIulian StoleriuCarmen SolcanPublished in: Molecules (Basel, Switzerland) (2017)
Our research has focused on in vitro and in vivo evaluations of a new Carmustine (BCNU)-loaded clinoptilolite-based delivery system. Two clinoptilolite ionic forms-hydrogen form (HCLI) and sodium form (NaCLI)-were prepared, allowing a loading degree of about 5-6 mg BCNU/g of zeolite matrix due to the dual porous feature of clinoptilolite. Clinoptilolite-based delivery systems released 35.23% of the load in 12 h for the BCNU@HCLI system and only 10.82% for the BCNU@NaCLI system. The BCNU@HCLI system was chosen to develop gel and cream semisolid dosage forms. The cream (C_BCNU@HCLI) released 29.6% of the loaded BCNU after 12 h in the Nylon synthetic membrane test and 31.6% in the collagen membrane test, higher by comparison to the gel. The new cream was evaluated in vivo in a chemically induced model of skin cancer in mice. Quantitative immunohistochemistry analysis showed stronger inhibition of B-cell lymphoma-2 (bcl-2) and cyclooxygenase 2 (cox-2) protein expression, known markers for cancer survival and aggressiveness, after the treatment with C_BCNU@HCLI by comparison to all the control treatment types, including an off-label magistral formula commercially available Carmustine cream as reference, bringing evidence that a clinoptilolite-based delivery systems could be used as a cancer drug carriers and controlled release systems (skin-targeted topical delivery systems).
Keyphrases
- wound healing
- skin cancer
- drug delivery
- cancer therapy
- papillary thyroid
- high glucose
- drug induced
- machine learning
- squamous cell
- diabetic rats
- type diabetes
- squamous cell carcinoma
- diffuse large b cell lymphoma
- high resolution
- metabolic syndrome
- oxidative stress
- insulin resistance
- endothelial cells
- lymph node metastasis
- combination therapy
- skeletal muscle
- human milk
- stress induced
- free survival