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1.
Arch Pharm (Weinheim) ; 355(9): e2200004, 2022 Sep.
Article in English | MEDLINE | ID: mdl-35621705

ABSTRACT

For the first time, compounds developed from the 1,2,3-triazole scaffold were evaluated as novel drugs to treat triple-negative breast cancer (TNBC). Four organic salts were idealized as nonclassical bioisosteres of miltefosine, which is used in the topical treatment for skin metastasizing breast carcinoma. Among them, derivative dhmtAc displayed better solubility and higher cytotoxicity against the human breast adenocarcinoma cell line and mouse 4T1 cell lines, which are representatives of TNBC. In vitro assays revealed that dhmtAc interferes with cell integrity, confirmed by lactate dehydogenase leakage. Due to its human peripheral blood mononuclear cell (PBMC) toxicity, dhmtAc in vivo studies were carried out with the drug incorporated in a long-circulating and pH-sensitive liposome (SpHL-dhmtAc), and the acute toxicity in BALB/c mice was determined. Free dhmtAc displayed cardiac and pulmonary toxicity after the systemic administration of 5 mg/kg doses. On the other hand, SpHL-dhmtAc displayed no toxicity at 20 mg/kg. The in vivo antitumor effect of SpHL-dhmtAc was investigated using the 4T1 heterotopic murine model. Intravenous administration of SpHL-dhmtAc reduced the tumor volume and weight, without interfering with the body weight, compared with the control group and the dhmtAc free form. The incorporation of the triazole compound in the liposome allowed the demonstration of its anticancer potential. These findings evidenced 1,3,4-trisubstituted-1,2,3-triazole as a promising scaffold for the development of novel drugs with applicability for the treatment of patients with TNBC.


Subject(s)
Liposomes , Triple Negative Breast Neoplasms , Animals , Cell Line, Tumor , Humans , Leukocytes, Mononuclear , Mice , Mice, Inbred BALB C , Structure-Activity Relationship , Triazoles/pharmacology , Triple Negative Breast Neoplasms/drug therapy
2.
Life Sci ; 187: 42-49, 2017 Oct 15.
Article in English | MEDLINE | ID: mdl-28823565

ABSTRACT

AIM: Investigate to what extent low-intensity swim training for six weeks counterbalances the adverse remodeling due to the advance of pathological hypertrophy in the left ventricle (LV) structural and mechanical properties in the early compensated phase of hypertension in male SHR. MAIN METHODS: Four-month-old male SHR and Wistar rats were randomly divided into Sed (sedentary) and Ex (exercised) groups. The exercised rats were submitted to a swimming protocol (1h/day, 5times/week, no additional load) for six weeks. LV tissue and isolated myocytes were used to assess structural and mechanical properties. Myocytes were stimulted at frequencies (F) of 1 and 3Hz at 37°C. KEY FINDINGS: Exercised SHR showed improvement in cardiovascular parameters compared to sedentary SHR (mean arterial pressure: 13.22%; resting HR: 14.28.%). About structural and mechanical properties, swim training induced a decrease in LV myocyte thickness (10.85%), number of inflammatory cells (21.24%); collagen type III (74.23%) and type I (85.6%) fiber areas; amplitude of single myocyte shortening (47% to F1 and 28.46% to F3), timecourses of shortening (16.5% to F1 and 7.55% to F3) and relaxation (15.31% to F3) compared to sedentary SHR. SIGNIFICANCE: Six weeks of swim training attenuates the adverse remodeling of LV structural and mechanical properties in the early compensated phase of hypertension in male SHR.


Subject(s)
Heart Ventricles/pathology , Hypertension/pathology , Hypertension/therapy , Physical Therapy Modalities , Swimming , Ventricular Remodeling/physiology , Animals , Blood Pressure/physiology , Collagen Type I/metabolism , Collagen Type III/metabolism , Electric Stimulation , Heart Rate/physiology , Heart Ventricles/metabolism , Hypertension/metabolism , Hypertension/physiopathology , Hypertrophy , Male , Muscle Contraction/physiology , Muscle Relaxation/physiology , Myocytes, Cardiac/pathology , Myocytes, Cardiac/physiology , Physical Conditioning, Animal , Rats
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