Publications by authors named "A Calugaru"

The zwitterionic molecule Benzo-[f]-Quinolinium Acetyl Benzoyl Methylid (BQABM) is studied in this paper from quantum mechanical and solvatochromic point of view. The nature and contribution of each type of intermolecular interaction to the spectral shifts in different solvents were estimated based on solvatochromic analyze of BQABM visible absorption band. The correlation coefficients for the dependence of the wavenumber in the maximum of BQABM visible band vs.

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High-mobility group box protein 1 (HMGB1) is an intracellular protein that may be released actively from monocytes and macrophages or passively from necrotic or damaged cells. Its inhibition in animal experiments, even in the late phase of septic shock, significantly enhanced the survival rate of rodents. The aim of our study was to investigate the effect of a vegetal fraction isolated and highly purified from Helleborus purpurascens regarding the modulation of HMGB1 release either from tumor cells or human blood mononuclear cells.

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Some progress in cancer research was possible in recent years mainly due to important advances in nanotechnology. However, clinical use of nanomaterials is still hindered by limitations. In search of better performance and control of inoculated materials, the efficiency and toxicity of SBBC implant particles was assessed.

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The cells of immune system such as monocytes and macrophages are in first line defence against dangerous signals. In the present paper the recognition of Dectin 1 receptors and the modulation of Interleukin-10 (IL-10) and Tumor Necrosis Factor-alpha (TNF-alpha) cytokine production by Curdlan and Curdlan derivatives in peripheral blood mononuclear cells (PBMCs) were studied. The effect of Curdlan or Curdlan derivatives on the expression of Dectin 1 receptors in PBMCs was revealed by flow-cytometry and the levels of IL-10 and TNFalpha were measured by ELISA kit in supernatants of PBMCs cultured in presence or absence of Curdlan, Curdlan derivatives and LPS.

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The chemotherapy success to kill cancer cells depends on its ability to stop cell division. The faster the cells are dividing, the more likely it is that chemotherapy will kill the cells, causing the tumor to shrink. Taking into account the severe side effects of chemotherapy, drugs producers also focus on natural products obtained either from medicinal plants, or from microorganisms.

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