Publications by authors named "Ashok Hajare"

Article Synopsis
  • Poor dissolution of axitinib (AXT) limits its oral effectiveness, prompting a study on liquisolid technology to enhance its dissolution rate and bioavailability for treating renal cell carcinoma.
  • LS compacts were created using specific materials, and various analyses (P-XRD, DSC, SEM) confirmed the transformation of crystalline AXT to a more soluble form, leading to significant improvements in drug dissolution and bioavailability.
  • The optimal LS formulation showed a notable increase in drug release (over 99% vs. 18.05% for traditional tablets) and exhibited enhanced cytotoxic effects against cancer cells, suggesting a promising low-cost treatment option for patients.
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With the application of the quality by design (QbD) approach, a high-pressure homogenizer (HPH) methodology was employed to develop methotrexate nanosuspension (MTX-NS) to boost bioavailability. The Ishikawa diagram was used to analyze potential risk factors in formulation development. To screen and study the impact of various formulation and process factors on the critical quality attributes (CQA), the Placket-Burman design and central composite design were utilized.

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Lyophilized nanosuspension of poorly soluble Ethinyl estradiol (EE) was fabricated to enhance its solubility and bioavailability using a quality-by-design (QbD) approach. With the help of the Ishikawa diagram, prospective risk factors were identified and screened by Placket-Burman design to investigate the effects of formulation and process variables on dependent variables. The number of cycles (X4), the concentration of soya lecithin (X5) and the concentration of tween 80 (X7) were identified as significant factors (P<0.

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The motive behind present work was to discover a solution for overcoming the problems allied with a deprived oral bioavailability of salbutamol sulfate (SS) due to its first pass hepatic metabolism, shorter half-life, and systemic toxicity at high doses. Pulmonary delivery provides an alternative route of administration to avoid hepatic metabolism of SS, moreover facilitated diffusion and prolonged retention can be achieved by incorporation into liposomes. Liposomes were prepared by thin film hydration technique using 3 full factorial design and formulation was optimized based on the vesicle size and percent drug entrapment (PDE) of liposomes.

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