AI Article Synopsis

  • * The report describes the encapsulation of SFB in a biocompatible, biodegradable phospholipid carrier, resulting in a microemulsion that improves drug release and reduces protein binding, thus enhancing cell viability against breast cancer cell lines.
  • * Pharmacokinetic studies showed that this new nanocarrier significantly improves the oral bioavailability of SFB, suggesting its potential as an effective and safer option for oral cancer chemotherapy.

Article Abstract

Sorafenib tosylate (SFB) is a multikinase inhibitor that inhibits tumour growth and proliferation for the management of breast cancer but is also associated with issues like toxicity and drug resistance. Also, being a biopharmaceutical class II (BCS II) drug, its oral bioavailability is the other challenge. Henceforth, this report intended to encapsulate SFB into a biocompatible carrier with biodegradable components, i.e., phospholipid. The microemulsion of the SFB was prepared and characterized for the surface charge, morphology, micromeritics and drug release studies. The cell viability assay was performed on 4T1 cell lines and inferred that the IC value of sorafenib-loaded microemulsion (SFB-loaded ME) was enhanced compared to the naïve SFB at the concentrations of about 0.75 µM. More drug was available for the pharmacological response, as the protein binding was notably decreased, and the drug from the developed carriers was released in a controlled manner. Furthermore, the pharmacokinetic studies established that the developed nanocarrier was suitable for the oral administration of a drug by substantially enhancing the bioavailability of the drug to that of the free SFB. The results bring forth the preliminary evidence for the future scope of SFB as a successful therapeutic entity in its nano-form for effective and safer cancer chemotherapy via the oral route.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9374710PMC
http://dx.doi.org/10.1038/s41598-022-17333-6DOI Listing

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Article Synopsis
  • * The report describes the encapsulation of SFB in a biocompatible, biodegradable phospholipid carrier, resulting in a microemulsion that improves drug release and reduces protein binding, thus enhancing cell viability against breast cancer cell lines.
  • * Pharmacokinetic studies showed that this new nanocarrier significantly improves the oral bioavailability of SFB, suggesting its potential as an effective and safer option for oral cancer chemotherapy.
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