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MedTech Outlook | Friday, October 27, 2023
The development of oral formulations of biologics has been the 'holy grail' for pharmaceutical scientists since insulin became available in the 1920s
Fremont, CA: In the early stages of drug discovery, as well as in clinical trials, we focus on delivering potential new medicines to their targets in a way that is appropriate for the drug and appropriate for the patient.
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Targeted delivery - to reach previously unreachable targets within specific cells: To treat diseased organs and tissues, we propose using mRNA to produce therapeutic proteins, antigens, and/or antibodies directly in cells, turning cells into biological factories. During intravenous, subcutaneous, and pulmonary administration of mRNA encapsulated in LNPs, we have demonstrated that mRNA encapsulated in LNPs is capable of delivering mRNA into cells and initiating protein production within them. Research is now focusing on enhancing the efficacy and safety profile of this drug delivery system.
To achieve therapeutic concentrations of our medicines while minimizing undesirable side effects through tissue-targeted delivery: As part of our efforts to make better-tolerated medicines that have the potential to reduce side effects and increase patient adherence, we are developing a range of formulations and approaches, including nanoparticles armed with the appropriate targeting elements, including antibodies. Drug compounds are chemically linked to branched polymers in polymeric nanoparticles, while in polymer conjugates; they are encapsulated in a polymer matrix. The goal is to 'load' these different types of nanoparticles with drugs as efficiently as possible, maintain control over their release rate, and fully understand the critical factors affecting nanoparticle performance.
Controlled release - this reduces the need for frequent dosing, making treatment easier and improving the patient's experience: We are using a range of polymers, silica and other small particles, as well as in situ gel and liquid crystal formulations, to extend the half-life of our medicines and optimize their time at their target. Our preclinical studies showed that anti-cancer drugs could be carried by PGLA nanoparticles, which increase their anti-tumor activity, reduces side effects, and could be converted to monthly treatment.
To simplify the way biologics are administered, we are developing oral products with the potential to improve patient outcomes: The aim of our research is to prevent oral biologics from being destroyed in the stomach and gut, as well as to facilitate their absorption from the gut into the bloodstream. To enable this, we are custom-making synthetic peptides such that they are. The development of oral formulations of biologics has been the 'holy grail' for pharmaceutical scientists since insulin became available in the 1920s. Patients prefer oral formulations over injections, which is understandable. Oral biologics have the potential to become a reality because of advances in drug design and protective coatings, as well as the introduction of transient permeation enhancers (TPEs).
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