Innovative solid-state storage for biologics developed
A new method enabling biological materials to be stored in a solid-state means medicines such as insulin could be administered orally in the future.
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A new method enabling biological materials to be stored in a solid-state means medicines such as insulin could be administered orally in the future.
EPIQ is a single platform for Quality, Document, and Learning Management. It offers integration across departments for a seamless quality management.
In this Q&A, Recipharm’s Torkel Gren discusses developments in capsule formulation, including the shift away from gelatine and the potential for growth in the inhalation capsule market.
EPR Issue 3 includes articles the role of titanium dioxide in pharmaceutical formulations, bioprocessing innovations for cell and gene therapies, manufacturing of radiotheranostics and more …
When developing a formulation for an immediate-release tablet, critical attributes of the active ingredient, including concentration, compactability, flowability, and solubility typically guide excipient selection.
A study on the small molecule antibiotic rifabutin has highlighted benefits of mechanistic compartmental analysis in evaluating nanomedicines.
CNS drug development is complex, and partnering with an integrated CRO/CDMO can reduce your timelines by up to 40%. Learn more in The Altascientist.
VIVACOAT® A shows outstanding adhesion to tablet cores achieved by using globally accepted excipients. Low adhesion can be the reason for the frequently observed effect of "logo bridging“.
Lipid-based Nano Particles form a very useful class of delivery systems in the pharmaceutical area as well as in cosmetics (and food/nutraceuticals).
26 May 2023 | By Thermo Fisher Scientific (Patheon)
Watch this webinar to discover how route scouting and polymorph screening at early stages of clinical trials can support scale up to commercial manufacturing.
In a continuous process, mono-functional excipients must be added through individual feeders, possibly resulting in multiple sources of variability.
SGS PACE is a seamless combination of world-leading development, bioanalysis and clinical research through one point of contact.
A paper has shown how machine learning (ML) models predicted the inkjet printing printability of drug formulations with high accuracy.
Massachusetts Institute of Technology researchers have developed an algorithm that extracts powder particle size distribution from laser speckle in real-time.
SGS’s biosafety centre of excellence in Glasgow has received the Business Leadership Award at Scotland's Life Sciences Annual Awards 2023.