Astrazeneca plc is adding a preclinical-stage candidate to its cardiovascular pipeline via a potentially $2 billion licensing agreement with CSPC Pharmaceutical Group Ltd., which includes a $100 million up-front payment for rights to YS-2302018, an oral Lp(a) disruptor. It’s an impressive figure for such an early program, but the Cambridge, U.K.-based pharma hailed the small molecule’s potential against a range of indications, both alone and in combination regimens that could include PCSK9 inhibitor AZD-0780.
Aviadobio Ltd. has entered a potential $2.18 billion license and commercialization agreement for its frontotemporal dementia gene therapy, AVB-101, with Astellas Pharma Inc. Astellas is making a $20 million equity investment in London-based Aviadobio and will pay up to $30 million up front in advance of deciding whether or not to exercise the exclusive option to worldwide rights.
Wuhan YZY Biopharma Co. Ltd. is out-licensing lead candidate M-701, a CD3/EpCAM bispecific antibody, to Chia Tai Tianqing Pharmaceutical Group Co. Ltd. (CTTQ) for China rights in a deal worth up to $143 million. Under the deal, Sino Biopharmaceutical Ltd. subsidiary CTTQ is granted an exclusive license to develop, register, manufacture and commercialize M-701 within mainland China.
Regulatory snapshots, including drug submissions and approvals, clinical trial approvals and other regulatory decisions and designations in Asia-Pacific: Astrazeneca, Clinuvel, Modalis, Telix.
Research into the regulation of gene expression experienced a significant breakthrough with the discovery of microRNA, small RNA molecules that do not code for proteins but control their translation. This finding has earned its discoverers – Victor Ambros and Gary Ruvkun – the 2024 Nobel Prize in Physiology or Medicine “for the discovery of microRNA and its role in post-transcriptional gene regulation.”
Investigators at Nanjing Medical University and The University of Texas MD Anderson Cancer Center recently published data from their research that aimed to identify novel immunotherapy targets in triple-negative breast cancer (TNBC).