BMAL1 expression is tied to important cellular processes, including cell proliferation, migration, cell cycle and DNA damage repairing. There is increasing evidence that it regulates the expression of various oncogenes and tumor-suppressor genes in cancer cells. Researchers hypothesized that modulating BMAL1 expression could be a new therapeutic approach for treating cancer, such as triple-negative breast cancer (TNBC).
A new pan-cancer study has uncovered a shared vulnerability across multiple aggressive cancers and sheds light on the role that BRCA1-associated protein 1 (BAP1) plays in recognizing DNA damage. Researchers from Duke-National University of Singapore (NUS) Medical School in Singapore discovered that the loss of BAP1 – a mutation found in mesothelioma, cholangiocarcinoma, renal cell carcinoma and uveal melanoma – creates a specific defect in how cancer cells recognize and repair DNA damage.
Nanyang Biologics Pte. Ltd. has entered a $1.5 billion business combination agreement with RF Acquisition Corp II, a Nasdaq-listed special purpose acquisition company. Singapore-based Nanyang Biologics (NYB) is building a hybrid platform to revolutionize drug discovery by combining machine learning with natural compound libraries, and NYB claims it is developing one of the world’s largest AI-curated collections of bioactive compounds.
Nanyang Biologics Pte. Ltd. has entered a $1.5 billion business combination agreement with RF Acquisition Corp II, a Nasdaq-listed special purpose acquisition company. Singapore-based Nanyang Biologics (NYB) is building a hybrid platform to revolutionize drug discovery by combining machine learning with natural compound libraries, and NYB claims it is developing one of the world’s largest AI-curated collections of bioactive compounds.
Rakovina Therapeutics Inc. has obtained a short-list of recommended drug candidates from an initial artificial intelligence (AI) screening effort using the Deep Docking AI platform under a collaboration with the University of British Columbia.
Rakovina Therapeutics Inc. and Variational AI Inc. have entered into a research collaboration to identify and develop novel small-molecule therapies against DNA damage response (DDR) targets for the treatment of cancer.
Cumulus Oncology Ltd. is in the thick of raising a $50 million series A round as its model of sourcing novel drug targets emerging from academia, shaping them up for clinical development, and spinning them into startups, gathers pace. At the same time, Nodus Oncology Ltd., the first spinout created around an acquired asset, has just reached in vivo proof of concept with its lead DNA damage response inhibitor, and it, too, is looking to raise a series A to take the program through to the end of phase I.
Cumulus Oncology Ltd. is in the thick of raising a $50 million series A round as its model of sourcing novel drug targets emerging from academia, shaping them up for clinical development, and spinning them into startups, gathers pace. At the same time, Nodus Oncology Ltd., the first spinout created around an acquired asset, has just reached in vivo proof of concept with its lead DNA damage response inhibitor, and it, too, is looking to raise a series A to take the program through to the end of phase I.
A newly described small molecule inhibitor called AOH-1996 targets a cancer-associated isoform of PCNA (caPCNA), leading to a very broad therapeutic window. Researchers at City of Hope, a cancer research and treatment organization in California, reported on AOH-1996 in the Aug. 1, 2023, online edition of Cell Chemical Biology. Genes involved in replication and repair pathways are essential for the growth and survival of cancer cells. Proliferating cell nuclear antigen (PCNA) is a key player in DNA replication via a homotrimer formation that acts as a molecular sliding clamp around the DNA double helix.
Lantern Pharma Inc. has received IND clearance from the FDA for LP-184, which is being developed for advanced solid tumors and central nervous system (CNS) cancers.