DURHAM, N.C. / Feb 22, 2023 / Business Wire / Precision BioSciences, Inc. (Nasdaq: DTIL) a clinical stage gene editing company developing ARCUS®-based ex vivo allogeneic CAR T and in vivo gene editing therapies, today announced that the Company will participate in the H.C. Wainwright Cell Therapy Virtual Conference taking place February 28, 2023.
Details for the virtual fireside chat are as follows:
Date: Tuesday, February 28, 2023
Time: 2:00 PM ET
The fireside chat will be available via a live webcast accessible on Precision’s website in the Investors section under Events & Presentations on February 28, 2023: https://investor.precisionbiosciences.com/events-and-presentations. An archived replay will be available for approximately 30 days following the event.
About Precision BioSciences, Inc.
Precision BioSciences, Inc. is a clinical stage biotechnology company dedicated to improving life (DTIL) with its novel and proprietary ARCUS® genome editing platform. ARCUS is a highly precise and versatile genome editing platform that was designed with therapeutic safety, delivery, and control in mind. Using ARCUS, the Company’s pipeline consists of multiple ex vivo “off-the-shelf” CAR T immunotherapy clinical candidates and several in vivo gene editing candidates designed to cure genetic and infectious diseases where no adequate treatments exist. For more information about Precision BioSciences, please visit www.precisionbiosciences.com.
Last Trade: | US$5.04 |
Daily Change: | -0.09 -1.75 |
Daily Volume: | 64,796 |
Market Cap: | US$59.420M |
August 07, 2025 July 23, 2025 |
Compass Therapeutics is a clinical-stage, oncology-focused biopharmaceutical company developing proprietary antibody-based therapeutics to treat multiple human diseases. The company's scientific focus is on the relationship between angiogenesis, the immune system, and tumor growth...
CLICK TO LEARN MOREC4 Therapeutics is pioneering a new class of small-molecule drugs that selectively destroy disease-causing proteins via degradation using the innate machinery of the cell. This targeted protein degradation approach offers advantages over traditional drugs, including the potential to treat a wider range of diseases...
CLICK TO LEARN MOREEnd of content
No more pages to load