logo
#

Latest news with #ARCUS®

Precision BioSciences Accelerates Development of PBGENE-DMD Within its Wholly Owned Organic Pipeline and Highlights Pre-clinical Evidence at the American Society of Gene and Cell Therapy (ASGCT) Annual Meeting
Precision BioSciences Accelerates Development of PBGENE-DMD Within its Wholly Owned Organic Pipeline and Highlights Pre-clinical Evidence at the American Society of Gene and Cell Therapy (ASGCT) Annual Meeting

Business Wire

time14-05-2025

  • Business
  • Business Wire

Precision BioSciences Accelerates Development of PBGENE-DMD Within its Wholly Owned Organic Pipeline and Highlights Pre-clinical Evidence at the American Society of Gene and Cell Therapy (ASGCT) Annual Meeting

DURHAM, N.C.--(BUSINESS WIRE)--Precision BioSciences, Inc. (Nasdaq: DTIL), a clinical stage gene editing company utilizing its novel proprietary ARCUS® platform to develop in vivo gene editing therapies for diseases with high unmet need, today announced the strategic prioritization and acceleration of PBGENE-DMD, the Company's first-in-class in vivo gene editing approach for Duchenne Muscular Dystrophy (DMD) and highlighted a PBGENE-DMD poster presentation at the American Society of Gene and Cell Therapy (ASGCT) Annual Meeting being held May 13-17, 2025, in New Orleans, Louisiana. 'Nomination and acceleration of PBGENE-DMD as our second wholly owned program is a result of the compelling preclinical evidence we have generated to date,' said Michael Amoroso, President and Chief Executive Officer of Precision BioSciences. 'Currently, there are no approved treatments or treatments in development that significantly improve muscle function over time to beneficially alter the long-term prognosis of this devastating disease. PBGENE-DMD is the first in vivo gene editing program that has the potential to transform the treatment paradigm and deliver durable functional improvement for most patients, as up to 60% of those afflicted carry mutations in the 'hot spot' region between exons 45-55. Based on these data, the significant unmet need in DMD and the clear regulatory guidance established for new therapeutics in DMD, we are committed to advancing PBGENE-DMD to the next stage of development. We look forward to rapidly advancing this program toward the clinic as our second wholly owned program after PBGENE-HBV and further establishing the therapeutic potential of ARCUS in vivo gene editing.' DMD is a genetic disease caused by mutations in the dystrophin gene that prevent production of the dystrophin protein and affects approximately 15,000 patients in the U.S. alone. There are currently no approved therapies that can drive significant and durable functional muscle improvements. PBGENE-DMD employs two complementary ARCUS nucleases delivered in a single AAV to excise exons 45-55 of the dystrophin gene with the aim of restoring the body's natural production of a functional dystrophin protein. 'PBGENE-DMD has the potential to provide a one-time, durable intervention that could allow for lifelong benefits in muscle regeneration and function. Preclinical models have shown that PBGENE-DMD results in significant and sustained improvement of maximum force output by restoring the human body's production of a functional, near full-length dystrophin protein,' added Cassie Gorsuch, Ph.D., Chief Scientific Officer at Precision BioSciences. 'Approximately one in every 3,500–5,000 males in the United States is afflicted with DMD, and these patients have limited treatment options. Our prioritization of PBGENE-DMD in conjunction with long term, preclinical functional improvement reinforces our belief in the program and its potential to address significant unmet need for patients living with DMD.' In preclinical data being presented at ASGCT, PBGENE-DMD demonstrated significant and durable functional improvement in a humanized DMD mouse model. Following AAV delivery,PBGENE-DMD restored the body's ability to produce a functional dystrophin protein broadly across multiple muscles, including cardiac and skeletal muscles. Over the course of 9 months, mice treated with PBGENE-DMD showed increased dystrophin protein expression resulting in substantial and sustained functional muscle improvement. In addition, PBGENE-DMD-edited dystrophin mRNA transcript in muscle satellite stem cells, which are progenitor cells for new muscle cells, supports the potential for long-term durability. 'Precision's ARCUS gene excision approach targeting exons 45-55 represents a novel approach to addressing the underlying disease for the majority of patients with Duchenne muscular dystrophy,' said Debra Miller, founder and CEO of CureDuchenne. 'We are excited by the potential of this approach and look forward to Precision educating the DMD community about it at our upcoming FUTURES National Conference on May 24.' CureDuchenne is a nonprofit organization recognized as the global leader in research, patient care and innovation for improving and extending the lives of those with Duchenne muscular dystrophy. Precision is working diligently and targeting to file an IND and/or CTA in 2025 with clinical data anticipated in 2026. The Company believes that its current cash runway will be sufficient to progress both PBGENE-HBV, its current Phase 1 clinical program, and PBGENE-DMD through Phase 1 clinical readouts. In order to accelerate development of PBGENE-DMD and maintain operational capability to pursue PBGENE-HBV and PBGENE-DMD through Phase 1 clinical results, Precision plans to pause development of PBGENE-3243, its potential treatment for m.3243-associated mitochondrial disease, and will stage future development alone or with partners following completion of the Phase 1 ELIMINATE-B trial and after the PBGENE-DMD program enters the clinic. Precision has completed pre-IND discussions with regulators for PBGENE-3243 and the final clinical candidate is ready to commence toxicology studies. 'We remain excited about the potential for PBGENE-3243 to help people living with m.3243 mitochondrial diseases and remain committed to those afflicted with m.3243 associated mitochondrial disease in the future, alone or through partnerships,' added Mr. Amoroso. Conference Call Information Precision BioSciences will host a conference call on Thursday, May 15 at 8:00 am ET. To access the live conference call, participants may register here. The live audio webcast of the call will be available in the Investors section under Events & Presentations at An archived replay of the webcast will be available for approximately 30 days following the event. PBGENE-DMD Presentation Details: Title: ARCUS-Mediated Gene Editing Excision of Exons 45-55 of the Human Dystrophin Gene using PBGENE-DMD Leads to Functional Dystrophin Protein and Durable Restoration of Skeletal Muscle-Function In Vivo for the Treatment of Duchenne Muscular Dystrophy Session: Poster Reception Date and Time: Location: Poster Hall I2 About Precision BioSciences, Inc. Precision BioSciences, Inc. is a clinical stage gene editing company dedicated to improving life (DTIL) with its novel and proprietary ARCUS® genome editing platform that differs from other technologies in the way it cuts, its smaller size, and its simpler structure. Precision's two lead programs, PBGENE-HBV, for chronic Hepatitis B, and PBGENE-DMD, for Duchenne Muscular Dystrophy are focused on areas with large patient populations with high unmet need. Using ARCUS, the Company's pipeline prioritizes in vivo gene editing candidates designed to deliver lasting cures for the broadest range of genetic and infectious diseases where no adequate treatments exist. For more information about Precision BioSciences, please visit Forward-Looking Statements This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. All statements contained in this press release that do not relate to matters of historical fact should be considered forward-looking statements, including, without limitation, statements regarding the clinical development and expected safety, efficacy and benefit of our and our partners' and licensees' product candidates and gene editing approaches including editing efficiency, and the suitability of ARCUS nucleases for gene insertion, gene elimination and gene excision and differentiation from other gene editing approaches; the ability, aim, or therapeutic potential of PBGENE-DMD to transform the treatment paradigm and deliver durable functional improvement, restore the body's natural production of a functional dystrophin protein that more closely resembles normal dystrophin, provide a one-time, durable intervention that could allow for lifelong benefits in muscle retention and function, or for significant functional dystrophin protein production across cardiac and skeletal muscles at levels expected to provide therapeutic benefit; demonstrating breadth and therapeutic potential of ARCUS in vivo gene editing pipeline to drive near-term and long-term value and commercial opportunity; the expected timing of regulatory processes and clinical operations (including IND and/or CTA filings, studies, enrollment and clinical data for PBGENE-DMD and PBGENE-HBV); the ability of PBGENE-DMD to edit muscle satellite stem cells suggesting a potential for long-term durability; the translation of results in preclinical studies of ARCUS nucleases to clinical studies in humans; expectations about our and our partners' operational initiatives, strategies, and further development of our programs; the sufficiency of our cash runway to progress both PBGENE-HBV and PBGENE-DMD through Phase 1 clinical readouts; expectations about achievement of key milestones and receipt of any milestone, royalty, or other payments; expectations regarding our liquidity and capital resources; expectations to continue development and timing of PBGENE-3243; and anticipated timing of clinical data. In some cases, you can identify forward-looking statements by terms such as 'aim,' 'anticipate,' 'appear,' 'approach,' 'believe,' 'contemplate,' 'could,' 'designed,' 'estimate,' 'expect,' 'goal,' 'intend,' 'look,' 'may,' 'mission,' 'plan,' 'possible,' 'potential,' 'predict,' 'project,' 'pursue,' 'should,' 'strive,' 'suggest,' 'target,' 'will,' 'would,' or the negative thereof and similar words and expressions. Forward-looking statements are based on management's current expectations, beliefs and assumptions and on information currently available to us. These statements are neither promises nor guarantees, and involve a number of known and unknown risks, uncertainties and assumptions, and actual results may differ materially from those expressed or implied in the forward-looking statements due to various important factors, including, but not limited to, our ability to become profitable; our ability to procure sufficient funding to advance our programs; risks associated with our capital requirements, anticipated cash runway, requirements under our current debt instruments and effects of restrictions thereunder, including our ability to raise additional capital due to market conditions and/or our market capitalization; our operating expenses and our ability to predict what those expenses will be; our limited operating history; the progression and success of our programs and product candidates in which we expend our resources; our limited ability or inability to assess the safety and efficacy of our product candidates; the risk that other genome-editing technologies may provide significant advantages over our ARCUS technology; our dependence on our ARCUS technology; the initiation, cost, timing, progress, achievement of milestones and results of research and development activities and preclinical and clinical studies, including clinical trial and investigational new drug applications; public perception about genome editing technology and its applications; competition in the genome editing, biopharmaceutical, and biotechnology fields; our or our collaborators' or other licensees' ability to identify, develop and commercialize product candidates; pending and potential product liability lawsuits and penalties against us or our collaborators or other licensees related to our technology and our product candidates; the U.S. and foreign regulatory landscape applicable to our and our collaborators' or other licensees' development of product candidates; our or our collaborators' or other licensees' ability to advance product candidates into, and successfully design, implement and complete, clinical trials; potential manufacturing problems associated with the development or commercialization of any of our product candidates; delays or difficulties in our and our collaborators' and other licensees' ability to enroll patients; changes in interim 'top-line' and initial data that we announce or publish; if our product candidates do not work as intended or cause undesirable side effects; risks associated with applicable healthcare, data protection, privacy and security regulations and our compliance therewith; our or our licensees' ability to obtain orphan drug designation or fast track designation for our product candidates or to realize the expected benefits of these designations; our or our collaborators' or other licensees' ability to obtain and maintain regulatory approval of our product candidates, and any related restrictions, limitations and/or warnings in the label of an approved product candidate; the rate and degree of market acceptance of any of our product candidates; our ability to effectively manage the growth of our operations; our ability to attract, retain, and motivate executives and personnel; effects of system failures and security breaches; insurance expenses and exposure to uninsured liabilities; effects of tax rules; effects of any pandemic, epidemic, or outbreak of an infectious disease; the success of our existing collaboration and other license agreements, and our ability to enter into new collaboration arrangements; our current and future relationships with and reliance on third parties including suppliers and manufacturers; our ability to obtain and maintain intellectual property protection for our technology and any of our product candidates; potential litigation relating to infringement or misappropriation of intellectual property rights; effects of natural and manmade disasters, public health emergencies and other natural catastrophic events; effects of sustained inflation, supply chain disruptions and major central bank policy actions; market and economic conditions; risks related to ownership of our common stock, including fluctuations in our stock price; our ability to meet the requirements of and maintain listing of our common stock on Nasdaq or other public stock exchanges; and other important factors discussed under the caption 'Risk Factors' in our Annual Report on Form 10-K for the year ended December 31, 2024, as any such factors may be updated from time to time in our other filings with the SEC, which are accessible on the SEC's website at and the Investors page of our website under SEC Filings at All forward-looking statements speak only as of the date of this press release and, except as required by applicable law, we have no obligation to update or revise any forward-looking statements contained herein, whether as a result of any new information, future events, changed circumstances or otherwise.

Precision BioSciences to Report First Quarter 2025 Results on May 15, 2025
Precision BioSciences to Report First Quarter 2025 Results on May 15, 2025

Business Wire

time08-05-2025

  • Business
  • Business Wire

Precision BioSciences to Report First Quarter 2025 Results on May 15, 2025

DURHAM, N.C.--(BUSINESS WIRE)--Precision BioSciences, Inc. (Nasdaq: DTIL), a clinical stage gene editing company utilizing its novel proprietary ARCUS ® platform to develop in vivo gene editing therapies for diseases with high unmet need, today announced that it will publish financial results for the first quarter 2025 and provide a business update on May 15, 2025. About Precision BioSciences, Inc. Precision BioSciences, Inc. is a clinical stage gene editing company dedicated to improving life (DTIL) with its novel and proprietary ARCUS ® genome editing platform that differs from other technologies in the way it cuts, its smaller size, and its simpler structure. Key capabilities and differentiating characteristics may enable ARCUS nucleases to drive more intended, defined therapeutic outcomes. Using ARCUS, the Company's pipeline is comprised of in vivo gene editing candidates designed to deliver lasting cures for the broadest range of genetic and infectious diseases where no adequate treatments exist. For more information about Precision BioSciences, please visit The ARCUS ® platform is being used to develop in vivo gene editing therapies for sophisticated gene edits, including gene insertion (inserting DNA into gene to cause expression/add function), elimination (removing a genome e.g. viral DNA or mutant mitochondrial DNA), and excision (removing a large portion of a defective gene by delivering two ARCUS nucleases in a single AAV).

Precision BioSciences Announces Presentation of Initial Safety Data from the Phase 1 ELIMINATE-B Trial Evaluating PBGENE-HBV at the 2025 European Association for the Study of the Liver Congress (EASL)
Precision BioSciences Announces Presentation of Initial Safety Data from the Phase 1 ELIMINATE-B Trial Evaluating PBGENE-HBV at the 2025 European Association for the Study of the Liver Congress (EASL)

Business Wire

time07-05-2025

  • Health
  • Business Wire

Precision BioSciences Announces Presentation of Initial Safety Data from the Phase 1 ELIMINATE-B Trial Evaluating PBGENE-HBV at the 2025 European Association for the Study of the Liver Congress (EASL)

BUSINESS WIRE)--Precision BioSciences, Inc. (Nasdaq: DTIL), a clinical stage gene editing company utilizing its novel proprietary ARCUS® platform to develop in vivo gene editing therapies for diseases with high unmet need, today announced that it will present initial safety data from the Phase 1 ELIMINATE-B trial evaluating PBGENE-HBV program for the treatment of chronic hepatitis B during a late breaking poster presentation at the European Association for the Study of the Liver (EASL) Congress being held May 7-10, 2025, in Amsterdam, Netherlands. 'We are pleased to share initial safety data from the ELIMINATE-B trial for PBGENE-HBV at this year's EASL congress. Since initiating the trial, we have made rapid progress activating global clinical sites and enrolling patients as we seek to validate our ARCUS-elimination approach in the clinic for chronic hepatitis B,' said Michael Amoroso, President and Chief Executive Officer at Precision BioSciences. 'This initial safety dataset across the first three patients receiving repeat administrations (two doses) as planned in the ELIMINATE-B protocol provide early validation of the translation of preclinical pharmacokinetic and safety data in patients. We are encouraged by the signals we are seeing in the study thus far and believe these data continue to support multiple dose administrations of PBGENE-HBV as well as ongoing dose escalation. This new data builds on the update shared in February and we look forward to continuing to enroll patients in the ELIMINATE-B trial and sharing further updates, including antiviral efficacy data upon completion of each cohort, three dose administrations at each dose level, throughout 2025.' Presentation Details: Title: Initial safety data from ELIMINATE-B, the first clinical trial of a gene editing treatment for chronic hepatitis B Session: Late Breaker Posters Poster Number: LBP-038 Date: Late breaker posters will be displayed from May 7-10 PBGENE-HBV is Precision's first-in-class gene editing therapy for chronic hepatitis B being evaluated in the global Phase 1 ELIMINATE-B study. ELIMINATE-B participants are Hepatitis B e-antigen negative with chronic hepatitis B and virologically suppressed on nucleos(t)ide analog (NA) treatment. Initial study participants were enrolled at a study site in Moldova. The first cohort comprised of three participants, all of whom were male with a mean age of 41 years and range of 5.9-7.2 years on NA treatment. The participants varied in their duration of infection, from 7.5 to 39 years, and their baseline HBsAg levels, which were between 561 and 11,813 IU/mL. The three participants received dose level 1 (0.2 mg/kg) and have received 2 of the 3 dose administrations. PBGENE-HBV was well-tolerated upon repeat dosing, with no dose limiting toxicities, serious adverse events, or clinically significant laboratory abnormalities. All adverse events were mild (grade 1 or 2) and transient in nature, and there were no cumulative adverse events with a second dose administration. Initial safety data from the first cohort indicates the translation of PBGENE-HBV nonclinical pharmacokinetic and safety data from non-human primates into the clinic and supports pre-planned repeat dosing as well as dose escalation of PBGENE-HBV with the goal of moving appropriate dose and schedule into Phase 2 expansion. In April 2025, the FDA granted Fast Track designation to PBGENE-HBV for chronic hepatitis B. Precision is approved for clinical investigation of its Phase 1 ELIMINATE-B trial in the United States, Moldova, Hong Kong, New Zealand, and the United Kingdom. The Company plans to continue sharing updates on full dose cohorts at all dose levels throughout 2025. About Hepatitis B Hepatitis B is a leading cause of morbidity in the US and death globally, with no curative options currently available for patients. Despite the availability of approved antiviral therapies, an estimated 300 million people globally and up to 2.4 million people in the US are estimated to have chronic hepatitis B infection. An estimated 15% to 40% of patients with HBV infections may develop complications, such as cirrhosis, liver failure, or liver cancer (hepatocellular carcinoma), which account for the majority of HBV-related deaths. Chronic hepatitis B infection is primarily driven by persistence of HBV cccDNA and integration of HBV DNA into the human genome in liver cells, the primary source of hepatitis B surface antigen (HBsAg) in late-stage disease. Current treatments for patients with HBV infection include agents that result in long-term viral suppression as indicated by reduction of circulating HBV DNA, but these therapies do not eradicate HBV cccDNA, rarely lead to functional cure, and require lifelong administration. About Precision BioSciences, Inc. Precision BioSciences, Inc. is a clinical stage gene editing company dedicated to improving life (DTIL) with its novel and proprietary ARCUS® genome editing platform that differs from other technologies in the way it cuts, its smaller size, and its simpler structure. Key capabilities and differentiating characteristics may enable ARCUS nucleases to drive more intended, defined therapeutic outcomes. Using ARCUS, the Company's pipeline is comprised of in vivo gene editing candidates designed to deliver lasting cures for the broadest range of genetic and infectious diseases where no adequate treatments exist. For more information about Precision BioSciences, please visit The ARCUS® platform is being used to develop in vivo gene editing therapies for sophisticated gene edits, including gene insertion (inserting DNA into gene to cause expression/add function), elimination (removing a genome e.g. viral DNA or mutant mitochondrial DNA), and excision (removing a large portion of a defective gene by delivering two ARCUS nucleases in a single AAV). Forward Looking Statements This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. All statements contained in this press release that do not relate to matters of historical fact should be considered forward-looking statements, including, without limitation, statements regarding the clinical development and expected safety, efficacy and benefit of PBGENE-HBV and our gene editing approaches, and the suitability of ARCUS nucleases for sophisticated gene edits and diseases with high unmet need; the expected timing of regulatory processes and clinical operations, including filings, studies, enrollment and clinical data for PBGENE-HBV; the encouraging early safety signals observed in the ELIMINATE-B clinical trial that support ongoing dose escalation and multiple dose administrations of PBGENE-HBV; plans to provide ongoing updates on the full low-dose cohort for the PBGENE-HBV study, including multiple dose administrations, and data from higher dose levels throughout 2025; and anticipated timing of clinical data . In some cases, you can identify forward-looking statements by terms such as 'aim,' 'anticipate,' 'appear,' 'approach,' 'believe,' 'contemplate,' 'could,' 'designed,' 'encouraged', 'estimate,' 'expect,' 'goal,' 'intend,' 'look,' 'may,' 'mission,' 'plan,' 'possible,' 'potential,' 'predict,' 'project,' 'pursue,' 'should,' 'strive,' 'suggest,' 'target,' 'will,' 'would,' or the negative thereof and similar words and expressions. Forward-looking statements are based on management's current expectations, beliefs and assumptions and on information currently available to us. These statements are neither promises nor guarantees, and involve a number of known and unknown risks, uncertainties and assumptions, and actual results may differ materially from those expressed or implied in the forward-looking statements due to various important factors, including, but not limited to, our ability to become profitable; our ability to procure sufficient funding to advance our programs; risks associated with our capital requirements, anticipated cash runway, requirements under our current debt instruments and effects of restrictions thereunder, including our ability to raise additional capital due to market conditions and/or our market capitalization; our operating expenses and our ability to predict what those expenses will be; our limited operating history; the progression and success of our programs and product candidates in which we expend our resources; our limited ability or inability to assess the safety and efficacy of our product candidates; the risk that other genome-editing technologies may provide significant advantages over our ARCUS technology; our dependence on our ARCUS technology; the initiation, cost, timing, progress, achievement of milestones and results of research and development activities and preclinical and clinical studies, including clinical trial and investigational new drug applications; public perception about genome editing technology and its applications; competition in the genome editing, biopharmaceutical, and biotechnology fields; our or our collaborators' or other licensees' ability to identify, develop and commercialize product candidates; pending and potential product liability lawsuits and penalties against us or our collaborators or other licensees related to our technology and our product candidates; the U.S. and foreign regulatory landscape applicable to our and our collaborators' or other licensees' development of product candidates; our or our collaborators' or other licensees' ability to advance product candidates into, and successfully design, implement and complete, clinical trials; potential manufacturing problems associated with the development or commercialization of any of our product candidates; delays or difficulties in our and our collaborators' and other licensees' ability to enroll patients; changes in interim 'top-line' and initial data that we announce or publish; if our product candidates do not work as intended or cause undesirable side effects; risks associated with applicable healthcare, data protection, privacy and security regulations and our compliance therewith; our or our licensees' ability to obtain orphan drug designation or fast track designation for our product candidates or to realize the expected benefits of these designations; our or our collaborators' or other licensees' ability to obtain and maintain regulatory approval of our product candidates, and any related restrictions, limitations and/or warnings in the label of an approved product candidate; the rate and degree of market acceptance of any of our product candidates; our ability to effectively manage the growth of our operations; our ability to attract, retain, and motivate executives and personnel; effects of system failures and security breaches; insurance expenses and exposure to uninsured liabilities; effects of tax rules; effects of any pandemic, epidemic, or outbreak of an infectious disease; the success of our existing collaboration and other license agreements, and our ability to enter into new collaboration arrangements; our current and future relationships with and reliance on third parties including suppliers and manufacturers; our ability to obtain and maintain intellectual property protection for our technology and any of our product candidates; potential litigation relating to infringement or misappropriation of intellectual property rights; effects of natural and manmade disasters, public health emergencies and other natural catastrophic events; effects of sustained inflation, supply chain disruptions and major central bank policy actions; market and economic conditions; risks related to ownership of our common stock, including fluctuations in our stock price; our ability to meet the requirements of and maintain listing of our common stock on Nasdaq or other public stock exchanges; and other important factors discussed under the caption 'Risk Factors' in our Annual Report on Form 10-K for the year ended December 31, 2024, as any such factors may be updated from time to time in our other filings with the SEC, which are accessible on the SEC's website at and the Investors page of our website under SEC Filings at All forward-looking statements speak only as of the date of this press release and, except as required by applicable law, we have no obligation to update or revise any forward-looking statements contained herein, whether as a result of any new information, future events, changed circumstances or otherwise.

Precision BioSciences to Participate in the 24th Annual Needham Virtual Healthcare Conference
Precision BioSciences to Participate in the 24th Annual Needham Virtual Healthcare Conference

Yahoo

time01-04-2025

  • Business
  • Yahoo

Precision BioSciences to Participate in the 24th Annual Needham Virtual Healthcare Conference

DURHAM, N.C., April 01, 2025--(BUSINESS WIRE)--Precision BioSciences, Inc. (Nasdaq: DTIL), a clinical stage gene editing company utilizing its novel proprietary ARCUS® platform to develop in vivo gene editing therapies, including gene elimination, gene insertion, and gene excision programs, today announced that management will present at the 24th Annual Needham Virtual Healthcare Conference taking place on April 7, 2025. Presentation Details: Date: Monday, April 7, 2025Time: 3:00 PM ET in Track 2Format: PresentationWebcast Registration: Link A live webcast will also be accessible on Precision's website in the Investors section under Events & Presentations at An archived replay of the webcasts will be available for approximately 30 days following the event. About Precision BioSciences, Inc. Precision BioSciences, Inc. is a clinical stage gene editing company dedicated to improving life (DTIL) with its novel and proprietary ARCUS® genome editing platform that differs from other technologies in the way it cuts, its smaller size, and its simpler structure. Key capabilities and differentiating characteristics may enable ARCUS nucleases to drive more intended, defined therapeutic outcomes. Using ARCUS, the Company's pipeline is comprised of in vivo gene editing candidates designed to deliver lasting cures for the broadest range of genetic and infectious diseases where no adequate treatments exist. For more information about Precision BioSciences, please visit The ARCUS® platform is being used to develop in vivo gene editing therapies for sophisticated gene edits, including gene insertion (inserting DNA into gene to cause expression/add function), elimination (removing a genome e.g. viral DNA or mutant mitochondrial DNA), and excision (removing a large portion of a defective gene by delivering two ARCUS nucleases in a single AAV such as in the DMD program). View source version on Contacts Investor and Media Contact: Naresh TannaVice President of Investor Sign in to access your portfolio

Precision BioSciences to Report Fourth Quarter and Fiscal Year 2024 Results on March 26, 2025
Precision BioSciences to Report Fourth Quarter and Fiscal Year 2024 Results on March 26, 2025

Yahoo

time21-03-2025

  • Business
  • Yahoo

Precision BioSciences to Report Fourth Quarter and Fiscal Year 2024 Results on March 26, 2025

DURHAM, N.C., March 21, 2025--(BUSINESS WIRE)--Precision BioSciences, Inc. (Nasdaq: DTIL), a clinical stage gene editing company utilizing its novel proprietary ARCUS® platform to develop in vivo gene editing therapies, including gene elimination, gene insertion, and gene excision programs, today announced that it will publish financial results for the fourth quarter and fiscal year 2024 and provide a business update on March 26, 2025. About Precision BioSciences, Inc. Precision BioSciences, Inc. is a clinical stage gene editing company dedicated to improving life (DTIL) with its novel and proprietary ARCUS® genome editing platform that differs from other technologies in the way it cuts, its smaller size, and its simpler structure. Key capabilities and differentiating characteristics may enable ARCUS nucleases to drive more intended, defined therapeutic outcomes. Using ARCUS, the Company's pipeline is comprised of in vivo gene editing candidates designed to deliver lasting cures for the broadest range of genetic and infectious diseases where no adequate treatments exist. For more information about Precision BioSciences, please visit The ARCUS® platform is being used to develop in vivo gene editing therapies for sophisticated gene edits, including gene insertion (inserting DNA into gene to cause expression/add function), elimination (removing a genome e.g. viral DNA or mutant mitochondrial DNA), and excision (removing a large portion of a defective gene by delivering two ARCUS nucleases in a single AAV). View source version on Contacts Investor and Media Contact: Naresh TannaVice President of Investor

DOWNLOAD THE APP

Get Started Now: Download the App

Ready to dive into the world of global news and events? Download our app today from your preferred app store and start exploring.
app-storeplay-store