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Defence Therapeutics Inc.
ISIN: CA24463V1013
WKN: A3CN14
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Defence Therapeutics Inc. · ISIN: CA24463V1013 · Newswire (Company)
Country: Kanada · Primary market: Canada · EQS NID: 1952507
24 July 2024 08:00AM

DEFENCE THERAPEUTICS GRANTED CNRI-H FROM THE CANADIAN NUCLEAR LABORATORIES TO ACCELERATE THE DEVELOPMENT OF ITS RADIO-IMMUNO-CONJUGATES PROGRAM


EQS-News: Defence Therapeutics Inc. / Key word(s): Miscellaneous
DEFENCE THERAPEUTICS GRANTED CNRI-H FROM THE CANADIAN NUCLEAR LABORATORIES TO ACCELERATE THE DEVELOPMENT OF ITS RADIO-IMMUNO-CONJUGATES PROGRAM

24.07.2024 / 08:00 CET/CEST
The issuer is solely responsible for the content of this announcement.


 

_________________________________________________________________

CSE: DTC  FSE: DTC  USOTC: DTCFF  PRESS RELEASE

 

DEFENCE THERAPEUTICS GRANTED CNRI-H FROM THE CANADIAN NUCLEAR LABORATORIES TO ACCELERATE THE DEVELOPMENT OF ITS RADIO-IMMUNO-CONJUGATES PROGRAM

 

Vancouver, BC, Canada, July 24th, 2024 - Defence Therapeutics Inc. (“Defence” or the “Company”), (CSE: DTC, OTCQB: DTCFF, FSE: DTC), a Canadian biopharmaceutical company developing novel immune-oncology vaccines and drug delivery technologies, is pleased to announce that its Canadian Nuclear Research Initiative Health (“CNRI-H”) Program application was retained and approved by the Canadian Nuclear Laboratories (“CNL”) to accelerate Defence’s radio-immuno-conjugates project.

 

Defence’s CNRI-H project will focus on the synthesis and evaluation of novel constructs, variations of 111In-AccuTOX®-Trastuzumab. The objective is to demonstrate that AccuTOX® moiety is an essential modification to conventional 111In-Trastuzumab constructs to evade an endosome entrapment and ensure nuclear localization, where 111In will emit Auger Electrons (“AEs”) to kill cancer cells, and providing a synergistic effect by unleashing AccuTOX® immune-boosting power. It is expected that these constructs will be lethal to HER2-positive cancer cells specifically and will produce high potency.

 

Selected AccuTOX® constructs, based on stability, solubility, and biochemical properties, will be conjugated to the trastuzumab antibody, followed by radiolabeled with 111In, and then characterized, in vitro and in vivo, for its efficacy in killing cancer. The main goal is to identify the biologically active 111In-AccuTOX®-Trastuzumab molecule that will be more potent to treat solid tumor resistant to current HER2-targeting therapy such as therapeutic antibodies (e.g., trastuzumab alone) and antibody-drug conjugate (e.g., Kadcyla®).

  In summary, the aim of this CNRI-H collaborative project is:

1. To synthesize AccuTOX®-Trastuzumab antibody conjugates, radiolabel with 111In, and characterize, including structure and cellular analysis (e.g. identification, drug-antibody ratio, specific activity), stability, and cytotoxic effects, in vitro.

2. To perform animal studies in rodents, in vivo, namely biodistribution, pharmacokinetic profile, and therapeutic potency, using selected 111In-AccuTOX®-Trastuzumab constructs.

 

 “We are proud to have this opportunity to collaborate with the Canadian Nuclear Laboratories and to advancing Defence’s radio-immuno-conjugates program for the benefit of the cancer’s patients. The CNL scientific team dedicated to our project is very strong and will definitely accelerate and reinforce Defence’s strength in this renowned and fast-growing radiopharmaceuticals field,” said Sebastien Plouffe, Chief Executive Officer of Defence Therapeutics.     


CNRI-H is a program developed by CNL to further the realization of its mission of contributing to the health of Canadians. Through CNRI-H, CNL provides financial support along with its expertise, experience, capabilities and makes this available and accessible to the healthcare community to advance new life saving radiopharmaceutical solutions. CNRI-H is a turnkey solution that integrates both funding and project execution in one award. The goal of the program is to accelerate the optimization of therapeutic isotopes production and the clinical translation of targeted radiopharmaceuticals for the benefit of Canadians whilst increasing the safety and efficacy of therapies that involve radiopharmaceuticals.

 

According to Allied Market Research, the global radiopharmaceuticals market was valued at $7.9 billion in 2023, and is projected to reach $21.8 billion by 2033, growing at a CAGR of 10.6% from 2024 to 2033. And according to Straits Research, the global radioligand therapy market size was valued at USD 12.55 billion in 2023, and it is anticipated to reach USD 21.55 billion by 2032 with a CAGR of 4.62%. The use of radioligands to treat specific cancers is a novel method. It delivers radiation to cancer cells with pinpoint accuracy and minimal side effects on healthy cells, resulting in higher treatment efficacy.

https://www.alliedmarketresearch.com/radiopharmaceuticals-market-A14458

https://straitsresearch.com/report/radioligand-therapy-market

 

About Defence:

Defence Therapeutics is a publicly-traded clinical-stage biotechnology company working on engineering the next generation vaccines and ADC products using its proprietary platform. The core of Defence Therapeutics platform is the ACCUM® technology, which enables precision delivery of vaccine antigens or ADCs inside target cells and favoring their processing and activities. As a result, increased efficacy and potency can be reached against catastrophic illness such as cancer and infectious diseases.

 

For further information:

Sebastien Plouffe, President, CEO and Director

P: (514) 947-2272

Splouffe@defencetherapeutics.com

www.defencetherapeutics.com

 

Cautionary Statement Regarding “Forward-Looking” Information

 

This release includes certain statements that may be deemed "forward-looking statements". All statements in this release, other than statements of historical facts, that address events or developments that the Company expects to occur, are forward-looking statements. Forward-looking statements are statements that are not historical facts and are generally, but not always, identified by the words "expects", "plans", "anticipates", "believes", "intends", "estimates", "projects", "potential" and similar expressions, or that events or conditions "will", "would", "may", "could" or "should" occur. Although the Company believes the expectations expressed in such forward-looking statements are based on reasonable assumptions, such statements are not guarantees of future performance and actual results may differ materially from those in the forward-looking statements. Factors that could cause the actual results to differ materially from those in forward-looking statements include regulatory actions, market prices, and continued availability of capital and financing, and general economic, market or business conditions. Investors are cautioned that any such statements are not guarantees of future performance and actual results or developments may differ materially from those projected in the forward-looking statements. Forward-looking statements are based on the beliefs, estimates and opinions of the Company's management on the date the statements are made. Except as required by applicable securities laws, the Company undertakes no obligation to update these forward-looking statements in the event that management's beliefs, estimates or opinions, or other factors, should change.

 

Neither the CSE nor its market regulator, as that term is defined in the policies of the CSE, accepts responsibility for the adequacy or accuracy of this release.

 

 



24.07.2024 CET/CEST Dissemination of a Corporate News, transmitted by EQS News - a service of EQS Group AG.
The issuer is solely responsible for the content of this announcement.

The EQS Distribution Services include Regulatory Announcements, Financial/Corporate News and Press Releases.
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Language: English
Company: Defence Therapeutics Inc.
1680 - 200 Burrard St
V6C3L6 Vancouver
Canada
E-mail: info@defencetherapeutics.com
Internet: https://defencetherapeutics.com
ISIN: CA24463V1013
WKN: A3CN14
Listed: Regulated Unofficial Market in Frankfurt, Stuttgart; Toronto
EQS News ID: 1952507

 
End of News EQS News Service

1952507  24.07.2024 CET/CEST

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