Viva Biotech Announces Its 2024 Interim Results: Significant Improvement in Net Profit Growth and Ongoing Optimization of Emerging Technology Platforms
Results Highlights for Interim Results ended
Revenue reached
Gross profit amounted to
Net profit grew by 956.0 YoY to
Adjusted non-IFRS net profit reached
In addition, since the Group completed the introduction of strategic investors such as
CRO Growth to Gradually Recover in the Future Despite Fluctuations in the Short to Medium Term
In the first half of 2024, the Company's revenue from CRO business amounted to
As at
The cumulative number of CRO clients served had increased to 1,465, including the global top 10 pharmaceutical companies (by reported total revenue for the first half of 2024), and revenue from the top 10 customers accounted for 25.7% of our total revenue. Clients of CRO business are geographically diverse, overseas clients contributed approximately 88.8% of our total revenue, while those from the Chinese Mainland contributed approximately 11.2% of our total revenue.
During the Reporting Period, our utilization of synchrotron radiation source reached 873 hours. The Company established long-term cooperation with 13 synchrotron radiation source centers around the world, which are distributed in ten countries/regions, i.e.,
Continuing to Expand CDMO Capacity and Increase CMC Projects
The Group is committed to building a one-stop service platform for global innovative drugs from research and development to production, and improved the production layout through acquisition of the entire equity interests in Langhua Pharmaceutical. In particular, we continued to expand CDMO capacity to prepare for commercial production of new molecules in the future. In addition, constant efforts were made to optimize and channel resources towards the CMC business during the Reporting Period.
In the first half of 2024, Langhua Pharmaceutical's revenue amounted to
As at
The number of CMC projects continued to grow, but the new business is still in the profit ramp-up phase. Since its establishment, CMC has completed and is currently progressing with a total of 218 new drug projects. During the Reporting Period, CMC generated revenue of nearly
Successful Exits of Certain Incubation Portfolio Companies Continued to Realize Investment Returns, Accretive to the Group's Profits
During the Reporting Period, the Company achieved partial investment exits from a number of portfolio companies (Focus-X, Saverna, Dogma and Riparian), realizing corresponding investment returns and generating total proceeds of nearly
In the first half of 2024, five of our portfolio companies completed or were close to completing a new round of financing, raising approximately
As at the end of the Reporting Period, Viva has strategically invested in a series of high-quality assets, including portfolio companies such as Dogma, Arthrosi, Basking, Triumvira, Deka, Mediar, Cybrexa, VivaVision, Haya and
T echnological highlights and R&D Breakthrough s
Riding on the rapid development of artificial intelligence (AI) technology recently, Viva has further introduced AI technology on the basis of structure-based drug discovery (SBDD) technology, focusing on new targets, novel mechanisms of action (MOA) and new modality to develop a unique AI-enabled SBDD one-stop R&D service platform for innovative novel drugs.
Firstly, from the perspective of current research on new targets, new targets are the most important source of original innovation. During the Reporting Period, our R&D has accumulated over 2,065 independent drug targets, 79 of which were newly delivered in the first half of 2024. So far, the Company has delivered to clients a series of target protein structures that have not been reported in the Protein Structure Database (PDB), and clarified the structural principles of these proteins in functioning, laying a solid foundation for subsequent drug molecular design. For example, in the cancer therapeutic area, industry players are still searching for new targets as breakthroughs, in addition to traditional target proteins such as kinases, proto-oncogenes/tumor suppressor genes, immune checkpoints, etc. In the fields of new tumor target proteins related to cell division control and mRNA stability, we successfully analyzed many previously unreported protein structures and complex structures of proteins and drug candidate molecules, and explained structural details of the interaction between target proteins and compounds, which provide clear guidance for designing more effective compounds and lead to the emergence of a range of new drug candidate molecules. Besides, the Company contributed a number of new structures in the molecular glue protein complex structural field, which further provide effective clues for rational design and improvement of molecular glue drugs.
Secondly, regarding novel MOA research progress, our CRO business has successfully established a one-stop platform for novel MOA-based drug discovery and research, and set up relevant technical platforms covering protein production, preparation and structure research, Cryo-EM technology, membrane protein research technology, drug screening technology, bioassay and so on. Moreover, based on the validation and tests of hit compounds, the Company can rely on its strong pharmaceutical chemistry team and computing team to help clients further optimize the structure of hit compounds until they reach the preclinical candidate (PCC) milestone. Meanwhile, the Company's pharmacology and pharmacokinetics platform can also provide clients with systematic compound druggability evaluation services for the development of novel MOA-based compounds.
Thirdly, regarding current progress of new modality related technology platforms, during the Reporting Period,
Besides, regarding construction progress in the peptide technology platform, the Company has achieved the capability to synthesize a wide range of peptides, particularly the challenging and technologically advanced peptide chains. Extensive research and technical expertise have been accumulated in peptide coupling, peptide drug conjugates (PDC), radionuclide drug conjugates (RDC), monocyclic peptides, stapled peptides and other complex multi-cyclic peptides (involving peptide folding and selective cyclization), biotin-labeled peptides and fluorescent-labeled peptides. In terms of peptide coupling, our peptide platform works with antibody department to expand the peptide platform to the field of peptide antibody coupled APC, and has delivered relevant products. In the future, Viva's peptide technology platform envisions a collaborative approach with Viva's phage display platform and V-DEL platform, aiming to provide customers with one-stop comprehensive services encompassing the entire process from the discovery and validation of hit peptide chains to the identification and optimization of lead compounds, and ultimately the determination of candidate compounds.
In addition, Viva also provides services relevant to PROTAC/molecular glue drug R&D, and revenue generated in this regard accounted for almost 10.87% of total revenue from the CRO business. Our services primarily include studies on protein preparation and structure, screening of PROTAC/molecular glue, kinetics, drug metabolism, pharmaceutical chemistry, Bioassay, computer-aided drug discovery (CADD)/ artificial intelligence in drug discovery (AIDD), etc. As at
Last but not least, regarding our AI-enabled SBDD one-stop R&D service platform for innovative novel drugs, our CADD and AIDD platforms employ physical chemistry models and artificial intelligence algorithms to advance drug R&D projects, based on deep understanding of structures and mechanisms of action to truly practice computation-driven drug R&D. Our computing platform has developed a series of project-specific advanced algorithms to solve practical problems in drug design such as covalent and non-covalent free energy perturbations (FEP), resulting in higher computational accuracy and larger adjustable parameter range. Addressing gaps in the traditional computational chemistry methodology, the computing platform introduced generative artificial intelligence algorithms, which break through the limitation of chemical space with ab initio generation, enabling drug design to achieve the breakthrough from zero to one with the aid of computation. Furthermore, ADME/PK prediction models were developed under the platform, enabling comprehensive coverage of various drug R&D stages and systematic integration of computing tools. The methods developed under the computational chemistry and artificial intelligence platform have been applied in the R&D of various drug modalities, such as small molecules, antibodies, peptides and RNA-targeting small molecules. In the process of algorithm development, our platforms maintain the integration of dry-lab and wet-lab and the computational results are verified through experimental validation, during which computational models are iteratively optimized to ultimately achieve breakthroughs. Generally, Viva's CADD and AIDD platforms have the capability to develop proprietary algorithms and enhance platforms and the experience in exploring various drug modalities, and fully leverage our advantages in SBDD, which can comprehensively empower various early drug R&D aspects with the computing power supported by the
S taff and Facilities
As at
- The Group's new headquarters in Zhoupu,
Shanghai with a total area of approximately 40,000 square meters had been put into full operation. - The incubation center located in
Faladi Road ,Shanghai has an actual usable area of approximately 7,576 square meters, including 5,552 square meters of laboratory area. - The park in
Chengdu has a GFA of approximately 64,564 square meters, of which 12,210 square meters of properties had been put into use as atJune 30, 2024 , including 10,800 square meters of laboratory area. - A park in
Suzhou with a total GFA of approximately 7,545 square meters, including nearly 5,305 square meters of laboratory area. - A park in Jiaxing with a GFA of approximately 6,362 square meters, including nearly 5,335 square meters of laboratory area.
- Shanghai Supercomputing Center has been officially put into operation. At present, it can support CADD computation, AIDD related computation, and crystal structure and Cryo-EM (Micro-ED) computation.
- The factory of Langhua Pharmaceutical in Taizhou,
Zhejiang has a GFA of approximately 35,168 square meters, including the Taizhou R&D center with an area of approximately 2,500 square meters. The R&D center of Ningbo Nuobai has an area of approximately 1,300 square meters and the office building of Ningbo Nuobai has an area of approximately 1,500 square meters.
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Established in 2008,
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