Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020

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The Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020 report provides comprehensive understanding and unprecedented access to the preclinical stage partnering deals and agreements entered into by the worlds leading healthcare companies

Publication date
March 2020
Number of pages
1100+
Product type
Research report
Available formats
PDF document
Report edition
4
SKU
CP2057

The Global Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020 report provides a detailed understanding and analysis of how, why and what terms companies enter preclinical stage partnering deals. These deals tend to be multicomponent, starting with collaborative R&D, and commercialization of outcomes.

 

This report provides details of the latest preclinical agreements announced in the healthcare sector.

 

Understanding the flexibility of a prospective partner’s negotiated deals terms provides critical insight into the negotiation process in terms of what you can expect to achieve during the negotiation of terms. Whilst many smaller companies will be seeking details of the payments clauses, the devil is in the detail in terms of how payments are triggered – contract documents provide this insight where press releases and databases do not.

 

This report contains a comprehensive listing of over 1,400 preclinical stage partnering deals announced since 2014 including financial terms, where available, including links to online deal records of actual preclinical partnering deals as disclosed by the deal parties. In addition, where available, records include contract documents as submitted to the Securities Exchange Commission by companies and their partners.

 

Contract documents provide the answers to numerous questions about a prospective partner’s flexibility on a wide range of important issues, many of which will have a significant impact on each party’s ability to derive value from the deal.

 

The initial chapters of this report provide an orientation of preclinical stage deal making and business activities. Chapter 1 provides an introduction to the report, whilst chapter 2 provides an overview of why companies partner preclinical stage compounds/products.

 

Chapter 3 provides an overview of preclinical stage deals strategy and deal structure including numerous case studies. Chapter 4 provides an overview of the various payment strategies used in preclinical stage deals.

 

Chapter 5 provides a review of preclinical stage deal making since 2014. Deals activity is reviewed by year, stage of development at signing, therapeutic area, technology type, as well as most active dealmakers.

 

Chapter 6 provides a detailed analysis of preclinical stage payment terms including headline, upfront, milestone and royalty rates.

 

Chapter 7 provides a review of the leading preclinical stage deal by headline value. Each deal title links via Current Agreements deals and alliances database to an online version of the full deal record, and where available, the actual contract document, providing easy access to each deal record on demand. 

 

Chapter 8 provides a comprehensive listing of the top 25 most active preclinical stage dealmaker companies. Each deal title links via Current Agreements deals and alliances database to an online version of the full deal record, and where available, the actual contract document, providing easy access to each deal record on demand. 

 

Chapter 9 provides a comprehensive and detailed review of preclinical stage partnering deals signed and announced since 2014, where a contract document is available in the public domain.

 

Chapter 10 provides a comprehensive directory of preclinical stage partnering deals since 2014.

 

The report includes deals announced by hundreds of life science companies including big pharma such as Abbott, Abbvie, Actavis, Amgen, Astellas, AstraZeneca, Baxter, Bayer, Biogen Idec, BMS, Celgene, Eisai, Eli Lilly, Gilead, GSK, J&J, Kyowa Hakko, Merck, Mitsubishi, Mylan, Novartis, Pfizer, Roche, Sanofi, Shire, Takeda, Teva, and Valeant, amongst many others.

 

The report also includes numerous tables and figures that illustrate the trends and activities in preclinical stage partnering and deal making since 2014.

 

In addition, a comprehensive appendix of all preclinical deals since 2014 is provided organized by partnering company A-Z, deal type, therapy focus and technology type. Each deal title links via Weblink to an online version of the deal record and where available, the contract document, providing easy access to each contract document on demand.

 

In conclusion, this report provides everything a prospective dealmaker needs to know about partnering in the research, development and commercialization of preclinical stage products and compounds.

 

Key benefits

 

Global Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020 provides the reader with the following key benefits:

 

  • In-depth understanding of preclinical stage deal trends since 2014
  • Access to headline, upfront, milestone and royalty data
  • Analysis of the structure of preclinical stage agreements with numerous real life case studies
  • Insight into the terms included in a preclinical stage agreement, together with real world clause examples
  • Understand the key deal terms companies have agreed in previous deals           
  • Undertake due diligence to assess suitability of your proposed deal terms for partner companies

 

Report scope

 

Global Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020 is intended to provide the reader with an in-depth understanding and access to preclinical stage deal trends and structure of deals entered into by leading companies worldwide.

 

Global Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020 includes:

 

  • Trends in preclinical stage dealmaking in the biopharma industry since 2014
  • Analysis of preclinical stage deal structure
  • Access to headline, upfront, milestone and royalty data
  • Case studies of real-life preclinical stage deals
  • Access to over 1,400 preclinical stage deals
  • The leading preclinical stage deals by value since 2014
  • Most active preclinical stage dealmakers since 2014
  • The leading preclinical stage partnering resources

 

In Global Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020, the available contracts are listed by:

 

  • Company A-Z
  • Headline value
  • Stage of development at signing
  • Deal type
  • Specific therapy target

 

Each deal title links via Weblink to an online version of the deal record and where available, the contract document, providing easy access to each contract document on demand.

 

The Global Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020 report provides comprehensive access to available deals and contract documents for over 1,400 preclinical stage deals. Analyzing actual contract agreements allows assessment of the following:

 

  • What are the precise rights granted or optioned?
  • What is actually granted by the agreement to the partner company?
  • What exclusivity is granted?
  • What is the payment structure for the deal?
  • How aresalesand payments audited?
  • What is the deal term?
  • How are the key terms of the agreement defined?
  • How are IPRs handled and owned?
  • Who is responsible for commercialization?
  • Who is responsible for development, supply, and manufacture?
  • How is confidentiality and publication managed?
  • How are disputes to be resolved?
  • Under what conditions can the deal be terminated?
  • What happens when there is a change of ownership?
  • What sublicensing and subcontracting provisions have been agreed?
  • Which boilerplate clauses does the company insist upon?
  • Which boilerplate clauses appear to differ from partner to partner or deal type to deal type?
  • Which jurisdiction does the company insist upon for agreement law?

The Preclinical Stage Partnering Terms and Agreements in Pharma and Biotech 2014-2020 report provides the reader with the following key benefits:

 

  • In-depth understanding of preclinical stage deal trends since 2014
  • Access to headline, upfront, milestone and royalty data
  • Comprehensive access to over 1,400 preclinical stage deals together with contract documents if available
  • Detailed access to actual preclinical stage deals entered into by the leading big pharma and big biotech companies along with other biopharma companies
  • Analysis of the structure of preclinical stage agreements with numerous real life case studies
  • Identify leading preclinical stage deals by value since 2014
  • Identify the most active preclinical stage dealmakers since 2014
  • Full listing of preclinical stage deals by company A-Z, phase of development, deal type, therapy and technology focus
  • Understand the key deal terms companies have agreed in previous deals          
  • Undertake due diligence to assess suitability of your proposed deal terms for partner companies

Executive Summary

 

Chapter 1 – Introduction

 

Chapter 2 – Why do companies partner preclinical stage compounds?           

 

2.1. Introduction

2.2. The role of preclinical stage partnering

2.2.1. In-licensing at preclinical stage

2.2.2. Out-licensing at preclinical stage

2.3. Difference between discovery, preclinical and clinical stage deals

2.4. Reasons for entering into preclinical stage partnering deals

2.4.1. Licensors reasons for entering preclinical stage deals

2.4.2. Licensees reasons for entering preclinical stage deals

2.5. The future of preclinical stage partnering deals

 

Chapter 3 – Preclinical stage deal strategies and structure

 

3.1. Introduction

3.2. At what stage do companies partner?

3.2.1. Partnering early in pharmaceutical / biotech

3.2.1.1. Discovery and preclinical stage partnering case studies

3.2.1.1.a. Case study: LEO Pharma - 4SC

3.2.1.1.b. Case study: Heptares Therapeutics - Cubist

3.2.1.1.c. Case study: Incyte – Agenus Bio

3.2.1.1.d. Case study: Janssen Pharmaceutical - Evotec

3.2.2. Partnering later in pharmaceutical/biotech

3.2.2.1. Clinical stage partnering case studies

3.2.2.1.a. Case study: Servier – GeNeuro

3.2.2.1.b. Case study: Teva – Xenon Pharmaceuticals

3.2.2.1.c. Case study: AstraZeneca - Ardelyx

3.2.2.1.d. Case study: Baxter – Onconova Therapeutics

3.3. Early and later stage partnering – a risk/cost comparison

3.4. What do companies spend on preclinical stage partnering?

3.5. Pure versus multi-component partnering deals

3.6. Pure licensing agreement structure

3.6.1. Example pure preclinical stage licensing agreements

3.6.1.a. Case study : Merck and Co. – Tesaro

3.6.1.b. Case study : Marina Biotech – Mirna Therapeutics

3.7. Multicomponent preclinical stage partnering agreements

3.7.1. Example multicomponent preclinical stage clauses

3.7.1.a. Case study: Eleven Biotherapeutics – ThromboGenics

3.7.1.b. Case study: Pfizer – InSite Vision

 

Chapter 4 – Preclinical stage partnering payment strategies

 

4.1. Introduction

4.2. Preclinical stage payment strategies

4.3. Payment options

4.3.1. Headline values

4.3.2. Upfront payments

4.3.2.1. Conditionality of upfront payments

4.3.3. Loans

4.3.4. Convertible loans

4.3.5. Equity

4.3.6. R&D funding

4.3.7. Licensing fees

4.3.8. Milestone payments

4.3.9. Royalty payments

4.3.9.1. Issues affecting royalty rates

4.3.9.2. Royalties on combination products

4.3.9.2.a. Case study: Scripps Research Institute-Cyanotech

4.3.9.3. Guaranteed minimum/maximum annual payments

4.3.9.4. Royalty stacking

4.3.9.5. Royalties and supply/purchase contracts

4.3.10. Quids

4.3.11. Option payments

 

Chapter 5 – Trends in preclinical stage deal making

 

5.1. Introduction

5.2. Preclinical stage partnering over the years

5.2.1. Attributes of preclinical deals

5.3. Preclinical stage partnering by deal type

5.4. Preclinical stage partnering by disease type

5.5. Partnering by preclinical stage technology type

5.6. Preclinical stage partnering by most active company since 2014

 

Chapter 6 – Payment terms for preclinical stage partnering

 

6.1. Introduction

6.2. Guidelines for preclinical stage payment terms

6.2.1. Upfront payments

6.2.2. Milestone payments

6.2.3. Royalty payments

6.3. Preclinical stage payment terms – deal data analysis

6.3.1. Public data

6.3.2. Survey data

6.4. Payment terms analysis

6.4.1. Preclinical stage headline values

6.4.2. Preclinical stage deal upfront payments

6.4.3. Preclinical stage deal milestone payments

6.4.4. Preclinical stage royalty rates

 

Chapter 7 – Leading preclinical stage deals

 

7.1. Introduction

7.2. Top preclinical stage deals by value

 

Chapter 8 – Top 25 most active preclinical stage dealmakers

 

8.1. Introduction

8.2. Top 25 most active preclinical stage dealmakers

 

Chapter 9 – Preclinical stage partnering contracts directory

 

9.1. Introduction

9.2. Preclinical stage deals with contracts 2014 to 2020

 

Chapter 10 – Preclinical stage deal making by development stage

 

10.1. Introduction

10.2. Deals by preclinical stage

 

Appendices

 

Appendix 1 – Preclinical stage dealmaking by companies A-Z

Appendix 2 – Preclinical stage dealmaking by industry sector

Appendix 3 – Preclinical stage dealmaking by stage of development

Appendix 4 – Preclinical stage dealmaking by therapy area

Appendix 5 – Preclinical stage dealmaking by technology type

 

About Wildwood Ventures

 

Current Partnering

Current Agreements

Recent titles from Current Partnering

 

Table of figures

 

Figure 1: Definition of discovery, preclinical and clinical phases in dealmaking
Figure 2: Components of the pure licensing deal structure
Figure 3: Payment options for preclinical stage partnering deals
Figure 4: Issues affecting royalty rates
Figure 5: Preclinical stage partnering frequency 2014 - 2020
Figure 6: Preclinical stage partnering by deal type since 2014
Figure 7: Preclinical stage partnering by disease type since 2014
Figure 8: Preclinical stage partnering by technology type since 2014
Figure 9: Top 25 most active preclinical stage dealmakers, 2014 to 2020
Figure 10: Review of upfront payments for preclinical stage deals
Figure 11: Review of milestone payments for preclinical stage deals
Figure 12: Review of royalty payments for preclinical stage deals
Figure 13: Preclinical stage deals with a headline value
Figure 14: Preclinical stage deals with an upfront value
Figure 15: Preclinical stage deals with a milestone value
Figure 16: Preclinical stage deals with a royalty rate value
Figure 17: Top preclinical stage deals by value since 2014
Figure 18: Most active preclinical stage dealmakers 2014 to 2020

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Current Partnering is part of Wildwood Ventures Ltd., based in York, United Kingdom. We have been trading successfully online since 2009 and work with some of the most famous brands in the business. We carefully select our partners to ensure that the publications meet expectations of demanding customers.

1ST Biotherapeutics, 2A, 3B Pharmaceuticals, 3DMed, 3SBio, 4D Molecular Therapeutics, 4SC, 23andMe, A*STAR Agency for Science, Technology and Research, AB-Biotics, AB Biosciences, Abbott Laboratories, Abbott Vascular Devices, Abbvie, AbClon, Ab E Discovery, Abeona Therapeutics, Abide Therapeutics, ABL Bio, Abpro, Abzena, Accelovance, AccuGenomics, Acetylon Pharmaceuticals, Achaogen, Achieve Life Science, AC Immune, Aclaris Therapeutics, ACT Biotech, Acticor Biotech, Actinium Pharmaceuticals, Acucela, AcuraStem, Acurx Pharmaceuticals, AdAlta, Adaptimmune, Adapt Pharma, ADC Therapeutics, Addex Therapeutics, Adimab, Aduro BioTech, Advaccine Biotechnology, Advaita, Advanced Accelerator Applications, Advanced BioScience Laboratories, Advaxis, Aerie Pharmaceuticals, Aevi Genomic Medicine, AffaMed Therapeutics, Affigen, Affinium Pharmaceuticals, Affinivax, AFFiRiS, AGC Biologics, Agenus Bio, Agilvax, Agios Pharmaceuticals, AgonOx, AGTC, AIMM Therapeutics, Aimmune Therapeutics, Ajinomoto, Akaal Pharma, Akcea Therapeutics, Akebia Therapeutics, Akero Therapeutics, Akeso Biopharma, AKESOgen, Akouos, Akoya Biosciences, Akston Biosciences, Albert Einstein College of Medicine, Alderley Analytical, Aldeyra Therapeutics, Alector, Alexion Pharmaceuticals, Algenex, AliveGen, Alivio Therapeutics, Alkahest, Alkermes, Allergan, Alliance for Cancer Gene Therapy, Alligator Bioscience, Allogene Therapeutics, Alma Bio Therapeutics, Almirall, Alnylam Pharmaceuticals, Alphamab, Alpine Immune Sciences, ALS Association, ALS Biopharma, Altamira Pharma, Altasciences, Alteogen, ALTuCELL, Alzheimer's Association, Alzheimer's Drug Discovery Foundation, Alzheimers Research UK, Amarantus BioSciences, Ambrx, amcure, American Foundation for AIDS Research (amfAR), American National Multiple Sclerosis Society, Amgen, Amicus Therapeutics, Amneal Pharmaceuticals, AmorChem, Amorsa Therapeutics, AmpliPhi Biosciences, Amunix, Amylgen, Amyris, AnaBios, AnaptysBio, Anavex Life Sciences, AnGes MG, Angiex, Anika Therapeutics, Animal Life Sciences, Anixa Biosciences, Anokion, ANP Technologies, Antengene, Anterios, Anthos Therapeutics, Antidote Therapeutics, Antitope, Antoxerene, Apceth, Appello Pharmaceuticals, Appili Therapeutics, Applied BioMath, Applied Molecular Transport, Aprea, Aptahem, Aptar Pharma, Aptevo Therapeutics, Aptinyx, Aptose Biosciences, Aquinnah Pharmaceuticals, Aratana Therapeutics, Aravive Biologics, Arbutus, ArcherDX, Arcus Biosciences, Arcutis, Ardelyx, Ardena, Arecor, Arena Pharmaceuticals, arGEN-X, argenx, Argos Therapeutics, Ariad Pharmaceuticals, Aridis Pharmaceuticals, Arisaph Pharmaceuticals, Arix Bioscience, Arizona State University, Ark Biosciences, Arno Therapeutics (inactive since 2017), AroCell, Aromics, ArQule, Arrevus, Arrowhead Pharmaceuticals, Arrys Therapeutics, Arsanis Biosciences, Artelo Biosciences, Artios Pharma, Artizan Biosciences, Ascentage Pharma, AskAt, Asklepios Biopharmaceutical, Aslan Pharma, Aspen Park Pharmaceuticals, Assembly Biosciences, Astellas Pharma, Asterias Biotherapeutics, AstraZeneca, Atara Biotherapeutics, Atelerix, Athenex, Athersys, Auburn University, Audentes Therapeutics, AUM Biotech, Aurigene Discovery Technologies, AusHealth, Autifony Therapeutics, Avacta, Avalanche Biotechnologies, AVEO Oncology, AveXis, Avicanna, Avrobio, Axovant Sciences, Axxam, Ayala Pharmaceuticals, Aytu BioScience, Azaya Therapeutics, Azellon Cell Therapeutics, Bachem, Baergic Bio, Baker IDI Heart and Diabetes Institute, Batavia Biosciences, Bayer, Bayer Healthcare, Baylor College, Baylor College of Medicine, Baylor Institute for Immunology Research, BB100, Beacon Discovery, Beactica, BeiGene, Bellicum Pharmaceuticals, Ben-Gurion University, Benitec Biopharma, Berlin-Brandenburg Center for Regenerative Therapies, Beroni Group, Be The Match BioTherapies, Beth Israel Deaconess Medical Center, BGI, BGN Technologies, Bill and Melinda Gates Foundation, BioAgilytix, BioArctic Neuroscience, biOasis Technologies, BioAtla, BioAxone Therapeutic, BioCancell Therapeutics, Biocept, Bioceros, BiocerOX Products, Biocon, BioCorRx, BioCryst Pharmaceuticals, BioCure, Biodesix, BioDuro, Biogen, Bioharmony Therapeutics, Biohaven Pharmaceutical Holding, BioIVT, Biokinetic Europe, BioLamina, BiolineRX, BioMarin Pharmaceutical, Biomedical Advanced Research and Development Authority, Biomedical Catalyst Fund (UK), BioMed X Innovation Center, Biomica, BioMotiv, BiomX, BioNTech, Bionure, Biopharmaceuticals Australia, BioPharma Forest, Bioscience Pharma Partners, Biose Industrie, BioSig Technologies, BioSpring, Biostar Pharmaceuticals, Biothera, BioTheranostics, Biotheus, BioVaxys, Bioventus, Bioverativ, BioVersys, Biovista, BioWa, BioXcel, BirchBioMed, Bird Foundation, BJ Bioscience, Blackstone, Bloom Science, Bluebird Bio, Blueprint Medicines, Blue Water Vaccines, BlueWillow Biologics, Boehringer Ingelheim, Bonnie J. Addario Lung Cancer Foundation, Boston Pharmaceuticals, Botanisol, BoyaLife, Bpifrance, BrainStorm Cell Therapeutics, Brickell Biotech, BridgeBio Pharma, Brigham and Women's Hospital, Brii Biosciences, Bristol-Myers Squibb, BryoLogyx, Buck Institute for Age Research, C-Bridge Capital, C2N Diagnostics, C4 Therapeutics, C4X Discovery, Cadent, Cadila Pharmaceuticals, Caladrius Biosciences, Calico, Calidi Biotherapeutics, California Institute for Biomedical Research, California Institute for Medical Researc, California Institute for Regenerative Medicine, Calithera Biosciences, Calvert Research, Calypso Biotech, Camargo Pharmaceutical Services, Camurus, Can-Fite BioPharma, CanBas, CANbridge Life Sciences, Cancer Prevention and Research Institute of Texas, Cancer Prevention Pharmaceuticals, Cancer Research Technology, Cancer Research UK, Cannabis Science, Cantargia, Capricor Therapeutics, CARB-X, Cardiff University, Cardium Therapeutics, Cardurion Pharmaceuticals, Caris Life Sciences, Carisma Therapeutics, Carna BioSciences, CARsgen, Cascadian Therapeutics, Case Western Reserve University, Castle Creek Pharmaceuticals, Catabasis Pharmaceuticals, Catalent, Catalyst Biosciences, CBT Pharmaceuticals, Cedars-Sinai Medical Center, Celgene, Cell and Gene Therapy Catapult, Cellectar Biosciences, Cellect Biotechnology, Cellectis, Cellectricon, Cellerant Therapeutics, Cell Medica, Cellmid, Cell Therapy Catapult, Celltrion, Cellular Biomedicine, Celmatix, Cel Sci, Celsion, Celularity, Celyad, Cenix BioScience, Censo Biotechnologies, Centers for Disease Control and Prevention, Centogene, Centre de Recherche en Cancérologie de Lyon, Centre for Commercialization of Regenerative Medicine (CCRM), Centre For The Commercialization Of Antibodies And Biologics, Centre Hospital University - Bordeaux, Centre National de Biologie Expérimentale, Centrexion, Cerebral Therapeutics, CereHealth, Certara, Certis, Cerveau Technologies, Cesca Therapeutics, Cevec Pharmaceuticals, cGMP Validation, Champions Oncology, Changchun BCHT Biotechnology, Changzhou Le Sun Pharmaceuticals, Charcot-Marie-Tooth Association, Charite-Universitatsmedizin, Charles River Laboratories, Checkmate Pharmaceuticals, Checkpoint Therapeutics, Chembio Diagnostics, Chemveda Life Sciences, Chiesi Farmaceutici, Children's Hospital Boston, Children's Hospital of Philadelphia, China Medical System, Chinook Therapeutics, Chongqing Lummy Pharma, ChromaDex, Chroma Therapeutics, Chromocell, Chronos Therapeutics, Chrysalis BioTherapeutics, Chugai Pharmaceutical, Ciclofilin Pharmaceuticals, Cilag AG, Cimtech, Cincinnati Children’s Hospital Medical Center, Cingulate Therapeutics (CTx), Cipher Pharmaceuticals, Circuit Therapeutics, Cisen Pharma, CiToxLAB, City of Hope, CiVi Biopharma, Clarity Pharmaceuticals, Claude Bourgelat Institute, Clene Nanomedicine, Cleveland Clinic, Clevexel Pharma, Click Therapeutics, Clinical Laserthermia Systems (CLS), Clinica Universidad Navarra, Clovis Oncology, CMAB Biopharma, CMC Biologics, CNS Pharmaceuticals, Coalition for Epidemic Preparedness Innovations, Cobra Biologics, Cochin Hospital, Cochlear, Cocrystal Pharma, Codexis, Cofactor Genomics, Cognate BioServices, Colibri Heart Valve, College of Life Science of Northwest University, Columbia Technology Ventures, Columbia University, Colzyx, CombiGene, Compugen, Concept Life Sciences, Confo Therapeutics, Connecticut Innovations, Connexios, ConsortiaTX, Constance Therapeutics, ContraFect, ConverGene, Cook Biotech, Copernicus Therapeutics, Corbus Pharmaceuticals, Corden Pharma, CoreBiome, Coronado Biosciences, Cortexyme, Corvidia Therapeutics, Cosmo Bio, COTA, Covance, Crescendo Bioscience, Crestone Pharma, Croix-Rousse Hospital, Cronos Group, Crossbeta Biosciences, Crown Bioscience, Crozet BioPharma, CrystalGenomics, CSL, CSPC Pharmaceutical Group, CStone Pharmaceuticals, Cullinan Oncology, Cumulus Oncology, Curadev Pharma, Cure Duchenne, CureVac, Cureveda, Curie-Cancer, Curis, Cyclacel Pharmaceuticals, Cyclica, Cynata Therapeutics, Cypralis, Cystic Fibrosis Foundation, Cystic Fibrosis Foundation Therapeutics, Cyteir Therapeutics, Cytokinetics, CytomX Therapeutics, Cytos Biotechnology, Cytovant Sciences, Cyxone, D. Western Therapeutics Institute, Daiichi Sankyo, Dainippon Sumitomo Pharma, Dako, Dalhousie University, Dana-Farber Cancer Institute, DarwinHealth, Debiopharm, Decibel Therapeutics, DecImmune Therapeutics, de Duve Institute, Defense Advanced Research Projects Agency, Defense Threat Reduction Agency, Defymed, Delphi Genetics, Denali Therapeutics, Denator, Dendreon, DendroCyte, Denovo Biopharma, Department of Defense, Department of Economic development of Montgomery County, Department of Health and Human Services, Department of Veterans Affairs, DePuy, Dermata Therapeutics, Dermelix Biotherapeutics, Dermira, DiagnoCure, Dianomi Therapeutics, Diaprost, Diatheva, Dicerna Pharmaceuticals, DiNAQOR, DNA Therapeutics, DNX Biopharmaceuticals, Dogma Therapeutics, Domain Therapeutics, Dong-A ST, Dr. Reddy's Laboratories, Dragonfly Therapeutics, DreaMed Diabetes, DSM, Dual Therapeutics, Duke-NUS Graduate Medical School Singapore, Duke University, Dynacure, Eagle Pharmaceuticals, Eddingpharm, Edelris, Editas Medicine, Educational and Scientific, Eirion Therapeutics, Eisai, Elanco, Eleven Biotherapeutics, Eli Lilly, ElsaLys Biotech, EMD Millipore, EMD Serono, Emergent BioSolutions, Emergex Vaccines, Emory University, Emulate, Endotherm, Enochian Biosciences, Ensysce Biosciences, Entasis Therapeutics, Enterome Bioscience, Entia Biosciences, Enumeral Biomedical, Environmental Protection Agency, ENYO Pharma, Epigen Biosciences, Epilepsy Foundation (EF), EpimAb Biotherapeutics, Erytech, Escient Pharmaceuticals, EspeRare Foundation, Essex Bio-Technology, Esteve, Eternygen, Ethris, Euclises Pharmaceuticals, Eureka Eurostars, Eureka Therapeutic, Eurofins Discovery, European Union, Evecxia, Everest Medicines, Evolva, Evotec, ExCellThera, Excelra, Exelixis, Exicure, Exonate, Expesicor, EyeMedics, Eyevance, F1 Oncology, FAAH Pharma, Facit, Fapon Biopharma, Fast Forward, Fatro, Federal Ministry of Education and Research (BMBF), Federal Ministry of Health (Germany), Feinstein Institute for Medical Research, Feldan Therapeutics, FerGene, Ferring Pharmaceuticals, Fibriant, Fibrocell Science, Fibrocor Therapeutics, Fimbrion Therapeutics, Five Prime Therapeutics, Flemish agency for Innovation by Science and Technology, Flexion Therapeutics, FloDesign Sonics, Florey Institute of Neuroscience and Mental Heath, Florida International University, Florida State University, Flowonix, Flow Pharma, FLX Bio, Fondazione Telethon, Forge Therapeutics, FORMA Therapeutics, Formula Pharmaceuticals, Fortify Therapeutics, Fortress Biotech, Forty Seven, Fosun Pharmaceutical, Foundation for Biomedical Research and Innovation, Foundation to Eradicate Duchenne, FoxBio, Fox Chase Cancer Center, Fred Hutchinson Cancer Research Center, Frequency Therapeutics, FSD Pharma, Fudan University, Fuhong Hanlin, Fujifilm, Fulgent Pharma, G-Tech Bio, G1 Therapeutics, G3 Pharmaceuticals, Galapagos, GamaMabs Pharma, Gamida Cell, GB Sciences, Gedeon Richter, Gem Pharma, Gen-Probe, GEn1E Lifesciences, Genea Biocells, GeneCentric Therapeutics, Genentech, GeneQuantum Healthcare, GeneQuine Biotherapeutics, Generex Biotechnology, GeneSegues, Genethon, Genetic Immunity, GeNeuro, Genevant Sciences, Genexine, Genmab, Genomic Health, Genprex, GenScript USA, Gensight, GenSpera, GenStem Therapeutics, Genticel, GenVec, Georgetown University, George Washington University, Georgia State University, GeoVax, German Red Cross, Gesynta Pharma, Gilead Sciences, Glaukos, GlaxoSmithKline, GlaxoSmithKline Biologicals, Glenmark Pharmaceuticals, Glialogix, Glycotope Biotechnology, Glympse Bio, Glythera, Goldfinch Bio, Government of Australia, Government of Canada, Gradalis, GrayBug, Great Bay Bio, Green Cross LabCell, Grifols, Group K Diagnostics, GTx, Guangzhou Boji Medical Biotechnological, Guangzhou Institute of Biomedicine and Health, Gubra, H&P Labs, Hadasit Medical Research Services and Development, Hadassah Medical Center, Hainan Sihuan Pharmaceutical, HanAll Pharmaceuticals, Hangzhou Zhongmei Huadong Pharmaceutical, HanX Biopharmaceuticals, Harbour Biomed, Harpoon Therapeutics, Harvard University, Hatchtech, Hawaii Biotech, HD Biosciences, Healios K.K., Health Connexions, HemaCare, HemoShear, Henlius Biotech, Henry Ford Health System, Hepion Pharmaceuticals, Heraeus, Hillhurst Biopharmaceuticals, Hillstream BioPharma, Histogenics, HitGen, Hoffmann La Roche, Hologic, Hong Kong Polytechnic University, Hope Medicine, Horizon 2020, Horizon Discovery, Hoth Therapeutics, HSRx Group, Humabs BioMed, Humanetics, Humanigen, Hummingbird Bioscience, Huntsman Cancer Institute, Hybridyne Imaging Technologies, Hydra Biosciences, Hyundai Pharmaceutical, I-Bridge Capital, I-mab, IBC Generium, Ichor Medical Systems, Iconic Therapeutics, iDD Biotech, IDEAYA Biosciences, Idera Pharmaceuticals, Idorsia, IDT Biologika, Igenica, Ignyta, IGXBio, ILiAD Biotechnologies, ImageIQ, ImaginAb, Imago Pharmaceuticals, Imanis Life Sciences, ImCheck Therapeutics, Imcyse, Immodulon Therapeutics, ImmuNext, Immunic, ImmunoBiochem, Immunocore, ImmunoForge, ImmunoGen, Immunomedics, Immunomic, ImmunoPhotonics, ImmunoQure, Imperial College London, Imperial Innovations, Inception Sciences, Incyte, Indiana University, Indica Labs, Indivior, Inexia, Infectious Disease Research Institute (IDRI), Infinity Pharmaceuticals, InflamaCORE, Inflection Biosciences, Inhibikase Therapeutics, Inhibrx, Initiator Pharma, INmune Bio, Innate Pharma, Innovate Biopharmaceuticals, Innovate UK, Innovent Biologics, Inoviem Scientific, Inovio Pharmaceuticals, Inserm, Inserm Transfert, Insilico, Insmed Inc, InSphero, Inspyr Therapeutics, Institute for Bioscience and Biotechnology Research, Institute for Research in Immunology and Cancer – Commercialization of Research, Institute for the Promotion of Innovation by Science and Technology in Flanders, Institute of Biomedical Research, Institute of Biophysics, Institute of Endocrinology, Metabolism, and Reproduction, Institute of Hematology and Blood Transfusion, Institut Pasteur, 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Sonnet BioTherapeutics, Sorrento Therapeutics, Sosei, Sosei Heptares, SOTIO, Sourasky Medical Center, Sourcia, Southern Research Institute, Spark Therapeutics, Spero Therapeutics, Spherix, Spiral Genetics, Spiral Therapeutics, Spotlight Innovation, Spring Bank Pharmaceuticals, SpringWorks Therapeutics, SQZ Biotech, SRI International, St. Jude Children's Research Hospital, Stanford University, Stanford University School of Medicine, Starpharma, Staten Biotechnology, StemCell Systems, Stem Cell Theranostics, Stemina Biomarker Discovery, Stemline Therapeutics, Stony Brook University, Structural Genomics Consortium, St Vincent’s Institute of Medical Research, Summit Therapeutics, Sunesis Pharmaceuticals, Sunnybrook Research Institute, SunTerra Biotechnology, Surface Oncology, SurModics, SutroVax, Suzhou NeuPharma, Swedish Orphan, Swedish Orphan Biovitrum, Swedish Research Council, Swiss Biotech Center, Symbiotix Biotherapies, Symcel, Symic Biomedical, Synaffix, Syndax Pharmaceuticals, Syndesi Therapeutics, Synergys Biotherapeutics, Syngene, Synovo, Synpromics, Synthetic Genomics, Synthon, T3 Labs, Tactiva Therapeutics, Taiho, Taipei Medical University, TaiRx, Takeda America Holdings, Takeda Pharmaceutical, Talee Bio, Talix Therapeutics, Tamid Bio, Tampere University Hospital, Targacept, Targovax, Tarsius Pharma, Tasly Pharmaceuticals, Tavotek Biotherapeutics, TAXIS Pharmaceuticals, Taxus Pharmaceuticals, TB Alliance, TC BioPharm, Technion Research and Development Foundation, Technology Strategy Board (UK), TechnoVax, Teijin, Tekmira Pharmaceuticals, Tel Aviv University, Telik, Telix Pharmaceuticals, Telo Genomics, TeneoBio, TeneoOne, Terns Pharmaceuticals, Tesaro, Tessa Therapeutics, Tetra Bio-Pharma, Tetragenetics, TetraLogic Pharmaceuticals, Tetraphase Pharmaceuticals, Teva Pharmaceutical Industries, Teva Pharmaceuticals USA, Texas Biomedical Research Institute, TG Therapeutics, The Alpha-1 Project, The Cure Parkinson's Trust, The HUB Foundation, The International 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