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Europe Pharmacovigilance Market Size, Share & Trends Analysis Report By Service Provider, By Product Life Cycle, By Therapeutic Area, By Process Flow, By End-use, By Type, By Country,- Industry Analysis, Size, Share, Growth, Trends, and Forecast 2024-203

Publisher Nova One Advisor
Published May 26, 2025
Length 468 Pages
SKU # ONEA20057890

Description

Europe Pharmacovigilance Market Size and Trends
The Europe pharmacovigilance market size was exhibited at USD 1.95 billion in 2023 and is projected to hit around USD 4.06 billion by 2033, growing at a CAGR of 7.6% during the forecast period 2024 to 2033.

Europe Pharmacovigilance Market Key Takeaways:

The spontaneous reporting segment dominated the market and accounted for the largest revenue share of 30.0% in 2023
The phase IV segment led the market and registered the largest revenue share of 75.9% in 2023.
The contract outsourcing segment dominated the market and accounted for the largest share of 59.9% in 2023.
The pharmaceuticals segment led the market and accounted for the largest revenue share of 41.5% in 2023.
The oncology segment held the largest share of 26.5% in 2023.
The signal detection segment accounted for the largest share of 40.0% in 2023
The case data management segment is expected to grow at a CAGR of 7.6% from 2024 to 2033

Market Overview
The Europe pharmacovigilance market is a cornerstone of the continent’s robust healthcare and pharmaceutical ecosystem, ensuring the safety, efficacy, and quality of drugs throughout their life cycles. Pharmacovigilance, often termed drug safety surveillance, involves the detection, assessment, understanding, and prevention of adverse effects or other drug-related problems. With an increasingly complex therapeutic landscape, stricter regulatory scrutiny, and public demand for transparency in drug safety, the importance of pharmacovigilance has grown exponentially across Europe.
The European Medicines Agency (EMA) and national regulatory authorities mandate stringent pharmacovigilance requirements for marketing authorization holders (MAHs). Companies are obligated to maintain safety databases, conduct risk assessments, submit individual case safety reports (ICSRs), and establish risk management plans (RMPs). The implementation of the EudraVigilance system—a centralized European database for adverse drug reaction (ADR) reporting—further strengthens cross-country collaboration in safety monitoring.
Rising clinical trial activity, particularly in oncology, neurology, and cardiology, has led to an expansion of pharmacovigilance services. European countries, especially Germany, the UK, France, and Italy, are investing in advanced pharmacovigilance platforms integrated with real-time signal detection, AI-based adverse event prediction, and automated case processing tools. The region’s pharmaceutical companies and contract research organizations (CROs) are increasingly outsourcing pharmacovigilance operations to improve scalability and cost-efficiency.
In response to the COVID-19 pandemic, the European pharmacovigilance infrastructure was stress-tested during rapid vaccine rollouts. The subsequent monitoring of vaccine safety using spontaneous reporting, cohort event monitoring, and real-world evidence (RWE) strategies became instrumental in shaping public health policies. As post-pandemic restructuring focuses on resilience, digitalization, and harmonization, Europe stands at the forefront of pharmacovigilance innovation.
Major Trends in the Market

AI and Automation in Pharmacovigilance: Increasing adoption of machine learning and natural language processing (NLP) for faster and more accurate case data management and signal detection.

Growing Role of Real-World Evidence (RWE): Leveraging EHRs, patient registries, and claims data for safety surveillance and decision-making.

Outsourcing to CROs and BPOs: Surge in contract outsourcing to specialized pharmacovigilance service providers for scalable and cost-effective operations.

Expansion of Risk Management Frameworks: Evolving risk management strategies including Risk Evaluation and Mitigation Strategies (REMS) and Risk Minimization Measures (RMMs).

Integration of EHR Mining and Big Data: Use of electronic health records and big data analytics to identify patterns in ADRs and improve pharmacovigilance precision.

Collaborative Cross-border Vigilance Systems: Strengthened cooperation among European countries through the EudraVigilance network and centralized safety databases.

Pediatric and Geriatric Pharmacovigilance: Rising attention to vulnerable populations in pharmacovigilance strategies, especially for age-specific safety profiling.

Report Scope of Europe Pharmacovigilance Market

Report Coverage
Details

Market Size in 2024
USD 2.10 Billion

Market Size by 2033
USD 4.06 Billion

Growth Rate From 2024 to 2033
CAGR of 7.6%

Base Year
2023

Forecast Period
2024-2033

Segments Covered
Product life cycle, Service Provider, Type, End use, Therapeutic Area, Process Flow, Country

Market Analysis (Terms Used)
Value (US$ Million/Billion) or (Volume/Units)

Country scope
Germany; France; UK; Italy; Russia; Spain; Sweden; Denmark; Norway

Key Companies Profiled
Dr. Reddy’s Laboratories Ltd.; Sun Pharmaceutical Industries Ltd.; Cipla Inc.; Aurobindo Pharma.; Asymchem Laboratories; Reyoung Pharmaceutical; CSPC Pharmaceutical Group Ltd.; Otsuka Pharmaceutical Australia Pty Ltd.; GC Biopharma Corp.; Chong Kun Dang Pharmaceutical Corp.

Key Market Driver
Stringent Regulatory Mandates Driving Compliance and Market Growth
A major driver propelling the pharmacovigilance market in Europe is the continent’s comprehensive regulatory framework, which mandates robust safety monitoring mechanisms for pharmaceutical and biotechnology firms. The European Union (EU) has one of the most rigorous pharmacovigilance legislations globally, enforced through the EMA and supported by national authorities. Post-marketing surveillance is legally required under EU Regulation (EU) No 1235/2010 and Directive 2010/84/EU.
For instance, all MAHs must submit Periodic Safety Update Reports (PSURs), implement RMPs, and report ICSRs within strict timelines. Additionally, the EU Pharmacovigilance Risk Assessment Committee (PRAC) continuously evaluates safety signals. These measures ensure that companies invest in pharmacovigilance systems, driving market demand for case management, risk analysis, and compliance tools. As drug pipelines expand and regulatory complexity increases, particularly for biologics and gene therapies, pharmacovigilance becomes indispensable.
Key Market Restraint
Operational Challenges in Managing Global Safety Databases
Despite its growth, the European pharmacovigilance market faces operational hurdles, particularly in managing the massive volume and diversity of safety data. Global safety databases must integrate multi-source information from clinical trials, spontaneous reports, literature, and social media in multiple languages and formats. Ensuring data consistency, completeness, and timeliness remains a complex task.
Moreover, the need for real-time adverse event detection increases the burden on pharmacovigilance teams. Manual data entry, quality control, and reconciliation across systems often result in inefficiencies and higher costs. Smaller companies and mid-sized biotech firms, in particular, struggle with scalability and compliance under these operational constraints. The resource-intensive nature of pharmacovigilance infrastructure especially when built in-house can hinder adoption or expansion.
Key Market Opportunity
Emergence of AI-driven Signal Detection and Predictive Analytics
One of the most promising opportunities in the European pharmacovigilance market is the deployment of AI and predictive analytics for signal detection and proactive risk management. Traditional pharmacovigilance processes are reactive, relying on the reporting of adverse events after they occur. AI transforms this approach by enabling early signal detection from structured and unstructured data sources, improving drug safety before risks escalate.
Companies like Oracle and ArisGlobal are developing platforms that apply NLP to extract adverse event data from social media, clinical notes, and medical journals. Predictive models assess patterns and risk profiles across therapeutic areas, allowing regulators and MAHs to respond faster. In 2023, the UK’s Medicines and Healthcare products Regulatory Agency (MHRA) announced pilot projects using machine learning for pharmacovigilance signal evaluation. This shift to predictive pharmacovigilance represents a fundamental evolution of safety science and opens avenues for market expansion.
Europe Pharmacovigilance Market By Type Insights
Spontaneous reporting remains the dominant type in the European market, largely due to regulatory reliance on individual case safety reports (ICSRs) from healthcare professionals and patients. EudraVigilance, the EU’s central ADR reporting database, receives thousands of spontaneous reports annually. This method remains a cornerstone of pharmacovigilance due to its simplicity, widespread use, and ability to capture unexpected adverse events. National authorities like the UK’s Yellow Card Scheme or France’s ANSM portal continue to strengthen spontaneous reporting mechanisms.
However, EHR mining is projected to be the fastest-growing segment, spurred by the digitalization of health records and real-world data (RWD) initiatives. Mining EHRs allows for comprehensive safety surveillance using longitudinal patient data, enabling early signal detection and patient subgroup analysis. For example, Sweden’s use of national EHR databases to monitor cardiovascular drug safety illustrates the potential of EHR mining. As interoperability and data analytics improve, EHR mining will become a core pharmacovigilance tool in the region.
Europe Pharmacovigilance Market By Product Life Cycle Insights
Phase IV, or post-marketing surveillance, dominated the European pharmacovigilance market due to regulatory obligations requiring continuous monitoring of drugs after approval. Adverse drug reactions that emerge in real-world settings often differ from those seen in clinical trials due to larger and more diverse patient populations. Regulatory agencies emphasize Phase IV studies to ensure long-term safety, especially for chronic therapies, oncology drugs, and biological products. These post-marketing studies involve spontaneous reporting, cohort event monitoring, and EHR data mining. Pharmaceutical companies invest heavily in Phase IV pharmacovigilance systems to meet compliance, avoid litigation, and maintain public trust.
However, Phase III is witnessing the fastest growth due to the increasing number of global clinical trials and complex therapies advancing through late-stage development. During Phase III, pharmacovigilance is essential for trial monitoring, data integrity, and preparation for regulatory submission. With the EU Clinical Trials Regulation (CTR) mandating transparency and safety disclosure, Phase III pharmacovigilance is now integrated with clinical trial management systems (CTMS) and electronic data capture (EDC) tools. The convergence of clinical and safety operations in this phase fuels demand for integrated platforms and predictive monitoring capabilities.
Europe Pharmacovigilance Market By Service Providers Insights
Contract outsourcing emerged as the leading segment in the European pharmacovigilance market, driven by the need for cost-efficiency, scalability, and access to specialized expertise. Pharmaceutical and biotech companies increasingly rely on CROs and pharmacovigilance service providers to manage case processing, literature surveillance, and risk management planning. Outsourcing enables small and mid-sized companies to meet compliance requirements without investing in full-scale in-house teams. Leading providers offer end-to-end solutions, including medical writing, global reporting, and signal detection, often leveraging AI and cloud-based systems.
Nevertheless, in-house pharmacovigilance services are expected to grow steadily, particularly among large pharmaceutical enterprises with established pharmacovigilance infrastructure. These companies prefer internal control over safety data and invest in customized pharmacovigilance IT systems. In-house teams collaborate closely with regulatory affairs and R&D departments, ensuring seamless integration and faster decision-making. With increased regulatory scrutiny and the growth of complex biologics, maintaining robust internal pharmacovigilance capabilities becomes strategically important.
Europe Pharmacovigilance Market By End-use Insights
Pharmaceutical companies lead the pharmacovigilance market in Europe, accounting for the majority of ADR reports and post-marketing surveillance activities. These firms are subject to rigorous EMA guidelines and operate complex product portfolios requiring constant safety monitoring. Established companies maintain global safety databases, pharmacovigilance agreements (PVAs), and risk management frameworks, which create consistent demand for pharmacovigilance services and platforms.
Biotechnology companies, on the other hand, represent the fastest-growing end users. As innovation surges in gene therapies, monoclonal antibodies, and personalized medicines, biotechs are compelled to adopt sophisticated pharmacovigilance practices. With many EU-based biotechs advancing through clinical phases or receiving conditional approvals, safety surveillance becomes critical. The growth of cell and gene therapy trials in countries like France and the Netherlands accelerates this trend, pushing biotechs to partner with pharmacovigilance vendors or invest in AI-enabled systems.
Europe Pharmacovigilance Market By Therapeutic Area Insights
Oncology was the dominant therapeutic area due to the high incidence of treatment-related adverse events and the complexity of cancer drug regimens. Immunotherapies, targeted treatments, and combination therapies often present unique safety challenges. EMA mandates extensive pharmacovigilance plans for oncology products, including real-world evidence collection and post-authorization safety studies (PASS). With increasing approvals for orphan oncology drugs, safety monitoring remains critical throughout their lifecycle.
Neurology, however, is growing at an accelerated pace. The expansion of clinical research in neurodegenerative diseases, such as Alzheimer’s, Parkinson’s, and multiple sclerosis, has driven pharmacovigilance efforts. Neurologic therapies often involve long-term use and can impact cognition or behavior, necessitating vigilant monitoring. EU Horizon programs and cross-border neurology research initiatives contribute to this growth, placing neurology in the spotlight for advanced safety assessments.
Europe Pharmacovigilance Market By Process Flow Insights
Case data management remains the largest segment due to the foundational role it plays in collecting, validating, coding, and submitting adverse event reports. Pharmacovigilance systems across Europe are built around efficient case intake and processing, especially with regulatory timelines for ICSR submission. Outsourced vendors and internal teams rely on specialized platforms like Oracle Argus Safety and ArisGlobal LifeSphere to manage high case volumes efficiently.

Yet, signal detection is quickly becoming the most dynamic process flow segment. Regulatory bodies now require proactive signal detection strategies to complement traditional reporting. AI tools that automate signal prioritization, duplicate case detection, and risk pattern identification are gaining traction. In April 2024, EMA released updated guidance on quantitative signal detection methodologies, further catalyzing investment in this segment.
Country Insights
Germany
Germany leads the European market due to its large pharmaceutical sector, robust regulatory compliance, and adoption of digital health technologies. The Federal Institute for Drugs and Medical Devices (BfArM) oversees national pharmacovigilance programs and collaborates with EMA on international initiatives.
United Kingdom
The UK remains a pharmacovigilance innovation hub even post-Brexit. The MHRA has established its own regulatory framework and emphasized AI in pharmacovigilance. Recent pilot programs have explored machine learning models for ADR detection and public health signal prioritization.
France
France’s ANSM is recognized for proactive pharmacovigilance. The country encourages patient-reported outcomes and maintains one of the highest spontaneous reporting rates in the EU. Partnerships with public hospitals enhance pharmacovigilance infrastructure.
Italy
Italy has made significant strides in pharmacovigilance digitization. The Italian Medicines Agency (AIFA) promotes the use of electronic reporting and integrates pharmacovigilance with national health records for comprehensive monitoring.
Spain, Sweden, Denmark, Norway
These countries have embraced EHR mining and real-world data initiatives. Sweden’s national EHR database, Denmark’s digital health infrastructure, and Norway’s data privacy regulations foster pharmacovigilance innovation and compliance.
Some of the prominent players in the Europe pharmacovigilance market include:

ICON PLC.
CAPGEMINI
Arithmos
QbD Group
LINK Medical
ANP Pharma
Bayer AG
AstraZeneca
Mirpharm Group of Pharmaceutical Companies
Congenix

Segments Covered in the Report
This report forecasts revenue growth at country levels and provides an analysis of the latest industry trends in each of the sub-segments from 2021 to 2033. For this study, Nova one advisor, Inc. has segmented the Europe pharmacovigilance market
Product Life Cycle

Pre-clinical
Phase I
Phase II
Phase III
Phase IV

Service Provider

In-house
Contract Outsourcing

Type

Spontaneous Reporting
Intensified ADR Reporting
Targeted Spontaneous Reporting
Cohort Event Monitoring
EHR Mining

End Use

Pharmaceuticals
Biotechnology Companies
Medical Device Manufacturers
Others

Therapeutic Area

Oncology
Neurology
Cardiology
Respiratory Systems
Other

Process Flow

Case Data Management
Signal Detection
Risk Management System

Country

Germany
France
UK
Italy
Russia
Spain
Sweden
Denmark
Norway

Table of Contents

468 Pages
Chapter 1 Research Methodology & Scope
1.1 Market Segmentation & Scope
1.1.1 Product Life Cycle
1.1.2 Service Provider
1.1.3 Type
1.1.4 Process Flow
1.1.5 Therapeutic Area
1.1.6 End Use
1.1.7 Regional Scope
1.1.8 Estimates and Forecast Timeline
1.2 Research Methodology
1.3 Information Procurement
1.3.1 Purchased Database:
1.3.2 Internal Database
1.3.3 Secondary Sources
1.3.4 Primary Research:
1.3.5 Details Of Primary Research
1.3.5.1 Data for primary interviews in North America
1.3.5.2 Data for Primary Interviews in Europe
1.3.5.3 Data for Primary Interviews in Asia Pacific
1.3.5.4 Data for Primary Interviews in Latin America
1.3.5.5 Data for Primary Interviews in Middle East & Africa
1.4 Information or Data Analysis
1.4.1 Data Analysis Models
1.5 Market Formulation & Validation
1.6 Model Details
1.6.1 Commodity Flow Analysis
1.6.1.1 Top down market estimation
1.6.1.2 CAGR Calculation
1.6.1.3 Key Report Updates
1.7 List of Secondary Sources
1.8 List of Abbreviations
1.9 Market Definitions
1.10 Report Objectives
1.10.1 Objective 1:
1.10.2 Objective 2:
Chapter 2 Executive Summary
2.1 Market Snapshot
2.2 Segment Snapshot (Product Life Cycle & Service Provider)
2.3 Segment Snapshot (Type & Therapeutic Area)
2.4 Segment Snapshot (Process Flow & End Use)
2.5 Competitive Landscape Snapshot
Chapter 3 Pharmacovigilance Market Variables, Trends & Scope
3.1 Market Lineage Outlook
3.1.1 Parent Market Analysis
3.1.2 Ancillary Market Analysis
3.2 Penetration & Growth Prospect Mapping
3.3 Pharmacovigilance Market Dynamics
3.3.1 Market Driver Analysis
3.3.1.1 Growing drug consumption and drug development rates
3.3.1.2 Increasing incidence of ADR and drug toxicity
3.3.1.3 Increasing trend of outsourcing pharmacovigilance services
3.3.1.4 Increasing externalization of clinical trial studies by large pharmaceutical and biopharmaceutical companies
3.3.1.5 Increasing regulatory Burden on Manufacturers
3.3.1.6 Introduction of technologically advanced software services
3.3.1.7 Constantly rising investment on R&D by healthcare companies
3.3.1.8 Partnerships and collaborations between market players
3.3.2 Market Restraint Analysis
3.3.2.1 Shortage of skilled labor
3.3.2.2 Expensive technology for small and mid-sized player
3.3.2.3 Lack of recognition
3.3.2.4 Scarcity of integration standards
3.3.3 Industry Challenges
3.4 Pharmacovigilance Market Analysis Tools: Porters
3.5 SWOT Analysis, by Factor (Political & Legal, Economic, and Technological)
3.6 Value Chain Analysis
3.6.1 Preclinical
3.6.2 Clinical
3.6.3 PMA
3.7 Mapping of Life Cycle against Service Offering and Their Demand
3.8 Regulatory Framework
3.8.1 List of Regulatory Bodies by Country
3.9 Organization Structure Introduction
3.10 Pricing Models
3.10.1 Drug Safety Budget Allocation by Activities
3.10.2 By Development Phase
3.10.3 By Therapeutic Area
3.10.4 Pricing Level
3.10.4.1 Project management
3.10.4.2 Case processing
3.10.4.3 ADR Reporting
3.10.4.4 Medical writing
3.10.4.5 Drug safety management
3.11 Technology Timeline Overview
3.11.1 Changing Technology & Adoption
3.11.1.1 Social Media
3.11.1.2 Literature screening
3.11.1.3 Automation and AI
3.11.1.4 Big data analytics in PV
3.12 Impact of COVID-19
3.12.1 Recent Developments & Strategic Outcomes
3.12.1.1 Regulatory requirements/changes due to covid-19
3.12.2 Strategies Implemented by Companies
3.12.2.1 IQVIA
3.12.2.2 PARAXEL International Corporation
3.12.2.3 Bioclinica
3.12.2.4 Pharmaceutical Product Development (PPD)
3.12.2.5 IBM Corporation
3.12.2.6 ICON, plc
3.12.2.7 PRA Health Sciences
3.12.2.8 Covance Inc.
3.12.2.9 ArisGlobal
3.12.2.10 Linical Accelovance
3.12.2.11 Laboratory Corporation of America Holdings
3.13 Market Trends
3.13.1 Scaling Of Resources
3.13.2 Automation in Pharmacovigilance
3.14 Impact of Inflation
3.15 Comparative Analysis between Medical Writing vs Medical Safety Review
3.15.1 Medical Writing Market Outlook, 2022
3.15.1.1 Medical writing Market estimates and forecasts, 2021 - 2033
3.15.2 Medical Safety Review Market Outlook, 2022
3.15.2.1 Medical Safety Review market estimates and forecasts, 2021 - 2033
Chapter 4 Pharmacovigilance Market: Product Life Cycle Estimates & Trend Analysis
4.1 Product Life Cycle Market Share Analysis, 2022 & 2030
4.2 Product Life Cycle Dashboard
4.3 Market definition and scope
4.3.1 Preclinical
4.3.1.1 Preclinical market estimates and forecasts, 2021 - 2033
4.3.2 Phase I
4.3.2.1 Phase I market estimates and forecasts, 2021 - 2033
4.3.3 Phase II
4.3.3.1 Phase II market estimates and forecasts, 2021 - 2033
4.3.4 Phase III
4.3.4.1 Phase III market estimates and forecasts, 2021 - 2033
4.3.5 Phase IV
4.3.5.1 Phase IV market estimates and forecasts, 2021 - 2033
Chapter 5 Pharmacovigilance Market: Service Provider Estimates & Trend Analysis
5.1 Service provider Market Share Analysis, 2024 & 2033
5.2 Service Provider Dashboard
5.3 Market definition and scope
5.3.1 IN HOUSE
5.3.1.1 In house market estimates and forecasts, 2021 - 2033
5.3.2 Contract Outsourcing
5.3.2.1 Contract outsourcing market estimates and forecasts, 2021 - 2033
Chapter 6 Pharmacovigilance Market: Type Estimates & Trend Analysis
6.1 Type Market Share Analysis, 2024 & 2033
6.2 Type Dashboard
6.3 Market definition and scope
6.3.1 Spontaneous Reporting
6.3.1.1 Spontaneous Reporting market estimates and forecasts, 2021 - 2033
6.3.2 Intensified ADR Reporting
6.3.2.1 Intensified ADR Reporting market estimates and forecasts, 2021 - 2033
6.3.3 Targeted Spontaneous Reporting
6.3.3.1 Targeted spontaneous reporting market estimates and forecasts, 2021 - 2033
6.3.4 Cohort Event Monitoring (CEM)
6.3.4.1 CEM market estimates and forecasts, 2021 - 2033
6.3.5 EHR Mining
6.3.5.1 EHR Mining market estimates and forecasts, 2021 - 2033
Chapter 7 Pharmacovigilance Market: Process Flow Estimates & Trend Analysis
7.1 Process Flow Market Share Analysis, 2024 & 2033
7.2 Process Flow Dashboard
7.3 Market definition and scope
7.3.1 Case Data Management
7.3.1.1 Case data management market estimates and forecasts, 2021 - 2033
7.3.1.1.1 Case logging
7.3.1.1.1.1 Case logging market estimates and forecasts, 2021 - 2033
7.3.1.1.2 Case data analysis
7.3.1.1.2.1 Case data analysis market estimates and forecasts, 2021 - 2033
7.3.1.1.3 Medical reviewing and reporting
7.3.1.1.3.1 Medical reviewing and reporting market estimates and forecasts, 2021 - 2033
7.3.2 Signal Detection
7.3.2.1 Signal detection market estimates and forecasts, 2021 - 2033
7.3.2.1.1 Adverse event logging
7.3.2.1.1.1 Adverse Event Logging market estimates and forecasts, 2021 - 2033
7.3.2.1.2 Adverse Event Analysis
7.3.2.1.2.1 Adverse Event Analysis market estimates and forecasts, 2021 - 2033
7.3.2.1.3 Adverse Event Review & Reporting
7.3.2.1.3.1 Adverse Event Review & Reporting market estimates and forecasts, 2021 - 2033
7.3.3 Risk Management System
7.3.3.1 Risk Management System market estimates and forecasts, 2021 - 2033
7.3.3.1.1 Risk Evaluation System
7.3.3.1.1.1 Risk Evaluation System market estimates and forecasts, 2021 - 2033
7.3.3.1.2 Risk Mitigation System
7.3.2.1.2.1 Risk Mitigation System market estimates and forecasts, 2021 - 2033
Chapter 8 Pharmacovigilance Market: Therapeutic Area Estimates & Trend Analysis
8.1 Therapeutic Area Market Share Analysis, 2024 & 2033
8.2 Therapeutic Area Dashboard
8.3 Market definition and scope
8.3.1 Oncology
8.3.1.1 Oncology market estimates and forecasts, 2021 - 2033
8.3.2 Neurology
8.3.2.1 Neurology market estimates and forecasts, 2021 - 2033
8.3.3 Cardiology
8.3.3.1 Cardiology market estimates and forecasts, 2021 - 2033
8.3.4 Respiratory Systems
8.3.4.1 Respiratory systems market estimates and forecasts, 2021 - 2033
8.3.5 Others
8.3.5.1 Others market estimates and forecasts, 2021 - 2033
Chapter 9 Pharmacovigilance Market: End Use Estimates & Trend Analysis
9.1 End Use Market Share Analysis, 2024 & 2033
9.2 End Use Dashboard
9.3 Market definition and scope
9.3.1 Pharmaceuticals
9.3.1.1 Pharmaceuticals market estimates and forecasts, 2021 - 2033
9.3.2 Biotechnology Companies
9.3.2.1 Biotechnology companies market estimates and forecasts, 2021 - 2033
9.3.3 Medical Device Manufacturers
9.3.3.1 Medical Device Manufacturers market estimates and forecasts, 2021 - 2033
9.3.4 Others
9.3.4.1 Others market estimates and forecasts, 2021 - 2033
Chapter 10 Pharmacovigilance Market: Regional Estimates & Trend Analysis, By, Product, Service Providers, Type, and End Use
10.1 Regional Market Snapshot
10.2 North America
10.2.1 North America Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.2.2 U.S.
10.2.2.1 U.S. Pharmacovigilance market estimates and forecasts, 2021 - 2033
10.2.2.2 Competitive scenario
10.2.2.3 Regulatory Framework
10.2.3 Canada
10.2.3.1 Canada Pharmacovigilance market estimates and Forecasts, 2021 - 2033
10.2.3.2 Competitive scenario
10.2.3.3 Regulatory Framework
10.3 Europe
10.3.1 Europe Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.3.2 UK
10.3.2.1 UK Pharmacovigilance market estimates and Forecasts, 2021 - 2033
10.3.2.2 Competitive scenario
10.3.2.3 Regulatory Framework
10.3.3 Germany
10.3.3.1 Germany Pharmacovigilance market estimates and forecasts, 2018 - 2030 (USD Million
10.3.3.2 Competitive scenario
10.3.3.3 Regulatory Framework
10.3.4 France
10.3.4.1 France Pharmacovigilance market estimates and forecasts, 2021 - 2033
10.3.4.2 Competitive scenario
10.3.4.3 Regulatory Framework
10.3.5 Italy
10.3.5.1 Italy Pharmacovigilance market estimates and forecasts, 2021 - 2033
10.3.5.2 Competitive scenario
10.3.5.3 Regulatory Framework
10.3.6 Spain
10.3.6.1 Spain pharmacovigilance market estimates and forecasts, 2021 - 2033
10.3.6.2 Competitive scenario
10.3.6.3 Regulatory Framework
10.3.7 Russia
10.3.7.1 Russia Pharmacovigilance market estimates and forecasts, 2021 - 2033
10.3.7.2 Competitive scenario
10.3.7.3 Regulatory Framework
10.3.8 Denmark
10.3.8.1 Denmark Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.3.8.2 Competitive scenario
10.3.8.3 Regulatory Framework
10.3.9 Norway
10.3.9.1 Norway Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.3.9.2 Competitive scenario
10.3.9.3 Regulatory Framework
10.3.10 Sweden
10.3.10.1 Sweden Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.3.10.2 Competitive scenario
10.3.10.3 Regulatory Framework
10.4 Asia Pacific
10.4.1 Asia Pacific Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.4.2 JAPAN
10.4.2.1 Japan Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.4.2.2 Competitive scenario
10.4.2.3 Regulatory Framework
10.4.3 CHINA
10.4.3.1 China Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.4.3.2 Competitive Scenario
10.4.3.3 Regulatory Framework
10.4.4 India
10.4.4.1 India Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.4.4.2 Competitive Scenario
10.4.4.3 Regulatory Framework
10.4.5 Australia
10.4.5.1 Australia Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.4.5.2 Competitive Scenario
10.4.5.3 Regulatory Framework
10.4.6 Thailand
10.4.6.1 Thailand Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.4.6.2 Competitive Scenario
10.4.6.3 Regulatory Framework
10.4.7 South Korea
10.4.7.1 South Korea Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.4.7.2 Competitive Scenario
10.4.7.3 Regulatory Framework
10.5 Latin America
10.5.1 Latin America Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.5.2 Brazil
10.5.2.1 Brazil Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.5.2.2 Competitive Scenario
10.5.2.3 Regulatory Framework
10.5.3 Mexico
10.5.3.1 Mexico Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.5.3.2 Competitive Scenario
10.5.3.3 Regulatory Framework
10.5.4 Argentina
10.5.4.1 Argentina Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.5.4.2 Competitive Scenario
10.5.4.3 Regulatory Framework
10.6 MEA
10.6.1 MEA Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.6.2 South Africa
10.6.2.1 South Africa Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.6.2.2 Competitive Scenario
10.6.2.3 Regulatory Framework
10.6.3 Saudi Arabia
10.6.3.1 Saudi Arabia Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.6.3.2 Competitive Scenario
10.6.3.3 Regulatory Framework
10.6.4 UAE
10.6.4.1 UAE Arabia Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.6.4.2 Competitive Scenario
10.6.4.3 Regulatory Framework
10.6.5 Kuwait
10.6.5.1 Kuwait Pharmacovigilance Market Estimates and Forecasts, 2021 - 2033
10.6.5.2 Competitive Scenario
10.6.5.3 Regulatory Framework
Chapter 11 Pharmacovigilance Market: Competitive Analysis
11.1 Market Participation Categorization
11.2 Public Companies
11.2.1 Company Market Position Analysis
11.2.2 Company Market Share
11.3 Private Companies
11.3.1 List of Key Emerging Companies
11.4 Competitive Factors and Strategies
11.4.1 Increasing strategic collaborations and product launch
11.4.2 Strategic Government initiatives which include collaborations
11.4.3 Competitors increased PV awareness program
11.4.4 Competitors increased collaboration and outsourcing of operations
11.4.5 Consolidation Trends
11.5 Healthcare Companies Using Pharmacovigilance Services
11.5.1 Potential Customers
11.5.2 Notable Cases
11.5.2.1 Case Study 1
11.5.2.1.1 Case Study 1
11.5.3.1.2 Case Study 2
11.5.2.2 Case Study 2
11.5.2.3 Case Study 3
11.5.3.4 Case Study 4
11.5.3 Key Focus areas for the pharmaceutical/healthcare companies
11.5.3.1 Adoption of technological advancements in life sciences industry
11.5.3.2 Published survey insights - related to adoption of pharmacovigilance automation
Chapter 12 Competitive Landscape
12.1 Company Profiles
12.1.1 ACCENTURE
12.1.1.1 Company overview
12.1.1.2 Service benchmarking
12.1.1.3 Financial performance
12.1.1.4 Strategic initiatives
12.1.1.5 SWOT Analysis
12.1.2 CLINQUEST GROUP B.V. (LINICAL AMERICAS)
12.1.2.1 Company overview
12.1.2.2 Service benchmarking
12.1.2.3 Financial performance
12.1.2.4 Strategic initiatives
12.1.2.5 SWOT Analysis
12.1.3 IQVIA Inc.
12.1.3.1 Company overview
12.1.3.2 Service benchmarking
12.1.3.3 Financial performance
12.1.3.4 Strategic initiatives
12.1.3.5 SWOT Analysis
12.1.4 COGNIZANT
12.1.4.1 Company overview
12.1.4.2 Service benchmarking
12.1.4.3 Financial performance
12.1.4.4 Strategic initiatives
12.1.4.5 SWOT Analysis
12.1.5 LABORATORY CORPORATION OF AMERICA HOLDINGS
12.1.5.1 Company overview
12.1.5.2 Service benchmarking
12.1.5.3 Financial performance
12.1.5.4 Strategic initiatives
12.1.5.5 SWOT Analysis
12.1.6 IBM
12.1.6.1 Company overview
12.1.6.2 Service benchmarking
12.1.6.3 Financial performance
12.1.6.4 Strategic initiatives
12.1.6.5 SWOT Analysis
12.1.7 ARISGLOBAL
12.1.7.1 Company Overview
12.1.7.2 Service Benchmarking
12.1.7.3 Financial Performance
12.1.7.4 Strategic Initiatives
12.1.7.5 SWOT Analysis
12.1.8 ICON PLC.
12.1.8.1 Company Overview
12.1.8.2 Service Benchmarking
12.1.8.3 Financial Performance
12.1.8.4 Strategic Initiatives
12.1.8.5 SWOT Analysis
12.1.9 CAPGEMINI
12.1.9.1 Company Overview
12.1.9.2 Service Benchmarking
12.1.9.3 Financial Performance
12.1.9.4 Strategic Initiatives
12.1.9.5 SWOT Analysis
12.1.10 ITCLINICAL
12.1.10.1 Company Overview
12.1.10.2 Service Benchmarking
12.1.10.3 Financial Performance
12.1.10.4 Strategic Initiatives
12.1.10.5 SWOT Analysis
12.1.11 TAKE SOLUTIONS LIMITED
12.1.11.1 Company Overview
12.1.11.2 Service Benchmarking
12.1.11.3 Financial Performance
12.1.11.4 Strategic Initiatives
12.1.11.5 SWOT Analysis
12.1.12 PAREXEL INTERNATIONAL CORPORATION.
12.1.12.1 Company Overview
12.1.12.2 Service Benchmarking
12.1.12.3 Financial Performance
12.1.12.4 Strategic Initiatives
12.1.12.5 SWOT Analysis
12.1.13 BIOCLINICA, INC.
12.1.13.1 Company overview
12.1.13.2 Service benchmarking
12.1.13.3 Financial performance
12.1.13.4 Strategic initiatives
12.1.13.5 SWOT Analysis
12.1.14 WIPRO
12.1.14.1 Company Overview
12.1.14.2 Service Benchmarking
12.1.14.3 Financial Performance
12.1.14.4 Strategic Initiatives
12.1.14.5 SWOT Analysis
12.1.15 UNITED BIOSOURCE LLC
12.1.15.1 Company Overview
12.1.15.2 Service Benchmarking
12.1.15.3 Financial Performance
12.1.15.4 Strategic initiatives
12.1.15.5 SWOT Analysis
12.1.16 FMD K&L (CLINCHOICE)
12.1.16.1 Company Overview
12.1.16.2 Service Benchmarking
12.1.16.3 Financial performance
12.1.16.4 Strategic initiatives
12.1.16.5 SWOT Analysis
Chapter 13 Winning Strategies
13.1 Key Winning/Scoring Criteria
13.1.1 By Categories
13.1.1.1 Pharmaceuticals
13.1.1.2 Biotech companies
13.1.1.3 Medical device companies
13.2 Key Vendor Selection Factors
13.2.1 By Category
13.2.2 By Company Size
13.2.2.1 Key Takeaways
Chapter 14 Switching Cost Analysis
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