SHARE launched a study titled “Global Wound Care Biologics Market by Product (Biological Skin Substitutes, Topical Agents), Wound Type (Ulcer, Surgical & Traumatic Wound, Burns), End User (Hospitals, Ambulatory Surgical Centers, Burn Centers, Wound Clinics), Region (North America, Europe, Asia Pacific, South America and Middle East and Africa)” and Global Forecast 2018-2025.

The global wound care biologics market is expected to grow from USD 1.92 billion in 2017 to USD 4.21 billion by 2025 at a CAGR of 10.28% during the forecast period from 2018-2025. 

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Market Overview:

The pharmaceutical robots are the automated machines that are used to provide reliably for performing pharmaceutical tasks. These robots are developed for the assisting drug manufacturers to help them in various tasks such as transfer & package materials. The pharmaceutical robots can be utilized to gather and bundle a plenty of medicinal drugs and sent them to drug stores. For instance, in 2017, UAE has launched its robot pharmacy. These robots can store up to 35,000 medicines as well as can dispense up to 12 prescriptions in less than a minute. The interest for advanced robots has made various pharmaceutical organizations to develop new and productive methods for improving their pharmaceutical business. This robots has reduced human labour that further helped in reducing the cost of drugs.

Report Description:

  • The base year for the study has been considered 2017, historic year 2015 and 2016 and, the forecast period considered is from 2018 to 2025. The pharmaceutical robots market is analysed on the basis of technological roadmap.
  • The pharmaceutical robots market is analysed on the basis of Volume (Thousand Units) and value (USD Million).
  • The report provides the key data of pricing analysis, industry developments, and industry cost structure in order to understand the present and future scenario of the market.
  • The study delivers a comprehensive analysis of global pharmaceutical robots market by type, application, and regions.
  • The report offers in-depth analysis of driving factors, opportunities, restraints, and challenges for gaining the key insight of the market. The report emphasizes on all the key trends that play a vital role in the enlargement of the market from 2018 to 2025.
  • Porter’s Five Forces model is used in order to recognize the competitive scenario in the global pharmaceutical robots market. This report incorporates the industry analysis which is focused on providing an extensive view of the pharmaceutical robots market.
  • The study also includes attractiveness analysis of type, application, and regions which are benchmarked based on their market size, growth rate and attractiveness in terms of present and future opportunity for understanding the future growth of the market.
  • The report provides company profile of the key players operating in the pharmaceutical robots market and a comparative analysis based on their business overviews, product offering, segment market share, regional presence, business strategies, innovations, mergers & acquisitions, recent developments, joint venture, collaborations, partnerships, SWOT analysis, and key financial information.
  • The market estimates have been evaluated by considering the effect of different political, economic, social, technological and legal factors which are based on our extensive secondary research, primary research, and in-house databases.

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Regional Segmentation Analysis:
The market is analysed on the basis of five regions namely North America, Europe, Asia Pacific, South America, and Middle East and Africa. North America held the largest market share of approximately 30% in 2017. The presence of major players, high prevalence of ulcers wound people, and the technological advancements were some of the factors that led to the growth of wound care biologics market in this region.

Competitive Analysis:
The major players for wound care biologics market include Mölnlycke Health Care AB, Solsys Medical, Lavior Inc., Marine Polymer Technologies, Integra LifeSciences Corporation, Wright Medical, Smith & Nephew, MiMedx Group, Vericel Corporation, Organogenesis, Kerecis, Anika Therapeutics, ACell, and among others.

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