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SMALL MOLECULE ANTI-INFECTIVE DRUG MARKET ANALYSIS

Small Molecule Anti-Infective Drug Market, by Product Type (Antibiotics (B Lactam, Quinolones, Macrolides, Tetracyclines, Aminoglycosides, Sulphonamides, and Others), Antifungal ( Azoles, Echinocandins, Polyenes, and Others), Antivirals (Nucleoside Reverse Transcriptase Inhibitors, Non-nucleoside Reverse Transcriptase Inhibitors, and Others), and Others (Anthelminthic and Antiprotozoal), by Indication (Pneumonia, MRSA Infections, MSSA Infections, Sinusitis, Tuberculosis, Dermatophytosis, Aspergillosis, Candidiasis, Hepatitis, HIV Infection, Respiratory Tract Infection, Urinary Tract Infection, and Others), by Distribution Channels (Hospital Pharmacies, Retail Pharmacies, and Online Pharmacies), and by Region (North America, Europe, Asia Pacific, Latin America, Middle East, and Africa) - Global Industry Insights, Trends, Outlook, and Opportunity Analysis, 2022-2028

  • To Be Published : Nov 2024
  • Code : CMI2655
  • Formats :
      Excel and PDF
  • Industry : Pharmaceutical

Regional Analysis

Small Molecule Anti-infective Drug Market Regional Analysis

On the basis of region, the global small molecule anti-infective drug market is segmented into North America, Latin America, Europe, Asia Pacific, Middle East, and Africa.

North America is expected to hold dominant position in the small molecule anti-infective drugs market, owing to new product launches of small molecule anti-infective drugs. For instance, in November 2018, Xellia Pharmaceuticals launched its new product, Vancomycine Hydrochloride for injection, in the U.S market.

Furthermore, Asia Pacific is also projected to witness significant growth in the global small molecule anti-infective drugs market, owing to increasing collaboration activities among key players. For instance, in April 2018, Entasis Therapeutics Holdings Inc. collaborated with the Zai Lab Limited. This collaboration facilitated phase III clinical trial for a fixed-dose combination of ETX2514 and sulbactam. This combination is intended for the treatment of multidrug-resistant infections caused by Acinetobacter baumannii bacteria. The study started in April 2019 and is expected to complete in July 2020.

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