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Who are the leading innovators in miRNA modulation for the pharmaceutical industry?


However, not all innovations are equal and nor do they follow a constant upward trend. Instead, their evolution takes the form of an S-shaped curve that reflects their typical lifecycle from early emergence to accelerating adoption, before finally stabilizing and reaching maturity.

Identifying where a particular innovation is on this journey, especially those that are in the emerging and accelerating stages, is essential for understanding their current level of adoption and the likely future trajectory and impact they will have.

80+ innovations will shape the pharmaceutical industry

According to GlobalData’s Technology Foresights, which plots the S-curve for the pharmaceutical industry using innovation intensity models built on over 668,000 patents, there are 80+ innovation areas that will shape the future of the industry.

Within the emerging innovation stage, engineered multi-specific antibodies, tyrosine kinase inhibitors, and mutant DNA polymerases are disruptive technologies that are in the early stages of application and should be tracked closely. Phenotypic drug screening, antibody-drug conjugates, and polysaccharide-protein conjugate vaccines are some of the accelerating innovation areas, where adoption has been steadily increasing. Among maturing innovation areas are drug delivery nanoparticles and antibody encoding polynucleotide libraries, which are now well established in the industry.

Innovation S-curve for the pharmaceutical industry

miRNA modulation is a key innovation area in the pharmaceutical industry

miRNA modulation refers to the process of regulating the expression of specific mRNA targets through the use of microRNAs (miRNAs). These short non-coding RNAs bind to specific sequences on target messenger RNAs, leading to their degradation or inhibition of translation. The process has significant implications for gene regulation, and its manipulation may lead to the development of new therapeutic strategies for various diseases.

GlobalData’s analysis also uncovers the companies at the forefront of each innovation area and assesses the potential reach and impact of their patenting activity across different applications and geographies. According to GlobalData, there are 100+ companies, spanning technology vendors, established pharmaceutical companies, and up-and-coming start-ups engaged in the development and application of miRNA modulation.

Key players in miRNA modulation – a disruptive innovation in the pharmaceutical industry

‘Application diversity’ measures the number of applications identified for each patent. It broadly splits companies into either ‘niche’ or ‘diversified’ innovators.   

‘Geographic reach’ refers to the number of countries each patent is registered in. It reflects the breadth of geographic application intended, ranging from ‘global’ to ‘local’.  

Patent volumes related to miRNA modulation

Source: GlobalData Patent Analytics

Alnylam Pharmaceuticals is one of the leading patent filers in miRNA modulation. The company is a pioneer in developing medicines based on RNA interference (RNAi). The company’s lead assets include patisiran, vutrisiran, inclisiran and lumasiran, which are being developed for various genetic and cardio-metabolic diseases. The company is also developing drugs for other therapy areas in various clinical stages of development.

In terms of application diversity, Velin-Pharma leads the pack, while Ansun Biopharma and Biocant stood in the second and third positions, respectively. By means of geographic reach, Soluventis Nanotherapeutics held the top position, followed by Wave Life Sciences and Yuhan.

To further understand the key themes and technologies disrupting the pharmaceutical industry, access GlobalData’s latest thematic research report on Pharmaceutical.

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GlobalData

GlobalData, the leading provider of industry intelligence, provided the underlying data, research, and analysis used to produce this article.

GlobalData’s Patent Analytics tracks patent filings and grants from official offices around the world. Textual analysis and official patent classifications are used to group patents into key thematic areas and link them to specific companies across the world’s largest industries.




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