Kanagawa, Japan

Nanami Hashikura

USPTO Granted Patents = 2 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2022-2024

where 'Filed Patents' based on already Granted Patents

2 patents (USPTO):

Title: Innovator Spotlight: Nanami Hashikura from Kanagawa, Japan

Introduction: Nanami Hashikura is a prominent inventor based in Kanagawa, Japan, known for her significant contributions to microbiology and biochemical research. With a focus on innovative bacterial applications, she has secured two patents that showcase her expertise in developing novel solutions for peptide decomposition.

Latest Patents: Hashikura's latest patents revolve around a unique strain of bifidobacterium that exhibits opioid peptide decomposition action and non-collagenous glycoprotein decomposition action. These patents detail her work on specific bacteria strains, including MCC1092 (NITE BP-02429), MCC1319 (NITE BP-02431), MCC1868 (NITE BP-02432), MCC1870 (NITE BP-02433), and subsp. MCC1110 (NITE BP-02430). The inventions include compositions that utilize these bacteria as active ingredients for decomposing opioid peptides and non-collagenous glycoproteins, demonstrating significant potential in medical and biotechnological applications.

Career Highlights: Nanami Hashikura is currently employed at Morinaga Milk Industry Co., Ltd., where she leverages her expertise in microbiology to drive innovation. Her work has not only advanced the understanding of bacterial action but has also contributed to practical applications in health and nutrition.

Collaborations: Throughout her career, Hashikura has collaborated with esteemed colleagues such as Takuma Sakurai and Kanetada Shimizu, contributing to a dynamic research environment that fosters innovation and creativity in their field.

Conclusion: Nanami Hashikura's work exemplifies the spirit of innovation and discovery in modern science. Her patents reflect a commitment to advancing our understanding of microbiology and its applications, making significant contributions to both academia and industry. As she continues to develop her research, her impact on the scientific community is expected to grow even further.

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