{"version":"https://jsonfeed.org/version/1","title":"SunsNova - Discovering the Possibilities","home_page_url":"https://sunsnova.com","description":"SunsNova - Discovering the Possibilities","author":{"name":"SunsNova - Discovering the Possibilities"},"items":[{"id":"https://sunsnova.com/knowledge-base/f/organ-on-a-chip-is-transforming-preclinical-drug-development","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/Linked-Organ-Chips-Cover_H.webp\"/><p>The journey from drug discovery to market approval is long, expensive, and filled with uncertainty. On average, it takes more than a decade and billions of dollars to bring a new therapeutic to patients, yet nearly 90% o...</p>","url":"https://sunsnova.com/knowledge-base/f/organ-on-a-chip-is-transforming-preclinical-drug-development","title":"Organ-on-a-Chip Is Transforming Preclinical Drug Development","summary":"The journey from drug discovery to market approval is long, expensive, and filled with uncertainty. On average, it takes more than a decade and billions of dollars to bring a new therapeutic to patients, yet nearly 90% o...","date_modified":"2026-07-27T04:03:27Z"},{"id":"https://sunsnova.com/knowledge-base/f/skin-on-a-chip-sets-a-new-approach-methodology-for-cosmetic-testi","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/27460678507_b84884156c_k-e1673367191693.jpg\"/><p>Over the past few years, several advances have been made toward the development and production of in vitro human skin models for the analysis and testing of cosmetic. However, these skin models are cultured under static ...</p>","url":"https://sunsnova.com/knowledge-base/f/skin-on-a-chip-sets-a-new-approach-methodology-for-cosmetic-testi","title":"Skin-on-a-Chip: A New Approach Methodology for Cosmetic Testing","summary":"Over the past few years, several advances have been made toward the development and production of in vitro human skin models for the analysis and testing of cosmetic. However, these skin models are cultured under static ...","date_modified":"2026-07-13T17:18:07Z"},{"id":"https://sunsnova.com/knowledge-base/f/advanced-biomaterials-are-expanding-applications-of-bioprinting","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/iStock-1206633490.webp\"/><p>The rapid advancement of 3D bioprinting has transformed tissue engineering, drug screening and disease modeling. The key to achieve the desired structural and functional architecture depends on performance of the biomate...</p>","url":"https://sunsnova.com/knowledge-base/f/advanced-biomaterials-are-expanding-applications-of-bioprinting","title":"Advanced Biomaterials are Expanding Applications of Bioprinting","summary":"The rapid advancement of 3D bioprinting has transformed tissue engineering, drug screening and disease modeling. The key to achieve the desired structural and functional architecture depends on performance of the biomate...","date_modified":"2026-07-05T06:08:56Z"},{"id":"https://sunsnova.com/knowledge-base/f/microfluidics-a-chip-advancing-life-science-healthcare","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/microfluidics-biology-s-liquid-revolution-800x.png\"/><p>In modern life science research and healthcare, innovation often comes from making technologies smaller, faster, and more precise. One such breakthrough is microfluidics - a chip-based technology that manipulates tiny vo...</p>","url":"https://sunsnova.com/knowledge-base/f/microfluidics-a-chip-advancing-life-science-healthcare","title":"Microfluidics, A Chip Transforming Life Science & Healthcare","summary":"In modern life science research and healthcare, innovation often comes from making technologies smaller, faster, and more precise. One such breakthrough is microfluidics - a chip-based technology that manipulates tiny vo...","date_modified":"2026-06-21T06:24:05Z"},{"id":"https://sunsnova.com/knowledge-base/f/bioprinting-is-driving-the-transition-toward-animal-free-research","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/istockphoto-1411225550-612x612.jpg\"/><p>For decades, animal models have been a cornerstone of biomedical research and drug development. While they have contributed significantly to scientific advancement, growing ethical concerns, high costs, lengthy testing t...</p>","url":"https://sunsnova.com/knowledge-base/f/bioprinting-is-driving-the-transition-toward-animal-free-research","title":"Bioprinting is Driving the Transition Toward Animal-Free Research","summary":"For decades, animal models have been a cornerstone of biomedical research and drug development. While they have contributed significantly to scientific advancement, growing ethical concerns, high costs, lengthy testing t...","date_modified":"2026-06-18T07:00:50Z"},{"id":"https://sunsnova.com/knowledge-base/f/why-gelma-is-the-most-commonly-used-biomaterial-in-bioprinting","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/Picture1-47cd9d9.png\"/><p>One of the most frequently used bioinks in modern bioprinting is GelMA (Gelatin Methacryloyl). Derived from denatured collagen, GelMA combines the natural bioactivity with tunable mechanical properties, making it an idea...</p>","url":"https://sunsnova.com/knowledge-base/f/why-gelma-is-the-most-commonly-used-biomaterial-in-bioprinting","title":"Why GelMA is the Most Commonly Used Biomaterial in Bioprinting?","summary":"One of the most frequently used bioinks in modern bioprinting is GelMA (Gelatin Methacryloyl). Derived from denatured collagen, GelMA combines the natural bioactivity with tunable mechanical properties, making it an idea...","date_modified":"2026-06-14T16:04:35Z"},{"id":"https://sunsnova.com/knowledge-base/f/light-vs-extrusion-bioprinters","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/Weixin%20Image_20260614204744_2_8.png\"/><p>At the heart of the bioprinting innovation lies a critical choice: light-based vs. extrusion-based bioprinting. Understanding the fundamental differences between these two methodologies isn’t just a technical detail - it...</p>","url":"https://sunsnova.com/knowledge-base/f/light-vs-extrusion-bioprinters","title":"Discover the Right Tool: Extrusion- Vs. Light-based Bioprinting","summary":"At the heart of the bioprinting innovation lies a critical choice: light-based vs. extrusion-based bioprinting. Understanding the fundamental differences between these two methodologies isn’t just a technical detail - it...","date_modified":"2026-06-14T02:57:26Z"},{"id":"https://sunsnova.com/knowledge-base/f/innovating-biotech-with-3d-printing","html_content":"<img src=\"https://img1.wsimg.com/isteam/ip/020dfc74-bbd3-4a06-8f5d-cf6daca918a0/Picture1-33e0364.png\"/><p>\"What if we could print human tissue as easy as the way we print paperworks? That's the reality bioprinting is making.\"</p>","url":"https://sunsnova.com/knowledge-base/f/innovating-biotech-with-3d-printing","title":"How Bioprinting is Advancing Scientific Research and Healthcare","summary":"\"What if we could print human tissue as easy as the way we print paperworks? That's the reality bioprinting is making.\"","date_modified":"2026-05-28T02:17:42Z"}]}