Organix (pectin/menthol)
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August 24, 2026
Llamol: A dynamic multi-conditional generative transformer for de novo molecular design
(ACS-Fall 2026)
- "We present Llamol, a generative transformer model based on the Llama 2 architecture, trained on OrganiX13—a diverse dataset of 12.5 million organic compounds compiled from multiple public sources...These advances include the expansion toward transition metal complexes, significantly broadening the model's applicability to domains such as electrolyte design, catalysis, and coordination chemistry. The flexibility of SCL combined with these enhancements positions Llamol as a versatile and powerful tool for molecular discovery across diverse application areas, including the development of electro-active compounds for aqueous flow battery systems."
September 30, 2025
IL-17A-driven stromal-immune crosstalk in human vascularized 3D pancreatic cancer models reveals microenvironment reprogramming
(CICON 2025)
- "Functional validation of transcriptomic signatures was supported by proteomic data aligning with transcriptomic findings, flow cytometry-based phenotyping, and 3D assays in OrganiX microfluidic platform, which enable the generation of perfusable vascularized microtumors showing enhanced EC infiltration and increased cancer cell invasion in the four-cell condition...Cytokine analysis from vascularized four-cell PDAC microtumors further revealed that IL-17A inhibition in the presence of T cells shifted the cytokine milieu toward an anti-tumorigenic profile. Our integrated approach demonstrates that targeting stromal-immune crosstalk, particularly via IL-17A, reprograms the PDAC microenvironment and could synergize with immunotherapy, providing a preclinical framework for advancing TME-targeting strategies in pancreatic cancer."
IO biomarker • Preclinical • Stroma • Fibrosis • Immunology • Oncology • Pancreatic Cancer • Pancreatic Ductal Adenocarcinoma • Solid Tumor • CAFs • IL17A
February 28, 2024
The OrganiX microfluidic system to recreate the complex tumour microenvironment.
(PubMed, Nat Rev Immunol)
- No abstract available
Journal • Tumor microenvironment • Oncology
July 26, 2023
"Tech alert: #OrganixInc has renovated, revamped and reinvigorated our laboratory by upgrading to a 400 MHz @Jeol #NMR and new @Agilent systems including a #UHPLC-CAD for elevated client services and expanded capabilities. Like and follow https://t.co/PAsN9kyk0V"
(,@OrganixCRO)
May 27, 2023
Long-Lasting Electret Melt-Blown Nonwoven Functional Filters Made of Organic/Inorganixc Macromolecular Micron Materials: Manufacturing Techniques and Property Evaluations.
(PubMed, Polymers (Basel))
- "Finally, the scanning electron microscopy (SEM) observation suggests that with a spinning die temperature of 240 °C and a spinning die pressure lower than 0.01 MPa, the compound pellets can be successfully formed into melt-blown nonwoven fabrics with a 10-micrometer diameter. The proposed melt-blown nonwoven fabrics can be processed with electret to form long-lasting electret melt-blown nonwoven filters."
Journal
October 14, 2022
"@col_x3q6 @K9xOrganix @VJHemOnc @airdropcuhoca @fammarrnft @Aziz_eth @elchopo35z"
(,@IRemmahyc)
July 11, 2022
"A huge thank our #MALSI22 sponsors! @novonordisk, @MassBio, @burnslev, #McDermottWillandEmery, @troutmanpepper, @LabShares, @RegDocs365, #Organix, @JNJNews, and #MassachusettsLifeSciencesCenter. ✅ RSVP 👉 https://t.co/KD3ryRGqam #LifeScience"
(,@My_InnoStudio)
April 27, 2022
"#Symeres acquires Massachusetts-based #Organix adding lipids expertise and creating a strategic foothold in the US market https://t.co/dmezIyW0l9"
(,@1stOncology)
November 29, 2019
Sampling and degradation of biodegradable plastic and paper mulches in field after tillage incorporation.
(PubMed, Sci Total Environ)
- "2, we applied and tilled four plastic BDMs: BioAgri, Naturecycle, Organix AG, and an experimental mulch; and one paper mulch, WeedGuardPlus, in their respective plots for four consecutive years...The results show that the quartering method reliably estimates the amount of mulch in a field and BDMs degrade over time in the field even with repeated applications, but complete degradation takes >1 year. While a few standards (e.g., ASTM D5988) specify how to determine biodegradation of plastics in soil under controlled laboratory conditions, our sampling method assesses plastic degradation under diverse field conditions."
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