Results 81 to 90 of about 12,321 (161)
Regulation Mechanism of MYC Family Transcription Factors in Jasmonic Acid Signalling Pathway on Taxol Biosynthesis [PDF]
Paclitaxel is an important anticancer drug. The phytohormone jasmonic acid can significantly induce the biosynthesis of paclitaxel in Taxus, but the molecular mechanism has not yet been resolved. To establish the jasmonic acid signalling pathway of Taxus
Jing Chen +3 more
core +1 more source
The Dual Role of the Gut Microbiota in Cancer Chemoresistance
Comparison between Microbiota and Cancer therapy. ABSTRACT Chemoresistance is one of the primary reasons that cancer chemotherapy fails to deliver successful treatment outcomes and contributes to poor overall survival rates for patients with cancer. New research has begun to shed light on the effects of the gut microbiome (GM).
Hamed Tahmasebi +3 more
wiley +1 more source
Identification and characterization of key regulators of Paclitaxel Biosynthesis in Taxus cuspidata [PDF]
Numerous drugs in the current pharmacopoeia originate from plant sources. Plant cell culture represents an alternative source for producing high-value secondary metabolites including paclitaxel.
Amir, Rabia
core
Metabolic Regulation of Macrophages in Health and Disease
Extracellular metabolites drive metabolic rewiring of glucose, lipid, and amino acid pathways in macrophages, steering their polarization toward pro‐ or anti‐inflammatory phenotypes and shaping a wide range of disease processes. Macrophages from different tissues display distinct metabolic signatures, and therapeutic strategies that target these ...
Shan Huang +6 more
wiley +1 more source
Glucose Transporter 1 in Health and Disease
As the quintessential facilitator of basal glucose uptake, glucose transporter 1 (GLUT1) is indispensable for maintaining systemic energy homeostasis. This graphical abstract delineates the multidimensional landscape of GLUT1 in normal physiology. It highlights its tissue‐specific metabolic roles—from fueling erythrocytes and fetal development to ...
Yi Tai +3 more
wiley +1 more source
Abstract Using the in vitro culture system along with related strategies is one of the most promising sources to improve the production of antitumorous agent paclitaxel and other valuable bioactive metabolites. To the best of our knowledge, hazel is the only angiosperm plant that has the capacity to produce paclitaxel and other taxanes. In this
Razieh Adabi, Ayatollah Rezaei
openaire +1 more source
Deciphering the Functional Mechanisms of eIF3f in Tumors and Exploring Targeted Therapies
ABSTRACT Eukaryotic translation initiation factor 3 subunit F (eIF3f) is a critical component of the eIF3 complex and plays a pivotal role in diverse biological processes, including cell proliferation, apoptosis, adhesion, and transcriptional regulation.
Yujinpeng Hao +3 more
wiley +1 more source
This review presents a systems‐oriented roadmap for integrating artificial intelligence into medicinal plant drug discovery to overcome persistent bottlenecks like extract complexity. It highlights that advancing toward reproducible therapeutics requires making phytochemical datasets AI‐ready via rigorous harmonization and phyto‐centric foundational ...
Amit Gangwal +5 more
wiley +1 more source
Novel Systems for the Functional Characterization of Genes Related to Paclitaxel Metabolism in Taxus Cell Cultures [PDF]
Human society has benefited greatly from plant secondary metabolites, often utilizing a variety of compounds as dyes, food additives, and drugs. In particular, pharmaceutical development has benefited greatly from plant secondary metabolites. One example
Vongpaseuth, Khamkeo
core +1 more source
Proposed model of TAC1‐mediated leaf angle regulation in tobacco. ABSTRACT Plant architecture is key to crop yield, with leaf angle being critical for high‐density cultivation. Although TAC1 represents a promising regulator of leaf angle for breeding, its molecular mechanism remains poorly understood, particularly at single‐nucleus resolution. Here, we
Lin Wang +11 more
wiley +1 more source

