keyword
https://read.qxmd.com/read/38577616/glucose-metabolism-reprogramming-in-gynecologic-malignant-tumors
#21
REVIEW
Jianhong Ma, Zhiqiang Yao, Liangjian Ma, Qinyin Zhu, Jiajia Zhang, Ling Li, Chang Liu
The incidence and mortality of gynecological tumors are progressively increasing due to factors such as obesity, viral infection, unhealthy habits, as well as social and economic pressures. Consequently, it has emerged as a significant threat to women's health. Numerous studies have revealed the remarkable metabolic activity of tumor cells in glycolysis and its ability to influence malignant biological behavior through specific mechanisms. Therefore, it is crucial for patients and gynecologists to comprehend the role of glycolytic proteins, regulatory molecules, and signaling pathways in tumorigenesis, progression, and treatment...
2024: Journal of Cancer
https://read.qxmd.com/read/38572063/the-expression-of-trefoil-factor-family-member-2-in-increased-at-an-acidic-ph
#22
JOURNAL ARTICLE
Yui Masumoto, Suzuka Matsuo, Natsuno Kinjou, Yuka Narieda, Morimasa Wada, Kyoko Fujimoto
Trefoil factor family member 2 ( Tff2 ) is significantly involved in intestinal tumor growth in Apc Min/+ mice, which can be used as a human colon cancer model. TFF2 , which encodes TFF2 (spasmolytic protein 1) is highly expressed in human cancer tissues, including the pancreas, colon and bile ducts, as well as in normal gastric and duodenum tissues. By contrast, TFF2 exhibits low expression levels in other normal tissues, including the small and large intestine. Furthermore, TFF2 expression has not been detected in DLD-1 cells, a cell line derived from human colon cancer...
May 2024: Oncology Letters
https://read.qxmd.com/read/38555403/precision-nutrition-to-reset-virus-induced-human-metabolic-reprogramming-and-dysregulation-hmrd-in-long-covid
#23
REVIEW
A Satyanarayan Naidu, Chin-Kun Wang, Pingfan Rao, Fabrizio Mancini, Roger A Clemens, Aman Wirakartakusumah, Hui-Fang Chiu, Chi-Hua Yen, Sebastiano Porretta, Issac Mathai, Sreus A G Naidu
SARS-CoV-2, the etiological agent of COVID-19, is devoid of any metabolic capacity; therefore, it is critical for the viral pathogen to hijack host cellular metabolic machinery for its replication and propagation. This single-stranded RNA virus with a 29.9 kb genome encodes 14 open reading frames (ORFs) and initiates a plethora of virus-host protein-protein interactions in the human body. These extensive viral protein interactions with host-specific cellular targets could trigger severe human metabolic reprogramming/dysregulation (HMRD), a rewiring of sugar-, amino acid-, lipid-, and nucleotide-metabolism(s), as well as altered or impaired bioenergetics, immune dysfunction, and redox imbalance in the body...
March 30, 2024: NPJ science of food
https://read.qxmd.com/read/38553612/yap-taz-tead-activity-promotes-the-malignant-transformation-of-cervical-intraepithelial-neoplasia-through-enhancing-the-characteristics-and-warburg-effect-of-cancer-stem-cells
#24
JOURNAL ARTICLE
Shu Li, Xing Li, Yong-Bin Yang, Su-Fang Wu
A number of studies have confirmed that Yes-associated protein (YAP)/transcriptional co-activator with PDZ-binding motif (TAZ)-transcriptional enhanced associate domain (TEAD) activity is the driver of cancer development. However, the role and mechanism of the YAP/TAZ-TEAD pathway in cervical intraepithelial neoplasia (CIN) remain to be clarified. Therefore, this study was designed to observe the effect of YAP/TAZ-TEAD activity on the development of CIN and provide new ideas for the diagnosis and treatment of CIN...
March 29, 2024: Apoptosis: An International Journal on Programmed Cell Death
https://read.qxmd.com/read/38548218/circular-rna-circtatdn3-promotes-the-warburg-effect-and-proliferation-in-colorectal-cancer
#25
JOURNAL ARTICLE
Jiatong Lin, Wenhui Zhong, Zejian Lyu, Jingwen Peng, Yi Rong, Kejing Zeng, Jianguo Lai, Deqing Wu, Junjiang Wang, Yong Li, Jun Zheng, Jianwei Zhang, Zihao Pan
As one of the key metabolic enzymes in the glycolytic pathway, lactate dehydrogenase A (LDHA) might be linked to tumor proliferation by driving the Warburg effect. Circular RNAs (circRNAs) are widely implicated in tumor progression. Here, we report that circTATDN3, a circular RNA interacts with LDHA, plays a critical role in proliferation and energy metabolism in CRC. We found that circTATDN3 expression was increased in CRC cells and tumor tissues and that high circTATDN3 expression was positively associated with poor postoperative prognosis inCRC patients...
March 26, 2024: Cancer Letters
https://read.qxmd.com/read/38542116/targeting-the-warburg-effect-in-cancer-where-do-we-stand
#26
REVIEW
Ignasi Barba, Laura Carrillo-Bosch, Joan Seoane
The Warburg effect, characterized by the preferential conversion of glucose to lactate even in the presence of oxygen and functional mitochondria, is a prominent metabolic hallmark of cancer cells and has emerged as a promising therapeutic target for cancer therapy. Elevated lactate levels and acidic pH within the tumor microenvironment (TME) resulting from glycolytic profoundly impact various cellular populations, including macrophage reprogramming and impairment of T-cell functionality. Altogether, the Warburg effect has been shown to promote tumor progression and immunosuppression through multiple mechanisms...
March 8, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38538285/the-molecular-mechanisms-behind-advanced-breast-cancer-metabolism-warburg-effect-oxphos-and-calcium
#27
REVIEW
Erna Mitaishvili, Hanna Feinsod, Zachary David, Jessica Shpigel, Chelsea Fernandez, Moira Sauane, Columba de la Parra
Altered metabolism represents a fundamental difference between cancer cells and normal cells. Cancer cells have a unique ability to reprogram their metabolism by deviating their reliance from primarily oxidative phosphorylation (OXPHOS) to glycolysis, in order to support their survival. This metabolic phenotype is referred to as the "Warburg effect" and is associated with an increase in glucose uptake, and a diversion of glycolytic intermediates to alternative pathways that support anabolic processes. These processes include synthesis of nucleic acids, lipids, and proteins, necessary for the rapidly dividing cancer cells, sustaining their growth, proliferation, and capacity for successful metastasis...
March 13, 2024: Frontiers in Bioscience (Landmark Edition)
https://read.qxmd.com/read/38538272/phosphoglycerate-kinase-1-an-effective-therapeutic-target-in-cancer
#28
REVIEW
Ailin Qiu, Xiaosha Wen, Qingshuang Zou, Lei Yin, Siqi Zhu, Yao Sheng, Yan He, Quan Liu, Dixian Luo, Zifen Guo
Phosphoglycerate kinase 1 (PGK1) serves as a pivotal enzyme in the cellular glycolysis pathway, facilitating adenosine-triphosphate (ATP) production in tumor cells and driving the Warburg effect. PGK1 generates ATP through the reversible phosphorylation reaction of 1,3-bisphosphoglycerate (1,3-BPG) to Mg-adenosine-5'-diphosphate (Mg-ADP). In addition to its role in regulating cellular metabolism, PGK1 plays a pivotal role in autophagy induction, regulation of the tricarboxylic acid cycle (TCA), and various mechanisms including tumor cell drug resistance, and so on...
March 6, 2024: Frontiers in Bioscience (Landmark Edition)
https://read.qxmd.com/read/38514913/n6-isopentenyladenosine-inhibits-aerobic-glycolysis-in-glioblastoma-cells-by-targeting-pkm2-expression-and-activity
#29
JOURNAL ARTICLE
Cristina Pagano, Laura Coppola, Giovanna Navarra, Giorgio Avilia, Beatrice Savarese, Giovanni Torelli, Sara Bruzzaniti, Erica Piemonte, Mario Galgani, Chiara Laezza, Maurizio Bifulco
Glioblastoma (GBM) is a primary tumor in the central nervous system with poor prognosis. It exhibits elevated glucose uptake and lactate production. This metabolic state of aerobic glycolysis is known as the Warburg effect. N6-isopentenyladenosine (iPA), a natural cytokine modified with an isopentenyl moiety derived from the mevalonate pathway, has well-established anti-tumor activity. It inhibits cell proliferation in glioma cells, inducing cell death by apoptosis and/or necroptosis. In the present study, we found that iPA inhibits aerobic glycolysis in unmodified U87MG cells and in the same cell line engineered to over-express wild-type epidermal growth factor receptor (EGFR) or EGFR variant III (vIII), as well as in a primary GBM4 patient-derived cell line...
March 21, 2024: FEBS Open Bio
https://read.qxmd.com/read/38512909/the-role-of-gapdh-in-the-selective-toxicity-of-cnp-in-melanoma-cells
#30
JOURNAL ARTICLE
Claudia von Montfort, Elif Aplak, Lara Ebbert, Chantal-Kristin Wenzel, Niklas P Klahm, Wilhelm Stahl, Peter Brenneisen
BACKGROUND: Malignant melanoma is the most aggressive form of skin cancer with a rather poor prognosis. Standard chemotherapy often results in severe side effects on normal (healthy) cells finally being difficult to tolerate for the patients. Shown by us earlier, cerium oxide nanoparticles (CNP, nanoceria) selectively killed A375 melanoma cells while not being cytotoxic at identical concentrations on non-cancerous cells. In conclusion, the redox-active CNP exhibited both prooxidative as well as antioxidative properties...
2024: PloS One
https://read.qxmd.com/read/38503401/functions-and-novel-regulatory-mechanisms-of-key-glycolytic-enzymes-in-pulmonary-arterial-hypertension
#31
REVIEW
Jia Wang, Chao Liu, Shen-Shen Huang, Hui-Fang Wang, Chun-Yan Cheng, Jing-Si Ma, Ruo-Nan Li, Tian-Yu Lian, Xian-Mei Li, Yue-Jiao Ma, Zhi-Cheng Jing
Pulmonary arterial hypertension (PAH) is a progressive vascular disease characterized by remodeling of the pulmonary vasculature and elevated pulmonary arterial pressure, ultimately leading to right heart failure and death. Despite its clinical significance, the precise molecular mechanisms driving PAH pathogenesis warrant confirmation. Compelling evidence indicates that during the development of PAH, pulmonary vascular cells exhibit a preference for energy generation through aerobic glycolysis, known as the "Warburg effect", even in well-oxygenated conditions...
March 17, 2024: European Journal of Pharmacology
https://read.qxmd.com/read/38497226/autophagy-inhibition-potentiates-energy-restriction-induced-cell-death-in-hepatocellular-carcinoma-cells
#32
JOURNAL ARTICLE
Sara M Elgendy, Dana M Zaher, Nadin H Sarg, Nour N Abu Jayab, Dima W Alhamad, Taleb H Al-Tel, Hany A Omar
Hepatocellular carcinoma (HCC) significantly contributes to cancer-related mortality due to the limited response of HCC to current anticancer therapies, thereby necessitating more effective treatment approaches. Energy restriction mimetic agents (ERMAs) have emerged as potential therapies in targeting the Warburg effect, a unique metabolic process in cancer cells. However, ERMAs exhibit limited efficacy when used as monotherapy. Additionally, ERMAs have been found to induce autophagy in cancer cells. The role of autophagy in cancer survival remains a subject of debate...
March 18, 2024: IUBMB Life
https://read.qxmd.com/read/38494321/lactic-acidosis-in-a-patient-with-cancer
#33
Mayra Oseguera, Amy A Yau
Lactic acidosis is commonly associated with tissue hypoperfusion and gives rise to concern regarding hypoxia or underlying hypotension. In the cancer patient, especially one undergoing chemotherapy, there is always concern for sepsis; however, in the otherwise clincially stable patient with cancer, type B lactic acidosis can also be related to their underlying malignancy. It is considered a haematological emergency given its high mortality rate. However, despite the urgency to treat type B lactic acidosis in these circumstances, treatment options beyond treatment of the malignancy are limited, and its presence portends a poor prognosis...
November 2023: Clinical Medicine: Journal of the Royal College of Physicians of London
https://read.qxmd.com/read/38494080/glut-and-hk-two-primary-and-essential-key-players-in-tumor-glycolysis
#34
REVIEW
Dhiraj Yadav, Anubha Yadav, Sujata Bhattacharya, Akansha Dagar, Vinit Kumar, Reshma Rani
Cancer cells reprogram their metabolism to become "glycolysis-dominant," which enables them to meet their energy and macromolecule needs and enhancing their rate of survival. This glycolytic-dominancy is known as the "Warburg effect", a significant factor in the growth and invasion of malignant tumors. Many studies confirmed that members of the GLUT family, specifically HK-II from the HK family play a pivotal role in the Warburg effect, and are closely associated with glucose transportation followed by glucose metabolism in cancer cells...
March 15, 2024: Seminars in Cancer Biology
https://read.qxmd.com/read/38493450/aglycemia-induces-apoptosis-under-hypoxic-conditions-in-a549-cells
#35
JOURNAL ARTICLE
Yüksel Öğünç Keçeci, Zerrin İncesu
Many of the cancer cells produce energy with accelerated glycolysis and perform lactic acid production even under normoxic conditions called the "Warburg effect". Metabolism can directly or indirectly regulate the apoptotic mechanism so that cancer cells take advantage of reprogrammed metabolism to avoid apoptosis. The aim of this study is to examine the mechanism of apoptosis by incubating human lung carcinoma cells (A549) under different metabolic conditions in hypoxia or normoxia environments. A549 cells were incubated in the normoxic or hypoxic condition that contained 5 mM glucose (Glc 5), 25 mM glucose (Glc 25), or 10 mM galactose (OXPHOS/aglycemic), and the mechanism of apoptosis was investigated...
March 2024: Cell Biochemistry and Function
https://read.qxmd.com/read/38492882/rare-diseases-and-pyruvate-kinase-m2-a-promising-therapeutic-connection
#36
REVIEW
Saumya Kapoor, Vaishnavi Kalmegh, Hemant Kumar, Amit Mandoli, Amit Shard
Pyruvate kinase M2 (PKM2) is a key glycolytic enzyme that regulates proliferating cell metabolism. The role of PKM2 in common diseases has been well established, but its role in rare diseases (RDs) is less well understood. Over the past few years, PKM2 has emerged as a crucial player in RDs, including, neoplastic, respiratory, metabolic, and neurological disorders. Herein, we summarize recent findings and developments highlighting PKM2 as an emerging key player in RDs. We also discuss the current status of PKM2 modulation in RDs with particular emphasis on preclinical and clinical studies in addition to current challenges in the field...
March 14, 2024: Drug Discovery Today
https://read.qxmd.com/read/38489376/metabolic-symbiosis-between-oxygenated-and-hypoxic-tumour-cells-an-agent-based-modelling-study
#37
JOURNAL ARTICLE
Pahala Gedara Jayathilake, Pedro Victori, Clara E Pavillet, Chang Heon Lee, Dimitrios Voukantsis, Ana Miar, Anjali Arora, Adrian L Harris, Karl J Morten, Francesca M Buffa
Deregulated metabolism is one of the hallmarks of cancer. It is well-known that tumour cells tend to metabolize glucose via glycolysis even when oxygen is available and mitochondrial respiration is functional. However, the lower energy efficiency of aerobic glycolysis with respect to mitochondrial respiration makes this behaviour, namely the Warburg effect, counter-intuitive, although it has now been recognized as source of anabolic precursors. On the other hand, there is evidence that oxygenated tumour cells could be fuelled by exogenous lactate produced from glycolysis...
March 15, 2024: PLoS Computational Biology
https://read.qxmd.com/read/38489081/urolithin-a-exerts-anti-tumor-effects-on-gastric-cancer-via-activating-autophagy-hippo-axis-and-modulating-the-gut-microbiota
#38
JOURNAL ARTICLE
Yixiao Qiao, Qiaoyun Xia, Xukun Cao, Jingyuan Xu, Zhengdong Qiao, Longyun Wu, Zhirong Chen, Longbao Yang, Xiaolan Lu
Gastric cancer (GC) treatment regimens are still unsatisfactory. Recently, Urolithin A (UroA) has gained tremendous momentum due to its anti-tumor properties. However, the therapeutic effect and underlying mechanisms of UroA in GC are unclear. We explored the effects and related mechanisms of UroA on GC both in vivo and in vitro. A Cell Counting Kit-8 was used to determine the influence of UroA on the proliferation of GC cell lines. The Autophagy inhibitor 3-methyladenine (3MA) was employed to clarify the role of autophagy in the anti-tumor effect of UroA...
March 15, 2024: Naunyn-Schmiedeberg's Archives of Pharmacology
https://read.qxmd.com/read/38488552/metabolic-reprogramming-of-the-inflammatory-response-in-the-nervous-system-the-crossover-between-inflammation-and-metabolism
#39
JOURNAL ARTICLE
Jesus Amo-Aparicio, Charles A Dinarello, Ruben Lopez-Vales
Metabolism is a fundamental process by which biochemicals are broken down to produce energy (catabolism) or used to build macromolecules (anabolism). Metabolism has received renewed attention as a mechanism that generates molecules that modulate multiple cellular responses. This was first identified in cancer cells as the Warburg effect, but it is also present in immunocompetent cells. Studies have revealed a bidirectional influence of cellular metabolism and immune cell function, highlighting the significance of metabolic reprogramming in immune cell activation and effector functions...
October 1, 2024: Neural Regeneration Research
https://read.qxmd.com/read/38487001/targeting-the-warburg-effect-a-revisited-perspective-from-molecular-mechanisms-to-traditional-and-innovative-therapeutic-strategies-in-cancer
#40
REVIEW
Minru Liao, Dahong Yao, Lifeng Wu, Chaodan Luo, Zhiwen Wang, Jin Zhang, Bo Liu
Cancer reprogramming is an important facilitator of cancer development and survival, with tumor cells exhibiting a preference for aerobic glycolysis beyond oxidative phosphorylation, even under sufficient oxygen supply condition. This metabolic alteration, known as the Warburg effect, serves as a significant indicator of malignant tumor transformation. The Warburg effect primarily impacts cancer occurrence by influencing the aerobic glycolysis pathway in cancer cells. Key enzymes involved in this process include glucose transporters (GLUTs), HKs, PFKs, LDHs, and PKM2...
March 2024: Acta Pharmaceutica Sinica. B
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