Metabolic flexibility in mammals enables stressed tissues to generate additional ATP by converting large amounts of glucose into lactic acid; however, this process can cause transient local or systemic acidosis. Certain mammals are adapted to extreme environments and are capable of enhanced metabolic flexibility as a specialized adaptation to challenging habitat niches. For example, naked mole-rats (NMRs) are a fossorial and hypoxia-tolerant mammal whose metabolic responses to environmental stressors markedly differ from most other mammals. When exposed to hypoxia, NMRs exhibit robust hypometabolism but develop minimal acidosis. Furthermore, and despite a very long lifespan relative to other rodents, NMRs have a remarkably low cancer incide...
Summary: Naked mole rat (NMR) is a valuable model for aging and cancer research due to its exception...
Summary Naked mole rat (NMR) is a valuable model for aging and cancer research due to its exceptiona...
Hypoxia poses a major physiological challenge for mammals and has significant impacts on cellular an...
Metabolic flexibility in mammals enables stressed tissues to generate additional ATP by converting l...
Metabolic flexibility in mammals enables stressed tissues to generate additional ATP by converting l...
The naked mole-rat (NMR) is a subterranean rodent that has gained significant attention from the bio...
Background: The naked mole rats (NMRs) are small-sized underground rodents with plenty of unusual tr...
The naked mole-rat (NMR, Heterocephalus glaber) is a highly unusual mammal: eusocial, cold-blooded a...
Challenging environmental conditions can drive the evolution of extreme physiological traits. The na...
Resistance to tissue hypoxia is a robust fundamental adaptation to low oxygen supply, and represents...
Subterranean mammals spend their lives in dark, unventilated environments that are rich in carbon di...
Naked mole-rats are extremely tolerant to low concentrations of oxygen (hypoxia) and high concentrat...
Aims: Burrowing mammals tend to be more hypoxia tolerant than non-burrowing mammals and rely less on...
Naked mole-rats are extremely tolerant to low concentrations of oxygen (hypoxia) and high concentrat...
The naked mole-rat (NMR, Heterocephalus glaber), which is the longest-lived rodent species, exhibits...
Summary: Naked mole rat (NMR) is a valuable model for aging and cancer research due to its exception...
Summary Naked mole rat (NMR) is a valuable model for aging and cancer research due to its exceptiona...
Hypoxia poses a major physiological challenge for mammals and has significant impacts on cellular an...
Metabolic flexibility in mammals enables stressed tissues to generate additional ATP by converting l...
Metabolic flexibility in mammals enables stressed tissues to generate additional ATP by converting l...
The naked mole-rat (NMR) is a subterranean rodent that has gained significant attention from the bio...
Background: The naked mole rats (NMRs) are small-sized underground rodents with plenty of unusual tr...
The naked mole-rat (NMR, Heterocephalus glaber) is a highly unusual mammal: eusocial, cold-blooded a...
Challenging environmental conditions can drive the evolution of extreme physiological traits. The na...
Resistance to tissue hypoxia is a robust fundamental adaptation to low oxygen supply, and represents...
Subterranean mammals spend their lives in dark, unventilated environments that are rich in carbon di...
Naked mole-rats are extremely tolerant to low concentrations of oxygen (hypoxia) and high concentrat...
Aims: Burrowing mammals tend to be more hypoxia tolerant than non-burrowing mammals and rely less on...
Naked mole-rats are extremely tolerant to low concentrations of oxygen (hypoxia) and high concentrat...
The naked mole-rat (NMR, Heterocephalus glaber), which is the longest-lived rodent species, exhibits...
Summary: Naked mole rat (NMR) is a valuable model for aging and cancer research due to its exception...
Summary Naked mole rat (NMR) is a valuable model for aging and cancer research due to its exceptiona...
Hypoxia poses a major physiological challenge for mammals and has significant impacts on cellular an...