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Glasper, E. R.

Publications and source records attributed to Glasper, E. R..

2 recordsLinked to original sources

Disruption of hippocampal mitochondrial function underlies opioid-induced postoperative cognitive dysfunction in aged rats

Postoperative cognitive dysfunction (POCD) is a common and persistent complication in aging individuals following surgery, particularly when opioids are used for perioperative pain management. Although opioids are widely administered in the perioperative setting, the mechanisms by which they contribute to long-term cognitive impairment remain poorly understood. Here, we investigated how synaptic, neuroaxonal, and mitochondrial abnormalities contribute to long-lasting memory deficits induced by surgery and morphine, and evaluated therapeutic strategies targeting neuroinflammation and mitochondrial dysfunction. Using an aged rat model of surgery with perioperative morphine administration, we found that persistent hippocampal-dependent memory impairments were not attributable to systemic illness or gross dendritic degeneration. Instead, morphine-treated animals exhibited selective reductions in dendritic spine subtypes associated with synaptic stability, impaired late-phase long-term potentiation, and blunted experience-dependent upregulation of the AMPA receptor subunit GluA1. These synaptic alterations were accompanied by elevated circulating neurofilament light chain (Nf-L), indicating sustained neuroaxonal perturbation. Morphine treatment also produced persistent hippocampal mitochondrial dysfunction, characterized by impaired oxidative phosphorylation, reduced respiratory reserve capacity, and increased oxidative DNA damage, including mitochondrial DNA oxidation. These effects were restricted to the hippocampus and not observed in peripheral tissue. Pharmacological inhibition of TLR4 signaling at the time of surgery, which rescued the memory deficit, attenuated oxidative stress and partially restored mitochondrial function, implicating early neuroinflammatory signaling in the development of long-term mitochondrial impairment. Finally, targeted mitochondrial rejuvenation with SS-31 four weeks post-surgery robustly rescued hippocampal-dependent memory and normalized mitochondrial respiratory function despite persistently elevated DNA oxidation and Nf-L. Together these findings identify sustained hippocampal mitochondrial dysfunction as a key mechanistic substrate underlying long-term cognitive deficits following surgery and morphine exposure in aged rats, and highlight mitochondrial bioenergetics as a promising therapeutic target for POCD.

animal behavior and cognition↗

Reproductive experience drives changes in behavior and physiology in male California mice (Peromyscus californicus)

Paternal experience improves memory and reduces anxiety-like behavior in males, but it is unclear whether these changes are due to mating, siring offspring, or caregiving behavior. Likewise, paternal males have larger testes, a measure of sperm production, but again, the effects of siring and caregiving experience are difficult to disentangle. We examined behavioral and physiological outcomes in three groups of male mice: 1) virgins, 2) males paired with sterile females ( non-fathers), and 3) experienced fathers (Experiment 1). Compared to virgins and non-fathers, experienced fathers exhibited increased recognition memory (novel object recognition) and decreased anxiety-like behavior (elevated plus maze). Virgin males, however, had smaller testes and fewer sperm compared to non-fathers. We then compared the same traits in three additional groups of male mice: 1) non-fathers, 2) non-fathers with experience caring for unrelated pups ( pup-sensitized non-fathers), and 3) first-time fathers, to determine whether the behavioral and physiological observations in Experiment 1 were due to siring offspring or caregiving, and how rapidly these changes occur (Experiment 2). Recognition memory and anxiety-like behavior did not differ among these three groups, suggesting that caring for a single litter does not recapitulate the behavioral changes observed in experienced fathers (Experiment 1). Despite equal mating opportunity, we observed larger testes in first-time fathers compared to non-fathers, suggesting that investment in sperm production may be more plastic than behavioral changes. Finally, we compared pup interactions in pup-sensitized non-fathers and first-time fathers. While pup-sensitized non-fathers were slower to approach pups than first-time fathers, they spent more time grooming pups, whereas first-time fathers invested more time in nest building, suggesting different caregiving behaviors in pup-sensitized males and biological fathers. Taken together, our study revealed that mating, siring, and caregiving experience contributes to changes in memory, anxiety-like behavior, and reproductive investment in males of a biparental species.

animal behavior and cognition↗