LTP enhances synaptogenesis in the developing hippocampus.

Hippocampus

Department of Neuroscience, Center for Learning and Memory, Institute for Neuroscience, University of Texas at Austin, Austin, Texas, 78731.

Published: May 2016


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

In adult hippocampus, long-term potentiation (LTP) produces synapse enlargement while preventing the formation of new small dendritic spines. Here, we tested how LTP affects structural synaptic plasticity in hippocampal area CA1 of Long-Evans rats at postnatal day 15 (P15). P15 is an age of robust synaptogenesis when less than 35% of dendritic spines have formed. We hypothesized that LTP might therefore have a different effect on synapse structure than in adults. Theta-burst stimulation (TBS) was used to induce LTP at one site and control stimulation was delivered at an independent site, both within s. radiatum of the same hippocampal slice. Slices were rapidly fixed at 5, 30, and 120 min after TBS, and processed for analysis by three-dimensional reconstruction from serial section electron microscopy (3DEM). All findings were compared to hippocampus that was perfusion-fixed (PF) in vivo at P15. Excitatory and inhibitory synapses on dendritic spines and shafts were distinguished from synaptic precursors, including filopodia and surface specializations. The potentiated response plateaued between 5 and 30 min and remained potentiated prior to fixation. TBS resulted in more small spines relative to PF by 30 min. This TBS-related spine increase lasted 120 min, hence, there were substantially more small spines with LTP than in the control or PF conditions. In contrast, control test pulses resulted in spine loss relative to PF by 120 min, but not earlier. The findings provide accurate new measurements of spine and synapse densities and sizes. The added or lost spines had small synapses, took time to form or disappear, and did not result in elevated potentiation or depression at 120 min. Thus, at P15 the spines formed following TBS, or lost with control stimulation, appear to be functionally silent. With TBS, existing synapses were awakened and then new spines formed as potential substrates for subsequent plasticity.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4811749PMC
http://dx.doi.org/10.1002/hipo.22536DOI Listing

Publication Analysis

Top Keywords

120 min
16
dendritic spines
12
spines formed
12
spines
8
control stimulation
8
small spines
8
ltp
6
min
6
tbs
5
ltp enhances
4

Similar Publications

We evaluated the systemic cardiovascular and carotid baroreflex support of arterial pressure during recovery from whole-body, passive heating in young and older adults. Supine mean arterial pressure (MAP), cardiac output (Q; acetylene washin), systemic vascular conductance (SVC), heart rate (HR), and stroke volume (SV) were evaluated in 16 young (8F, 18-29 years) and nine older (6F, 61-73 years) adults at normothermic baseline and for 60-min passive heating and 120-min normothermic recovery. Externally applied neck pressure was used to evaluate HR, brachial vascular conductance, and MAP responses to carotid baroreceptor unloading.

View Article and Find Full Text PDF

Objectives: This study aimed to analyse the number of myocardial infarction (MI) admissions during the COVID-19 lockdown periods of 2020 and 2021 (March 15th to June 15th) and compare them with corresponding pre-pandemic period in 2019. The study also evaluated changes in critical treatment intervals: onset to door (O2D), door to balloon (D2B) and door to needle (D2N) and assessed 30-day clinical outcomes. This study examined MI care trends in India during the COVID-19 lockdown period, irrespective of patients' COVID-19 infection status.

View Article and Find Full Text PDF

Unifying serological testing for cold agglutinins.

Vox Sang

September 2025

Department of Immunohematology Diagnostics, Sanquin Diagnostic Services, Amsterdam, The Netherlands.

Background And Objectives: Cold agglutinins (CAs) are immunoglobulin M autoantibodies that optimally bind to red blood cells at low temperatures. The clinical significance of CAs is usually characterized by the CA titre and thermal amplitude. However, there is no consensus on the optimal testing strategy.

View Article and Find Full Text PDF

This study aimed to characterize, in vitro dissolution, and evaluate the release kinetics of salicylamide in capsule shells made from κ-carrageenan-HPMC. The capsule shell was prepared using the dipping method with CRG: HPMC (1:1, 1:2, 1:3) ratio, supplemented with sorbitol and antifoam silicone emulsion. Characterization was conducted using FTIR, SEM-EDX mapping, AFM, hardness, and swelling degree experiments.

View Article and Find Full Text PDF

Biorelevant simulation of GI variability and its impact on the release behavior of non-disintegrating formulations: A case study using DHSI-IV (NERDT) system as a novel in vitro tool.

Int J Pharm

September 2025

Life Quality (LQ) Engineering Interest Group, School of Chemical and Environmental Engineering, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, Jiangsu Province 215123, China. Electronic address:

Gastrointestinal (GI) physiological variability significantly influences dissolution and bioavailability of non-disintegrating solid drug systems. This study employed the dynamic human stomach-intestine (DHSI-IV, branded as NERDT) system to characterize how gastric emptying kinetics and intestinal environmental dynamics affect drug release, using extended-release metformin matrix tablets (Glucophage XR®) and metformin osmotic pump tablets (Nida®) as model formulations. The DHSI-IV (NERDT) system accurately simulated three fasting-state gastric emptying profiles (30-120 min complete emptying) with excellent fit to the modified Elashoff model (R = 0.

View Article and Find Full Text PDF