Search PubMed⌕ Search

PubMed · 5765375

How do anesthetics work?

Abstract

The source did not provide an abstract. Follow the original record for more information.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

K W Miller. 1969. How do anesthetics work?. https://doi.org/10.1097/00000542-196902000-00002

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

PB-2, a polysaccharide fraction from lichen Flavoparmelia baltimorensis, peripherally promotes the induction of long-term potentiation in the rat dentate gyrus in vivo.

We have previously found that oral or intravenous administration of PC-2, a polysaccharide fraction purified from extracts of lichen Flavoparmelia caperata, facilitates the induction of long-term potentiation (LTP) in the dentate gyrus of anesthetized rats. PC-2 could be useful in the development of therapeutic drugs for senile dementia. However, it has been very difficult to obtain the material Flavoparmelia caperata because of its scarcity. In the present study, we therefore investigated whether PB-2, a polysaccharide fraction from another lichen Flavoparmelia baltimorensis, has similar biological effects. Oral administration of PB-2 (100-200 mg/kg) did not affect basal evoked potentials, but significantly promoted the induction of LTP following tetanic stimulation (30 pulses at 60 Hz) in the dentate gyrus of anesthetized rats. Intravenous injection of PB-2 (1-5 mg/kg) was also effective in promoting the induction of LTP, but intracerebroventricular injection of PB-2 (1-2 mg/brain) was ineffective. PB-2, as well as PC-2, should be valuable in identifying factors that promote synaptic plasticity in the hippocampus.

Anesthesia↗

State-dependent regulation of cortical blood flow and respiration in hamsters: response to hypercapnia during arousal from hibernation.

Hibernation is characterised by a global reduction of metabolism, body temperature and blood flow, while arousal from hibernation is achieved by the reversal of these processes. Our experiments were performed on Syrian hamsters that had been chronically implanted with a cortical thermocouple and an optical fibre over the contralateral cortex, and acutely implanted with thermocouples in the rectal, cheek pouch and interscapular brown adipose tissue (BAT). Measurements revealed large thermal gradients in the body of the arousing animals. Maximum whole-body metabolic rate, which was 2.4 times normal cenothermic resting metabolic rate, coincided not with rectal temperature but more closely with respiratory rate (RR) or BAT temperature. Regional cortical blood flow (rCBF), as measured by laser-Doppler flowmetry, changed in parallel with whole-body metabolic rate, peaking at 3.8 times the normal cenothermic resting levels, when rectal temperature was 15 degrees C. When BAT temperature was less than 25 degrees C, RR, rCBF and heart rate (HR) were decreased by breathing hypercapnic gas, but these parameters were unresponsive to hyperoxic gases. At cenothermia the RR and rCBF of anaesthetised hamsters was increased by exposure to hypercapnic gases. Exposure to hyperoxic gas decreased RR but had no effect on rCBF. The mechanisms regulating rCBF, HR and RR exhibit state-dependent sensitivities to hypercapnic and hyperoxic stimuli. The large increase in rCBF observed during arousal implies that cerebral autoregulation is temporarily suspended and suggests that hamsters effectively use endogenous mechanisms to minimise the pathology normally associated with dramatic increases in rCBF.

Anesthesia↗

Human serum albumin incorporating synthetic heme: red blood cell substitute without hypertension by nitric oxide scavenging.

The administration of extracellular, hemoglobin-based oxygen carriers often elicits an acute increase in blood pressure by vasoconstriction. This side effect is now recognized to be due to the depletion of nitric oxide (endothelial-derived relaxing factor) by the extravasuated hemoglobins. We have recently found that the administration of a recombinant human serum albumin (rHSA)-based oxygen carrier involving synthetic tetraphenyporphinatoiron(II) derivative (FeP) (rHSA-FeP) does not induce such hypertensive action, because of its low permeability through the vascular endothelium. The heart rate responses after the rHSA-FeP injection were also negligibly small. Visualization of the intestinal microcirculatory changes clearly revealed the widths of the venule and arteriole to be fairly constant. The entirely synthetic rHSA-FeP becomes a promising material as a new type of red blood cell substitute.

Anesthesia↗