B4.064 Microcirculatin and Regional Blood Flow Flashcards

1
Q

what are the effects of increased ROS production

A

damage to endothelial cells
inactivation of NO
increased formation of ET-1

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2
Q

effect of inactivation of NO

A

leukocyte adherence to venules

arteriolar constriction

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3
Q

how was it discovered that endothelial cells have constrictive/relaxing properties?

A

exogenous ACh produced relaxation of arterial segments with endothelial cells, yet in the absence of endothelial cells, ACh caused constriction

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4
Q

what vasodilator is produced by endothelial cells?

A

NO

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5
Q

what are 3 examples of anti-oxidants?

A

superoxide dismutase
catalase
lipoic acid

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6
Q

why are superoxide dismutase and catalase limited in effectiveness?

A

size

too large to pass into interior of cells

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7
Q

why cant we give NO systemically to prevent reperfusion injury?

A

since its a potent vasodilator, this would result in dilation of arterioles throughout systemic organs
this would create a decrease in TPR and cause shock

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8
Q

why cant we give NO locally into transplanted organs?

A

local arteriolar dilation would increase blood flow, increase capillary pressure, and promote edema

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9
Q

what is the possible result of a microvascular brain injury

A

loss of plasma across damaged vessels > development of cerebral edema by reducing oncotic pressure gradient > reduced force of fluid reabsorption from interstitial space > edema > increased intracranial pressure and venous constriction > decreased cerebral blood flow

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10
Q

what are some interventions that could help reduce cerebral edema?

A
  1. hyperventilation- reduced PCO2 levels to cause cerebral vasoconstriction, this will reduce capillary pressure and reduce rate of filtration (edema)
  2. mannitol- increases solute concentration in plasma, increases rate of reabsorption of fluid from interstitial space
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11
Q

what is the result of lymph obstruction?

A

decreases removal of fluid and protein from interstitium > increased interstitial protein concentration > decreased oncotic resorption of fluid > edema

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12
Q

what are some adverse effects of edema?

A

increased interstitial volume > increased diffusion distance between capillaries and cells > impaired exchange of metabolites between blood and tissues
increased interstitial pressure > venules and small vein compressed > increased venular resistance > decreased blood flow

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13
Q

discuss the positive feedback loop of portal vein hypertension

A

portal vein hypertension > increased capillary pressure in GI organs > edema in GI organs > hypoxia > accumulation of metabolic vasodilators > dilation of arterioles > increased blood flow into portal vein > increased severity of portal hypertension

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14
Q

what is another effect of portal hypertension other than edema?

A

ascites and thus decreased blood volume > production of endogenous vasopressors

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15
Q

how do systolic and diastolic BP change in response to exercise?

A

decreased MAP due to lower TPR initiates a baroreflex response resulting in creased CO
low TPR: increased runoff lowers arterial diastolic P
increased pulse pressure due to increased SV
increased arterial systolic and decreased diastolic compared to normal

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