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NEUROMUSCULAR%20AND%20SYNAPTIC%20TRANSMISSION

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NEUROMUSCULAR AND SYNAPTIC TRANSMISSION. D. C. Mikulecky. Professor ... MASS ACTION CAUSES LIGAND TO DISSOCIATE FROM RECEPTOR. THE SYNAPSE. SYNAPTIC. VESSICLES ... – PowerPoint PPT presentation

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Title: NEUROMUSCULAR%20AND%20SYNAPTIC%20TRANSMISSION


1
NEUROMUSCULAR AND SYNAPTIC TRANSMISSION
D. C. Mikulecky Professor of Physiology http//v
iews.vcu.edu/mikuleck/
2
TWO TYPES OF SYNAPSE
  • ELECTRICAL
  • CHEMICAL

3
ELECTRICAL
GAP JUNCTION PROVIDES PATH FOR IONS TO FLOW
FROM ONE CELL TO ANOTHER
CELL 1
CELL 2
4
TYPES OF CHEMICAL SYNAPSES
  • DISCRETE
  • DIFFUSE

5
DISCRETE SYNAPSES
6
DIFFUSE SYNAPSES
7
CHEMICAL THE SYNAPSE
INCOMING NERVE
POST SYNAPTIC NERVE
SPACE
8
EVENTS IN CELLULAR COMMUNICATION
INPUT SIGNAL (CHEMICAL,MECHANICAL, PHOTO,
ELECTRICAL)
RECEPTOR
TRANSDUCER
EFFECTOR ENZYMES,GENOME,CONTRACTILE FILAMENTS,
SECRETORY GRANULES
RESPONSE (OUTPUT)
SECRETION CONTRACTION/RELAXATION
DIVISION PHAGOCYTOSIS
9
HOW ARE WE WIRED?CONNECTIONS BETWEEN NERVE CELLS
AXON
CELL BODY
AXON TERMINALS
AXON HILLOCK
DENDRITES
10
THE NATURE OF CHEMICAL TRANSMISSION BETWEEN NERVES
  • PRESYNAPTIC EVENTS
  • POSTSYNAPTIC EVENTS
  • IN THE SPACE

11
PRESYNAPTIC EVENTS
  • THE ALL OR NONE ACTION POTENTIAL TRIGGERS THE
    RELEASE OF CHEMICAL TRANSMITTER

12
INCOMING ACTION POTENTIAL
  • DEPOLARIZES
  • TRIGGERS CALCIUM CHANNELS
  • CALCIUM ENTERS THE CELL

13
THE SYNAPSE
INCOMING ACTION POTENTIAL
CALCIUM CHANNEL

RECEPTOR
SYNAPTIC VESSICLES





ION CHANNEL



ENZYME
14
THE SYNAPSE INCOMING ACTION POTENTAL
INCOMING ACTION POTENTIAL
CALCIUM CHANNEL

RECEPTOR
SYNAPTIC VESSICLES





ION CHANNEL



ENZYME
15
CALCIUM INFLUX
  • CAUSES VESSICLES TO BE RELEASED
  • VESSICLES MIGRATE TO MEMBRANE
  • EXOCYTOSIS
  • NEUROTRANSMITTER ENTERS SPACE

16
THE SYNAPSE CALCIUM CHANNELS OPEN
INCOMING ACTION POTENTIAL
CALCIUM CHANNEL

RECEPTOR
SYNAPTIC VESSICLES





ION CHANNEL



ENZYME
17
THE SYNAPSE NEUROTRANSMITTER ENTERS SPACE
CALCIUM CHANNEL

RECEPTOR

SYNAPTIC VESSICLES





ION CHANNEL


ENZYME
18
POST SYNAPTIC EVENTS
  • IONOTROPIC (LIGAND GATED) CHANNELS
  • VOLTAGE GATED CHANNELS
  • ELECTROPHYSIOLOGICAL PRINCIPLES

19
IONOTROPIC CHANNELS
  • BIND NEUROTRANSMITTER
  • OPEN CHANNEL
  • HYPER OR DE-POLARIZATION

20
THE SYNAPSENEUROTRANSMITTER BINDS TO
POSTSYNAPTIC RECEPTOR
CALCIUM CHANNEL

RECEPTOR
SYNAPTIC VESSICLES







ION CHANNEL


ENZYME
21
HOW ARE WE WIRED?CONNECTIONS BETWEEN NERVE CELLS
AXON
CELL BODY
AXON TERMINALS
AXON HILLOCK
DENDRITES
22
POSTSYNAPTIC POTENTIALS
EPSP
RESTING POTENTIAL
TIME
23
SPATIAL SUMMATION
SIMULTANEOUS INPUT FROM TWO SYNAPSES
ABOVE THRESHOLD
THRESHOLD
TIME
24
SPATIAL SUMMATION
SIMULTANEOUS INPUT FROM TWO SYNAPSES
ABOVE THRESHOLD
THRESHOLD
TIME
25
TEMPORAL SUMMATION
TOO FAR APART IN TIME NO SUMMATION
TIME
26
TEMPORAL SUMMATION
CLOSER IN TIME SUMMATION BUT BELOW THRESHOLD
THRESHOLD
TIME
27
THE GOLDMAN-HODGKIN-KATZ (GHK) EQUATION
Ko ?Nao Vm 60 LOG
-------------------------- Ki ?Nai
? IS THE RATIO OF SODIUM TO POTASSIUM
PERMEABILITY
28
TEMPORAL SUMMATION
STILL CLOSER IN TIME ABOVE THRESHOLD
THRESHOLD
TIME
29
EPSP-IPSP CANCELLATION
30
HOW EXCITATION OCCURS-THE ROLE OF DEPOLARIZATION
AND HYPERPOLARIZATION
  • SUMMATION CAN DEPOLARIZE THE CELL BEYOND
    THRESHOLD
  • HYPERPOLARIZATION BLOCKS

31
(No Transcript)
32
NEURO TRANSMITTERS
  • ACETYL CHOLINE
  • DOPAMINE
  • NOREPINEPHRINE
  • EPINEPHRINE
  • SEROTONIN
  • HISTAMINE
  • GLYCINE
  • GLUTAMINE
  • GAMMA-AMINOBUTYRIC ACID (GABA)

33
IN THE SPACE
  • ENZYME CHEWS UP LIGAND
  • MASS ACTION CAUSES LIGAND TO DISSOCIATE FROM
    RECEPTOR

34
THE SYNAPSE
CALCIUM CHANNEL

RECEPTOR
SYNAPTIC VESSICLES




ION CHANNEL




ENZYME
35
THE SYNAPSE
CALCIUM CHANNEL

RECEPTOR
SYNAPTIC VESSICLES





ION CHANNEL



ENZYME
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