【精品】powerpoint 演示文稿山东大学医学院生理学研究所96.ppt
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1、1,LIU Chuan Yong 刘传勇Institute of PhysiologyMedical School of SDUTel 88381175(lab)88382098(office)Email:Website:,2,Section 2,Bioelectrical Phenomena of the Cell,3,Basic Concepts,VoltA charge difference between two points in space,4,Basic Concepts,Ions charged particlesAnions Negatively charged partic
2、lesCations Positively charged particles,5,Basic ConceptsForces that determine ionic movement,Electrostatic forcesOpposite charges attractIdentical charges repelConcentration forcesDiffusion movement of ions through semipermeable membraneOsmosis movement of water from region of high concentration to
3、low,6,Selective Permeability of Membranes,Some ions permitted to cross more easily than othersNeuronal membranes contain ion channelsProtein tubes that span the membraneSome stay open all the time(nongated)Some open on the occasion of an action potential,causing a change in the permeability of the m
4、embrane(gated),7,I.Membrane Resting Potential,A constant potential difference across the resting cell membraneCells ability to fire an action potential is due to the cells ability to maintain the cellular resting potential at approximately 70 mV(-.07 volt)The basic signaling properties of neurons ar
5、e determined by changes in the resting potential,8,Membrane Resting Potential,Every neuron has a separation of electrical charge across its cell membrane.The membrane potential results from a separation of positive and negative charges across the cell membrane.,9,Membrane Resting Potential,excess of
6、 positive charges outside and negative charges inside the membrane maintained because the lipid bilayer acts as a barrier to the diffusion of ions,gives rise to an electrical potential difference,which ranges from about 60 to 70 mV.(Microelectrode),10,Concept of Resting Potential(RP),A potential dif
7、ference across the cell membrane at the rest stage or when the cell is not stimulated.Property:It is constant or stableIt is negative inside relative to the outsideResting potentials are different in different cells.,11,Ion Channels,Two Types of Ion ChannelsGatedNon-Gated,12,Resting Membrane Potenti
8、al,Na+and Cl-are more concentrated outside the cell K+and organic anions(organic acids and proteins)are more concentrated inside.,13,Intracellular vs extracellular ion concentrations,Ion Intracellular ExtracellularNa+5-15 mM 145 mMK+140 mM 5 mMMg2+0.5 mM 1-2 mMCa2+10-7 mM 1-2 mMH+10-7.2 M(pH 7.2)10-
9、7.4 M(pH 7.4)Cl-5-15 mM 110 mM,14,Resting Membrane Potential,Potassium ions,concentrated inside the cell tend to move outward down their concentration gradient through nongated potassium channels But the relative excess of negative charge inside the membrane tend to push potassium ions out of the ce
10、ll,15,Potassium equilibrium,-90 mV,16,Resting Membrane Potential,But what about sodium?Electrostatic and Chemical forces act together on Na+ions to drive them into the cell The Na+channel close during the resting state,Na+is more concentrated outside than inside and therefore tends to flow into the
11、cell down its concentration gradient,Na+is driven into the cell by the electrical potential difference across the membrane.,17,Na+electrochemical gradient,18,Equilibrium Potentials,Theoretical voltage produced across the membrane if only 1 ion could diffuse through the membrane.If membrane only perm
12、eable to K+,K+diffuses until K+is at equilibrium.Force of electrical attraction and diffusion are=opposite.,19,Calculating equilibrium potentialNernst Equation,Allows theoretical membrane potential to be calculated for particular ion.Membrane potential that would exactly balance the diffusion gradie
13、nt and prevent the net movement of a particular ion.Value depends on the ratio of ion on the 2 sides of the membrane.,20,where,Co and Ci=extra and intracellular ion R=Universal gas constant(8.3 joules.K-1.mol-1)T=Absolute temperature(K)F=Faraday constant(96,500 coulombs.mol-1)z=Charge of ion(Na+=+1,
14、Ca2+=+2,Cl-=-1),For K+,with K+o=4 mmol.l-1 and K+i=150 mmol.l-1At 37C,EK=-97mV ENa=+60mv,21,K+o=4 mmol.l-1,22,Resting Membrane Potential,Resting membrane potential is less than Ek because some Na+can also enter the cell.The slow rate of Na+influx is accompanied by slow rate of K+outflux.Depends upon
15、 2 factors:Ratio of the concentrations of each ion on the 2 sides of the plasma membrane.Specific permeability of membrane to each different ion.Resting membrane potential of most cells ranges from-65 to 85 mV.,23,The Sodium-Potassium Pump,Dissipation of ionic gradients is ultimately prevented by Na
16、+-K+pumps,extrudes Na+from the cell while taking in K,24,Resting Potential,25,The formation of resting potential depends on:,Concentration difference of K+across the membranePermeability of Na+and K+during the resting stateNa+-K+pump,26,Factors that affect resting potential,Difference of K+ion conce
17、ntration across the membranePermeability of the membrane to Na+and K+.Action of Na+pump,27,Basic Electrophysiological Terms I:,Polarization:a state in which membrane is polarized at rest,negative inside and positive outside.Depolarization:the membrane potential becomes less negative than the resting
18、 potential(close to zero).Hyperpolarization:the membrane potential is more negative than the resting level.,28,Basic Electrophysiological Terms I:,Reverspolarization:a reversal of membrane potential polarity.The inside of a cell becomes positive relative to the outside.Repolarization:restoration of
19、normal polarization state of membrane.a process in which the membrane potential returns toward from depolarized level to the normal resting membrane value.,29,II Action Potential,Successive Stages:Resting StageDepolarization stageRepolarization stageAfter-potential stage,(1),(2),(3),(4),30,Concept,A
20、ction potential is a rapid,reversible,and conductive change of the membrane potential after the cell is stimulated.Nerve signals are transmitted by action potentials.,31,Action Potential Sequence,Voltage-gated Na+Channels open and Na+rushes into the cell,32,Action Potential Sequence,At about+30 mV,S
21、odium channels close,but now,voltage-gated potassium channels open,causing an outflow of potassium,down its electrochemical gradient,33,Action Potential Sequence,equilibrium potential of the cell is restored,34,Action Potential Sequence,The Sodium Potassium Pump is left to clean up the mess,35,Ion P
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