Q.Why is the axoplasm of a resting axon negatively charged ?
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Start your 14-day free trial to unlock the full solution →Unequal ion distribution (more K+ inside, more Na+ outside) maintained by the Na+-K+ pump, combined with the membrane's higher resting permeability to K+, makes the inside of a resting axon electrically negative relative to the outside.
The axonal membrane contains a Na+-K+ pump that actively transports sodium ions out of the axoplasm and potassium ions into it, using ATP, against their concentration gradients. This continuously maintains a much higher concentration of K+ inside the axon and a much higher concentration of Na+ outside it. At rest, the axonal membrane is considerably more permeable to K+ than to Na+ (through leak channels), so K+ ions tend to diffuse out of the cell down their concentration gradient faster than Na+ can diffuse in. Because K+ carries a positive charge, this net outward movement of K+ leaves behind an excess of negatively charged, large, non-diffusible organic ions and proteins inside the axoplasm that cannot follow K+ out. The …
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