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*Consists of interconnected cells embedded in a calcified, collagenous matrix
 
*Consists of interconnected cells embedded in a calcified, collagenous matrix
 
*Living, dynamic, responsive tissue, growing and remodelling throughout life
 
*Living, dynamic, responsive tissue, growing and remodelling throughout life
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Bone is comprised of:
 
Bone is comprised of:
 
*Matrix:  
 
*Matrix:  
**Organic component: "Collagen I", which resists tension
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**'''Osteoid''': Organic component
**Bone-specific proteins: Osteonectin, Osteopontin, Osteocalcin
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***Uncalcified, homogeneous substance, Stains light pink with H&E
**Inorganic component: Calcium, Phosphorus, Bicarbonate, Citrate, Potassium, Magnesium, Sodium, which provide rigidity
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***"Type I Collagen" (90%), which resists tension  
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***Bone-specific proteins(10%): Osteonectin, Osteopontin, Osteocalcin
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**'''Mineral''': Inorganic component, provides rigidity
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**Crystalline lattice of calcium phosphate and calcium carbonate
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**Also contains Mg, Mn, Zn, Cu, Na, F
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**Accounts for 65% of bone
    
*Cells:
 
*Cells:
**'''Osteoblasts''': single layer of cuboidal cells which synthesize bone extracellular matrix (ECM)
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**'''Osteoblasts''': single layer of mesenchymal cells which synthesize bone extracellular matrix (ECM)
***Basophilic cytoplasm; When inactive - less cytoplasm -> flattened
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***When active, appear plump and cuboidal, with basophilic cytoplasm
***Produce bone matrix = '''osteoid''' - uncalcified
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****Produce bone matrix = '''osteoid'''  
****Homogeneous substance, Stains light pink with H&E
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****Cell membranes are rich in alkaline phosphatase (ALP)
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****Possibly involved in pumping calcium across membranes
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****Promoted by growth factors
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****Have receptors for [[Bones - normal#Bone resorption|PTH]]: contract in response -> provide space for osteoclasts to attach
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***When inactive - less cytoplasm -> flattened
 
**'''Osteocytes''': osteoblasts embedded in their own matrix; reside within '''lacunae''' and are interconnected via channels forming '''canaliculi'''
 
**'''Osteocytes''': osteoblasts embedded in their own matrix; reside within '''lacunae''' and are interconnected via channels forming '''canaliculi'''
 
***'''Canaliculi''' create connections to form a huge neural-like junctional organization
 
***'''Canaliculi''' create connections to form a huge neural-like junctional organization
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