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Desalted Duck Egg White Peptides Promote Calcium Uptake and Modulate Bone Formation in the Retinoic Acid-Induced Bone Loss Rat and Caco-2 Cell Model
by
Hou, Tao
, Kolba, Nikolai
, Liu, Yanshuang
, Guo, Danjun
, He, Hui
in
absorption
/ acid treatment
/ Alendronate - pharmacology
/ alkaline phosphatase
/ Alkaline Phosphatase - metabolism
/ Animals
/ blood serum
/ Bone and Bones - drug effects
/ Bone and Bones - metabolism
/ bone density
/ Bone Density - drug effects
/ Bone Diseases, Metabolic - chemically induced
/ Bone Diseases, Metabolic - drug therapy
/ bone formation
/ bone resorption
/ Caco-2 Cells
/ calcium
/ Calcium - blood
/ Calcium - pharmacokinetics
/ calcium channels
/ Calcium Channels - metabolism
/ diet
/ Disease Models, Animal
/ duck eggs
/ Ducks
/ egg albumen
/ Egg White - chemistry
/ Female
/ females
/ human cell lines
/ Humans
/ in vitro studies
/ laboratory animals
/ osteocalcin
/ Osteocalcin - blood
/ osteoclasts
/ Osteoclasts - drug effects
/ Osteoclasts - metabolism
/ Osteogenesis - drug effects
/ peptides
/ Peptides - pharmacology
/ Rats
/ Rats, Wistar
/ retinoic acid
/ Rodents
/ therapeutics
/ transient receptor potential vanilloid channels
/ Tretinoin - pharmacology
/ TRPV Cation Channels - metabolism
/ Vitamin D
2017
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Desalted Duck Egg White Peptides Promote Calcium Uptake and Modulate Bone Formation in the Retinoic Acid-Induced Bone Loss Rat and Caco-2 Cell Model
by
Hou, Tao
, Kolba, Nikolai
, Liu, Yanshuang
, Guo, Danjun
, He, Hui
in
absorption
/ acid treatment
/ Alendronate - pharmacology
/ alkaline phosphatase
/ Alkaline Phosphatase - metabolism
/ Animals
/ blood serum
/ Bone and Bones - drug effects
/ Bone and Bones - metabolism
/ bone density
/ Bone Density - drug effects
/ Bone Diseases, Metabolic - chemically induced
/ Bone Diseases, Metabolic - drug therapy
/ bone formation
/ bone resorption
/ Caco-2 Cells
/ calcium
/ Calcium - blood
/ Calcium - pharmacokinetics
/ calcium channels
/ Calcium Channels - metabolism
/ diet
/ Disease Models, Animal
/ duck eggs
/ Ducks
/ egg albumen
/ Egg White - chemistry
/ Female
/ females
/ human cell lines
/ Humans
/ in vitro studies
/ laboratory animals
/ osteocalcin
/ Osteocalcin - blood
/ osteoclasts
/ Osteoclasts - drug effects
/ Osteoclasts - metabolism
/ Osteogenesis - drug effects
/ peptides
/ Peptides - pharmacology
/ Rats
/ Rats, Wistar
/ retinoic acid
/ Rodents
/ therapeutics
/ transient receptor potential vanilloid channels
/ Tretinoin - pharmacology
/ TRPV Cation Channels - metabolism
/ Vitamin D
2017
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Desalted Duck Egg White Peptides Promote Calcium Uptake and Modulate Bone Formation in the Retinoic Acid-Induced Bone Loss Rat and Caco-2 Cell Model
by
Hou, Tao
, Kolba, Nikolai
, Liu, Yanshuang
, Guo, Danjun
, He, Hui
in
absorption
/ acid treatment
/ Alendronate - pharmacology
/ alkaline phosphatase
/ Alkaline Phosphatase - metabolism
/ Animals
/ blood serum
/ Bone and Bones - drug effects
/ Bone and Bones - metabolism
/ bone density
/ Bone Density - drug effects
/ Bone Diseases, Metabolic - chemically induced
/ Bone Diseases, Metabolic - drug therapy
/ bone formation
/ bone resorption
/ Caco-2 Cells
/ calcium
/ Calcium - blood
/ Calcium - pharmacokinetics
/ calcium channels
/ Calcium Channels - metabolism
/ diet
/ Disease Models, Animal
/ duck eggs
/ Ducks
/ egg albumen
/ Egg White - chemistry
/ Female
/ females
/ human cell lines
/ Humans
/ in vitro studies
/ laboratory animals
/ osteocalcin
/ Osteocalcin - blood
/ osteoclasts
/ Osteoclasts - drug effects
/ Osteoclasts - metabolism
/ Osteogenesis - drug effects
/ peptides
/ Peptides - pharmacology
/ Rats
/ Rats, Wistar
/ retinoic acid
/ Rodents
/ therapeutics
/ transient receptor potential vanilloid channels
/ Tretinoin - pharmacology
/ TRPV Cation Channels - metabolism
/ Vitamin D
2017
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Desalted Duck Egg White Peptides Promote Calcium Uptake and Modulate Bone Formation in the Retinoic Acid-Induced Bone Loss Rat and Caco-2 Cell Model
Journal Article
Desalted Duck Egg White Peptides Promote Calcium Uptake and Modulate Bone Formation in the Retinoic Acid-Induced Bone Loss Rat and Caco-2 Cell Model
2017
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Overview
Desalted duck egg white peptides (DPs) have been proven to promote calcium uptake in Caco-2 cells and rats treated with a calcium-deficient diet. The retinoic acid-induced bone loss model was used to evaluate the effect of DPs on calcium absorption and bone formation. Three-month-old Wistar female rats were treated with 0.9% saline, DPs (800 mg/kg), or alendronate (5 mg/kg) for three weeks immediately after retinoic acid treatment (80 mg/kg) once daily for two weeks. The model group was significantly higher in serum bone alkaline phosphatase than the other three groups (p < 0.05), but lower in calcium absorption rate, serum osteocalcin, bone weight index, bone calcium content, bone mineral density, and bone max load. After treatment with DPs or alendronate, the absorption rate increased and some serum and bone indices recovered. The morphology results indicated bone tissue form were ameliorated and numbers of osteoclasts decreased after supplementation with DPs or alendronate. The in vitro study showed that the transient receptor potential vanilloid 6 (TRPV6) calcium channel was the main transport pathway of both DPs and Val-Ser-Glu-Glu peptitde (VSEE), which was identified from DPs. Our results indicated that DPs could be a promising alternative to current therapeutic agents for bone loss because of the promotion of calcium uptake and regulation of bone formation.
Publisher
MDPI AG,MDPI
Subject
/ Alkaline Phosphatase - metabolism
/ Animals
/ Bone and Bones - drug effects
/ Bone Diseases, Metabolic - chemically induced
/ Bone Diseases, Metabolic - drug therapy
/ calcium
/ Calcium Channels - metabolism
/ diet
/ Ducks
/ Female
/ females
/ Humans
/ peptides
/ Rats
/ Rodents
/ transient receptor potential vanilloid channels
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