Copyright 2009, John Wiley & Sons, Inc. Chapter 25: Metabolism and Nutrition.

Slides:



Advertisements
Similar presentations
Metabolism and Energy Balance
Advertisements

Chapter 5 - Cell Respiration and Metabolism Metabolism - the sum of all the chemical reactions that occur in the body. It is comprised of:  anabolism.
Chapter 22 Energy balance Metabolism Homeostatic control of metabolism
Metabolism Definition: Sum of all chemical reactions in the body
30.1 Organization of the Human Body & 30.2 Food and Nutrition
Metabolism. Appetite Hunger and satiety are regulated by a complex interaction of multiple brain centers, hormones, and sensory and motor pathways.
Chapter 24 - Nutrition, Metabolism, and Body Temperature Regulation
Chapter 3 DIGESTION, ABSORPTION, AND METABOLISM. Digestion and Absorption Biochemically, “you are what you eat” is true! Food and fluid taken into the.
Copyright © 2004 Pearson Education, Inc., publishing as Benjamin Cummings  High-energy phosphate groups are transferred directly from phosphorylated substrates.
Metabolism Chapter 25.
Chapter 20 Nutrition and Metabolism
Metabolism II.
Homeostatic Control of Metabolism
Overview of Energy and Metabolism 1.The food we eat, (carbohydrates, lipids, proteins, and Nucleic Acids), are our only source of energy for doing the.
Chapter 25: Metabolism and Nutrition
Objectives 30.2 Nutrition - Explain how food provides energy.
Copyright © 2009 Wolters Kluwer Health | Lippincott Williams & Wilkins Memmler’s The Human Body in Health and Disease 11 th edition Chapter 20 Metabolism,
Copyright © 2004 Pearson Education, Inc., publishing as Benjamin Cummings Fundamentals of Anatomy & Physiology SIXTH EDITION Frederic H. Martini PowerPoint.
Copyright © 2004 Pearson Education, Inc., publishing as Benjamin Cummings Fundamentals of Anatomy & Physiology SIXTH EDITION Frederic H. Martini PowerPoint.
Objectives 30.2 Nutrition - Explain how food provides energy.
Your Body’s Need for Food
Proteins Sources of proteins –Proteins are assembled from a pool of 20 different amino acids –The body synthesizes amino acids from other compounds in.
Chapters 7 & 8 Metabolism & Energy Balance METABOLISM  Metabolism – the sum total of all chemical reactions that take place in living cells  Metabolic.
Nutrition, Metabolism, and Temperature Regulation $100 $200 $300 $400 $500 $100$100$100 $200 $300 $400 $500 Nutrition FINAL ROUND Carbohydrate Metabolism.
Temperature Regulation
Metabolism is all the chemical reactions that occur in an organism Cellular metabolism Cells break down excess carbohydrates first, then lipids Cells conserve.
Metabolism—How do we obtain energy from foods? Susan Algert, Ph.D., R.D.
2 Fuel for Exercising Muscle: Metabolism and Hormonal Control chapter.
Chapter 11 Major Minerals and Bone Health. Copyright 2010, John Wiley & Sons, Inc. Minerals in the Body Minerals are elements needed by the body in small.
Your body needs six essential nutrients in order to stay healthy: These are the building blocks of life, if any are absent from your diet for too long,
PRINCIPLES OF HUMAN PHYSIOLOGY THIRD EDITION Cindy L. Stanfield | William J. Germann PowerPoint ® Lecture Slides prepared by W.H. Preston, College of the.
CHAPTER 9 ENERGY METABOLISM. LEARNING OUTCOMES Explain the differences among metabolism, catabolism and anabolism Describe aerobic and anaerobic metabolism.
ELAINE N. MARIEB EIGHTH EDITION 14 Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings PowerPoint ® Lecture Slide Presentation by.
Chapter 13 NUTRITION AND PHYSICAL ACTIVITY. Exercise, Health and Fitness Fitness is defined as the ability to perform routine physical activity without.
Chapter 5 Cell Respiration & Metabolism
Chapter 5 Cell Respiration and Metabolism
The Digestive System and Body Metabolism
Nutrition. Nutrients Substances in foods that provide energy and materials for cell development, growth and repair Energy: –Every body activity needs.
Slide 1 Mosby items and derived items © 2012 by Mosby, Inc., an affiliate of Elsevier Inc. Chapter 16 Nutrition and Metabolism.
Copyright © 2004 Pearson Education, Inc., publishing as Benjamin Cummings Fundamentals of Anatomy & Physiology SIXTH EDITION Frederic H. Martini PowerPoint.
Chapter 13 Nutrition and Physical Activity. Copyright 2010, John Wiley & Sons, Inc. Exercise, Health and Fitness Fitness is defined as the ability to.
Chapter 8 The Water-Soluble Vitamins. Copyright 2010, John Wiley & Sons, Inc. Vitamin Talk Vitamins are organic compounds essential in the diet to promote.
METABOLISM AND NUTRITION By: Tallie and Bella. VOCAB  Acetyl-CoA: A molecule formed from pruvic acid in the mitochondria when oxygen is present; a key.
sn6.sci.bio.fuel/ Chapter 25: Metabolism and Nutrition.
Substrate Breakdown The free Energy of oxidation of a food is the amount of energy liberated by the complete oxidation of the food.
Principles of Anatomy and Physiology
Lesson Overview 30.2 Food and Nutrition.
Unit I: Metabolism Food Utilization
Chapter 16 Nutrition and Metabolism
ELAINE N. MARIEB EIGHTH EDITION 14 Copyright © 2006 Pearson Education, Inc., publishing as Benjamin Cummings PowerPoint ® Lecture Slide Presentation by.
Principle Metabolic Pathways During Postabsorptive State Process Diagrams Step-by-Step Copyright © 2007 by John Wiley & Sons, Inc.
PowerPoint ® Lecture Slide Presentation by Patty Bostwick-Taylor, Florence-Darlington Technical College Copyright © 2009 Pearson Education, Inc., publishing.
Organ and metabolism HENDRA WIJAYA.
Chapter 10 Nutrition, Fitness, and Physical Activity.
Anatomy and Physiology
Metabolism Chapter 25. Nutrients Essential nutrients - those that cannot be synthesized by body cells and must be ingested in the diet Nutrients- a substance.
Sports Nutrition A Balanced Diet A Balanced Diet.
Nutrition and Metabolism
Activity #12: Food and Nutrition
NUTRITION AND METABOLISM
When dietary protein is in excess, amino acids are
Metabolism II.
Chapter 5 Lipids: Fats, Phospholipids, and Sterols
Anatomy & Physiology II
Chapter 16 Nutrition and Metabolism
Nutrition, Metabolism, and Temperature Regulation
Chapter 5: Cell Respiration & Metabolism.
Overview of Energy and Metabolism
Nutrition and Metabolism
Presentation transcript:

Copyright 2009, John Wiley & Sons, Inc. Chapter 25: Metabolism and Nutrition

Copyright 2009, John Wiley & Sons, Inc. Key molecules at metabolic crossroads 3 molecules play pivotal roles in metabolism Stand at metabolic crossroads – reactions that occur or not depend on nutritional or activity status of individual 1. Glucose 6-phosphate  Made shortly after glucose enters body cell  4 fates – synthesis of glycogen, release of glucose into blood stream, synthesis of nucleic acids, glycolysis

Copyright 2009, John Wiley & Sons, Inc. Key molecules at metabolic crossroads 2. Pyruvic acid  If there is enough oxygen, aerobic cellular respiration occurs  If there is not enough oxygen, anaerobic reactions can produce lactic acid, produce alanine or gluconeogenesis 3. Acetyl Coenzyme A  When ATP is low and oxygen plentiful, most pyruvic acid goes to ATP production via Acetyl CoA  Acetyl CoA os the entry into the Krebs cycle  Can also be used for synthesis of certain lipids

Copyright 2009, John Wiley & Sons, Inc. Metabolic adaptations During the absorptive state ingested nutrients are entering the blood stream  Glucose readily available for ATP production During postabsorptive state absorption of nutrients from GI tract complete  Energy needs must be met by fuels in the body  Nervous system and red blood cells depend on glucose so maintaining steady blood glucose critical  Effects of insulin dominate

Copyright 2009, John Wiley & Sons, Inc. Metabolism during absorptive state Soon after a meal nutrients enter blood Glucose, amino acids, and triglycerides in chylomicrons 2 metabolic hallmarks Oxidation of glucose for ATP production in all body cells Storage of excess fuel molecules in hepatocytes, adipocytes, and skeletal muscle cells Pancreatic beta cells release insulin Promotes entry of glucose and amino acids into cells

Copyright 2009, John Wiley & Sons, Inc. Principal metabolic pathways during the absorptive state

AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT + H 2 O +CO 2 MOST TISSUES Oxidation ATP 1 AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT HEPATOCYTES IN LIVER + H 2 O +CO 2 MOST TISSUES Oxidation ATP Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glycogen Glucose + H 2 O +CO 2 ATP 1 2 AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT HEPATOCYTES IN LIVER + H 2 O +CO 2 MOST TISSUES Oxidation ATP Triglycerides ADIPOSE TISSUE VLDLs Triglycerides Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glycogen Glucose + H 2 O +CO 2 ATP AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT GLUCOSE HEPATOCYTES IN LIVER SKELETAL MUSCLE Storage + H 2 O +CO 2 MOST TISSUES Oxidation ATP Triglycerides ADIPOSE TISSUE VLDLs Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glucose Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glycogen Glucose Glycogen + H 2 O +CO 2 ATP AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT GLUCOSE HEPATOCYTES IN LIVER SKELETAL MUSCLE Storage + H 2 O +CO 2 MOST TISSUES Oxidation ATP Triglycerides ADIPOSE TISSUE VLDLs Triglycerides Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glucose Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glycogen Glucose Glycogen + H 2 O +CO 2 ATP AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT GLUCOSE HEPATOCYTES IN LIVER SKELETAL MUSCLE Storage + H 2 O +CO 2 MOST TISSUES Oxidation ATP Triglycerides ADIPOSE TISSUE VLDLs Triglycerides Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glucose Keto acids Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glycogen Glucose Glycogen + H 2 O +CO 2 ATP AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT GLUCOSE HEPATOCYTES IN LIVER SKELETAL MUSCLE Storage + H 2 O +CO 2 MOST TISSUES Oxidation ATP Triglycerides ADIPOSE TISSUE VLDLs Triglycerides Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glucose Keto acids Fatty acids Proteins Triglycerides Glyceraldehyde 3-phosphate Glycogen Glucose Glycogen + H 2 O +CO 2 ATP AMINO ACIDSGLUCOSE TRIGLYCERIDES (in chylomicrons) Blood GLUCOSE GASTROINTESTINAL TRACT GLUCOSE HEPATOCYTES IN LIVER SKELETAL MUSCLE Storage + H 2 O +CO 2 MOST TISSUES Oxidation ATP Triglycerides ADIPOSE TISSUE VLDLs Triglycerides Fatty acids Triglycerides Glyceraldehyde 3-phosphate Glucose Keto acids Fatty acids Proteins Triglycerides Glyceraldehyde 3-phosphate Glycogen Glucose Glycogen Proteins + H 2 O +CO 2 ATP

Copyright 2009, John Wiley & Sons, Inc. Metabolism during postabsorptive state  About 4 hours after the last meal absorption in small intestine nearly complete  Blood glucose levels start to fall  Main metabolic challenge to maintain normal blood glucose levels  Glucose production Breakdown of liver glycogen, lipolysis, gluconeogenesis using lactic acid and/or amino acids  Glucose conservation Oxidation of fatty acids, lactic acid, amino acids, ketone bodies and breakdown of muscle glycogen

Copyright 2009, John Wiley & Sons, Inc. Principal metabolic pathways during the postabsorptive state

1 Liver glycogen Glucose LIVER Blood HEARTADIPOSE TISSUE SKELETAL MUSCLE TISSUE OTHER TISSUES 1 Liver glycogen Glucose LIVER Glycerol Blood HEART Fatty acids Glycerol Triglycerides ADIPOSE TISSUE SKELETAL MUSCLE TISSUE OTHER TISSUES 2 Fatty acids 1 Liver glycogen Glucose LIVER Lactic acid Glycerol Blood HEART Fatty acids Glycerol Triglycerides ADIPOSE TISSUE SKELETAL MUSCLE TISSUE OTHER TISSUES 3 2 Fatty acids 1 Liver glycogen Keto acids Glucose Amino acids LIVER Lactic acid Glycerol Blood HEART Muscle proteins Fatty acids Glycerol Triglycerides ADIPOSE TISSUE Fasting or starvation SKELETAL MUSCLE TISSUE OTHER TISSUES Proteins Amino acids Fatty acids 1 Liver glycogen Keto acids Glucose Amino acids LIVER Lactic acid Glycerol Blood HEART Fatty acids Muscle proteins Fatty acids Glycerol Triglycerides ADIPOSE TISSUE Fasting or starvation SKELETAL MUSCLE TISSUE OTHER TISSUES Fatty acids Proteins Amino acids Fatty acids ATP Fatty acids 1 Liver glycogen Keto acids Glucose Amino acids LIVER Lactic acid Glycerol Blood HEART Fatty acids Muscle proteins Fatty acids Glycerol Triglycerides ADIPOSE TISSUE Fasting or starvation SKELETAL MUSCLE TISSUE OTHER TISSUES Fatty acids Proteins Amino acids Fatty acids Lactic acid ATP Fatty acids 1 Liver glycogen Keto acids Glucose Amino acids LIVER Lactic acid Glycerol Blood HEART Fatty acids Muscle proteins Fatty acids Glycerol Triglycerides ADIPOSE TISSUE Fasting or starvation SKELETAL MUSCLE TISSUE OTHER TISSUES Fatty acids Proteins Amino acids Fatty acids Lactic acid ATP Fatty acids 1 Liver glycogen Keto acids Glucose Amino acids LIVER Fatty acids Lactic acid Ketone bodies Glycerol Blood NERVOUS TISSUE Ketone bodies Glucose Starvation HEART Fatty acids Muscle proteins Fatty acids Glycerol Triglycerides ADIPOSE TISSUE Fasting or starvation SKELETAL MUSCLE TISSUE Ketone bodies OTHER TISSUES Fatty acids Proteins Amino acids Fatty acids Ketone bodies Lactic acid ATP Liver glycogen Keto acids Glucose Amino acids LIVER Fatty acids Lactic acid Ketone bodies Glycerol Blood NERVOUS TISSUE Ketone bodies Glucose Starvation HEART Fatty acids Muscle proteins Fatty acids Glycerol Triglycerides ADIPOSE TISSUE Fasting or starvation SKELETAL MUSCLE TISSUE Ketone bodies OTHER TISSUES Fatty acids Proteins Amino acids Glucose 6-phosphate Pyruvic acid Lactic acid Muscle glycogen (aerobic)(anaerobic) Amino acids Fatty acids Ketone bodies Lactic acid ATP O2O2 +O2O2 –

Copyright 2009, John Wiley & Sons, Inc. Hormones and autonomic nervous system regulate metabolism during postabsorptive state  As blood glucose decline, insulin secretion falls Glucagon – increases release of glucose into blood via gluconeogenesis and glycogenolysis  Sympathetic nerve endings of ANS release norepinephrine and adrenal medulla releases epinephrine and norepinephrine Stimulate lipolysis, glycogen breakdown

Copyright 2009, John Wiley & Sons, Inc. Heat and energy balance Heat – form of energy that can be measured as temperature and can be expressed in calories  calorie (cal) – amount of heat required to raise 1 gram of water 1°C  Kilocalorie (kcal) or Calorie (Cal) is 1000 calories Metabolic rate – overall rate at which metabolic reactions use energy  Some energy used to make ATP, some lost as heat  Basal metabolic rate (BMR) – measurement with body in quiet, resting, fasting condition

Copyright 2009, John Wiley & Sons, Inc. Body temperature homeostasis  Despite wide fluctuations in environmental temperatures, homeostatic mechanisms maintain normal range for internal body temperature  Core temperature (37°C or 98.6°F) versus shell temperature (1-6°C lower)  Heat produced by exercise, some hormones, sympathetic nervous system, fever, ingestion of food, younger age, etc.

Copyright 2009, John Wiley & Sons, Inc. Heat and engery balance Heat can be lost through  Conduction to solid materials in contact with body  Convection – transfer of heat by movement of a gas or liquid  Radiation – transfer of heat in form of infrared rays  Evaporation exhaled air and skin surface (insensible water loss) Hypothalamic thermostat in preoptic area  Heat-losing center and heat- promoting center

Copyright 2009, John Wiley & Sons, Inc. Thermoregulation If core temperature declines  Skin blood vessels constrict  Release of thyroid hormones, epinephrine and norepinephrine increases cellular metabolism  Shivering If core body temperature too high  Dilation of skin blood vessels  Decrease metabolic rate  Stimulate sweat glands

Copyright 2009, John Wiley & Sons, Inc. Negative feedback mechanisms that conserve heat and increase increase production

Copyright 2009, John Wiley & Sons, Inc. Nutrition Nutrients are chemical substances in food that body cells use for growth, maintenance, and repair 6 main types 1. Water – needed in largest amount 2. Carbohydrates 3. Lipids 4. Proteins 5. Minerals 6. Vitamins Essential nutrients must be obtained from the diet

Copyright 2009, John Wiley & Sons, Inc. Guidelines for healthy eating  We do not know with certainty what levels and types of carbohydrates, fat and protein are optimal  Different populations around the world eat radically different diets adapted to their particular lifestyle  Basic guidelines Eat a variety of foods Maintain a healthy weight Choose foods low in fat, saturated fat and cholesterol Eat plenty of vegetables, fruits and grain products Use sugars in moderation only

Copyright 2009, John Wiley & Sons, Inc. MyPyramid

Copyright 2009, John Wiley & Sons, Inc. Minerals  Inorganic elements that occur naturally in Earth’s crust  Eat foods that contain enough calcium, phosphorus, iron and iodine  Excess amounts of most minerals are excreted in urine and feces  Major role of minerals to help regulate enzymatic reactions

Copyright 2009, John Wiley & Sons, Inc. Vitamins  Organic nutrients required in small amounts to maintain growth and normal metabolism  Do not provide energy or serve as body’s building materials  Most are coenzymes  Most cannot be synthesized by the body  Vitamin K produced by bacteria in GI tract  Some can be assembled from provitamins  No single food contains all the required vitamins  2 groups Fat-soluble – A, D, E, K Water-soluble – several B vitamins and vitamin C

Copyright 2009, John Wiley & Sons, Inc. End of Chapter 25 Copyright 2009 John Wiley & Sons, Inc. All rights reserved. Reproduction or translation of this work beyond that permitted in section 117 of the 1976 United States Copyright Act without express permission of the copyright owner is unlawful. Request for further information should be addressed to the Permission Department, John Wiley & Sons, Inc. The purchaser may make back-up copies for his/her own use only and not for distribution or resale. The Publishers assumes no responsibility for errors, omissions, or damages caused by the use of theses programs or from the use of the information herein.