Unit 1 BIO 201 GCU

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Last updated 3:56 AM on 10/2/26
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109 Terms

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Pinocytosis

Cell drinking

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Phagocytosis

Cell eating

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Exocytosis

release of substances outside a cell by the fusion of a vesicle with the membrane.

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Endocytosis

process by which a cell takes material into the cell by infolding of the cell membrane

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isotonic solution

when the concentration of two solutions is the same (moving in and out equally)

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hypotonic solution

Solute concentration is less than the inside the cell; cell gains water

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oncotic pressure

pulls fluid into the capillaries and/or prevents fluid from leaving.

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hydrostatic pressure

increases filtration by pushing fluid and solute OUT of the capillaries

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hemolysis

destruction/split of red blood cells

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active transport

the movement of ions or molecules across a cell membrane into a region of higher concentration, assisted by enzymes and requiring energy.

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passive(facilitated) transport

the movement of substances across a cell membrane without the use of energy by the cell

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Co-transport

TWO substances are transported together by one protein no ATPase activity

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Countertransport

One substance is being transported into the cell membrane and the other is getting transported in the opposite direction.

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Channel Mediated

Only the right shape gets through example little kid shape puzzles

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the three categories of transport across the cell membrane.

• Active transport, Carrier Mediated, Channel mediated

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the structure of the mitochondrion

outer membrane, inter membrane space, inner membrane, cristae (folds in im), matrix

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phosphorylation

The metabolic process of introducing a phosphate group into an organic molecule.

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Hydrolysis

how the body breaks the bonds between the last two phosphates in ATP, which is what gives us energy

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ATP synthase (Enzyme) does what?

Makes ATP

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ATP-ase (Enzyme)

break down of ATP

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Metabolism

"Work" the chemical processes that occur within a living organism in order to maintain life.

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Glucose"Bodies Gold"

A simple sugar that is an important source of energy.

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ATP

(adenosine triphosphate)main energy source that cells use for most of their work

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ADP

(Adenosine Diphosphate) The compound that remains when a phosphate group is removed from ATP, releasing energy

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AMP

Adenosine monophosphate, ATP minus 2 phosphate groups

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What ion is used to power ATP synthase in order to regenerate ATP?

H+ ions

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aerobic respiration

requires oxygen

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anaerobic respiration

Does not require oxygen

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Oxidation

The loss of electrons from a substance involved in a redox reaction.

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reduction

Gain of electrons

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Exergonic

Chemical reactions that release energy

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Catabolic

A process in which large molecules are broken down

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What is the fate of the pyruvate generated at the end of glycolysis? In other words, where does it go next?

Gets broken up and goes into fermentation (Anaerobic) or goes into the Krebs cycle (aerobic)

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Is lactic acid fermentation or alcoholic fermentation efficient ways to generate energy?

No, cost 6 ATPs only returns 2

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What is the purpose of the Cori Cycle (Lactic acid cycle)?

If the body runs out of oxygen the body can stay alive and functioning for a few more minutes.

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The Krebs cycle produces what?

CO2, NADH, FADH2 that carry energy to the second part of cellular respiration

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What is Oxygen's role in the electron transport chain?

To stabilize H ions

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Cellular Respiration steps and how much ATP each one produces

  1. Glycolysis (NET 2) 2. Krebs Cycle (Net 2) 3. Electron Transport Chain (Net 32)
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Glycolysis

first step in releasing the energy of glucose, in which a molecule of glucose is broken into two molecules of Pyruvate's

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Krebs cycle

second stage of cellular respiration, in which pyruvic acid is broken down into carbon dioxide in a series of energy-extracting reactions

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Electron Transport Chain

a series of proteins in which the high-energy electrons from the Krebs cycle are used to convert ADP into ATP

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Anatomy and Physiology

structure and function

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Gross Anatomy

Macroscopic, looking at large structures.

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Surface Anatomy

Study of form and superficial surfaces.

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Regional Anatomy

Specific areas of the body, ex. Heart, neck, trunk.

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Systemic Anatomy

Study of the organ system and how they function together in a coordinate manner.

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Microscopic anatomy

study of structures we cannot see, ex. Cytology(study of cells) and Histology(study of tissues)

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Cell physiology

study of the function of the cell

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Organ physiology

The study of the function of a specific organ.

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Systemic physiology

The function of a specific organ system.

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Pathological physiology

effects of disease on an organ function

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The levels of structural organization that make up the human body

chemical, cellular, tissue, organ, organ system, organism

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Chemical Level

Atom, the smallest stable unit of matter

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Tissue Level

Tissues, groups of cells working together to preform one specific function.

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Organ Level

Organs, made up of two or more tissues working together for a specific function, ex. Layers of Connective tissue & cardiac muscle to form the heart.

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Organ System Level

A group of organs working together to perform a particular function

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Organism Level

The human body all the levels working together to form one the highest level.

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Catabolism

Breaks down

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Anabolism

Builds up

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homeostasis

(Equilibrium) The body way of staying balanced through positive and negative responses. Without it we would DIE.

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Intrinsic/Autoregulation

Automatic response in a cell, tissue, or organ to some environmental change

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Extrinsic Regulation

Response to an environment change controlled by nervous and endocrine systems

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Three control systems involved in maintaining homeostasis

(1) Receptor - Receives the signal of environmental change, (2) Control Center - Process the signal of change and sends out the command to the effector, (3) Effector - Responders to the change either through increases or decreases the stimulus. Aka. positive and negative responses!

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Negative Feedback

-A way of counteracting a change

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Positive Feedback

Initial stimulus produces a response that exaggerates or enhances the original change.-Ex. Child birth; Causes the body to dilate and respond to the baby coming out.

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4 major elements found in the human body

Oxygen,Hydrogen,Carbon,Nitrogen

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Pure covalent bond

no difference between the two atoms sharing the electrons. The electronegativity of the two atoms is identical.

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Polar covalent

unequal sharing of electrons

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diatomic

A molecule consisting of two atoms

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List the seven most common diatomic elements

hydrogen,nitrogen,oxygen,fluorine,chlorine,iodine, and Bromine

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Describe the process of hydrogen bonding and its importance in the interaction between

The hydrogen atom of a water molecule have a slight positive charge and the oxygen atom has a slight negative charge. Hydrogen bonding occurs between water molecules.

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surface tension

the force that acts on the surface of a liquid and that tends to minimize the area of the surface

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Explain why when a person's cells freeze, the damage is often irreversible.

When the cell de-frost it expands and ruptures

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four properties of water

solubility, reactivity, high heat capacity, lubrication

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Dipolar molecule

A molecule that has two positive ends and two negative ends such as the water molecule.

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Hydrophilic head

water loving

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Hydrophobic

Water fearing

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What is the major organ responsible for electrolyte balance in the human body?

Kidneys

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List the major electrolytes found in the human body that are necessary for survival.

Sodium (Na+),Chloride (Cl-),Potassium (K+),Magnesium (Mg++),Calcium(Ca++),Phosphate (HPO4-),Bicarbonate (HCO3-)

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pH

  • A measure of acidity or alkalinity of water soluble substances.


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Acidosis

  • Excess H+ in body fluid (low pH), Below 7.35


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Alkalosis

  • Excess OH- in body fluid (high pH),Above 7.45


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Acid

pH lower than 7.0, high H+ concentration, low OH— concentration

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Base/-/pH higher than 7.0,low H+ concentration, ,high OH— concentration

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organic compounds

Carbon and hydrogen always form the bases

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How many bonds does carbon generally form

four

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Monosaccharaides are

simple sugars

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Disaccharides

double sugars, consisting of two monosaccharides joined by a covalent bond

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Glycogen

Storage form of glucose

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Seven Major Protein Functions

Support(Structural proteins),Movement(Contractile proteins),Transport (Transport (carrier) proteins),Buffering(Regulation of pH),Metabolic Regulation(Enzymes),Coordination and Control (Hormones), Defense (Antibodies)

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amino acid

Building blocks of protein

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dehydration synthesis

A chemical reaction in which two molecules covalently bond to each other with the removal of a water molecule.

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Hydrolysis

A chemical process that splits a molecule by adding water.

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primary protein structure

sequence of amino acids

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secondary protein structure

occurs when the sequence of amino acids are linked by hydrogen bonds

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tertiary protein structure

three-dimensional folding pattern of a protein due to side chain interactions (a shoe lace)

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quaternary protein structure

2+ protein chains forming functional protein (A fist of shoe laces)

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enzymes

Proteins that speed up chemical reactions

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endergonic reaction

Absorbs work energy

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exergonic reaction

releases work energy