Boards and beyond Flashcards

1
Q

Bacteria with capsules

A
  • Strep pneumonia
  • H. influenza
  • N. meningitidis
  • E. coli
  • salmonella
  • Klebsiella
  • Group B strep (agalactiae)
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2
Q

how does the body defend against encapsulated bacteria?

A
  • B cells secrete capsular antibodies (IgG) - antibodies bind capsule
  • Phagocytosis consumes bacteria via Fc receptors from antibodies
  • Antibodies also bind complement leading to
    • formation of MAC -> cell death
    • Formation of C3b -> opsonizing for further phagocytosis
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3
Q

Mechanism of recurrent encapsulated bacterial infections

A
  • If there is a deficiency or loss of B cells, antibodies or complement
  • Also asplenia (risk of sepsis from encapsulated bacteria because of loss of splenic phagocytes)
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4
Q

What are capsular vaccines?

A
  • many vaccines utilize bacterial capsule polysaccharides because they are often weakly immunogenic
  • often conjugated to an immmune-stimulator protein such as (diphtheria toxoid, tetanus toxoid, meningococcal outer membrane protein, mutant diptheria protein
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5
Q

What conjugated vaccines are available for encapsulated bacteria?

A
  • Neisseria meningitides
  • Streptococcus pneumonia
  • Haemophilus influenzae type B
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6
Q

What is a glycocalyx?

A

a “sugar coat” made of polysaccharides that is similar to a capsule

forms biofilms

often adheres to catheters

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7
Q

Glycocalyx vs capsule

A
  • bacteria with distinct firmly attached gelatinous layer have a capsule
  • Bacteria with irregular slimy fuzz layer have a glycocalyx (biofilms)
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8
Q

Bacteria with glycocalyx

A

common one is S. epidermidis

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9
Q

Pili and fimbria structure

A
  • structurally similar to flagella
  • made of proteins
  • appendages or arms of bacteria
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10
Q

Functions of pili

A
  • ordinary pili (allows adherence to surfaces)
  • sex pili (attaches to another bacteria for conjugation)
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11
Q

Bacteria that have pili and fimbriae

A

commonly

E coli ( pili allow( attachment to urinary tract) UTIs/pyelonephritis)

Neisseria Gonorrhea (pili have antigenic variation so at risk for subsequent infections) (antigenic variation) because antibodies made for previous infection may not apply to another infection

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12
Q

What are plasmids?

A
  • small DNA molecules in a cell that are physically separate from chromosomal DNA
  • Can replicate independently
  • can contain genes for things like antibiotic resistance or toxins
  • They can be transferred from bacteria to bacteria
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13
Q

bacterial ribosomes subunits

A

50s and 30s Syedberg units

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14
Q

Tetracyclines bind

A

bacterial 30s subunit of ribosome

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15
Q

aminoglycosides interferes with?

A

bacterial 30s protein synthesis

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16
Q

What are spores?

A

dormant state called a spore where they become very highly resistant to starvation orenvironmental conditions

does not have metabolic activity but can later convert back to a metabollically active bacteria (like a seed)

17
Q

Spore structure

A
  • outermost layer is Coat
    • made of “keratin-like” protein
    • impermeable to many chemicals and antibacterial agents
  • Cortex/Core wall
    • innermost layer
    • made of peptidoglycans
  • Dipicolinic acid
    • large amounts inside spore
    • may help with heat resistance
18
Q

spore forming bacteria to know

5 listed

A
  • Bacillus anthracis
  • Bacillus cereus
  • Clostridium perfringens
  • Clostridium tetani
  • Clostridium botulinum