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방법 논문

Assessing Intracellular Bacterial Persistence and Antibiotic Resistance in a Mouse Model

164 조회수

2026년 7월 1일

이 논문에서

초록

Source: Zhang, C., et al., Development and Assessment of Intracellular Infection Models for Staphylococcus aureus. J. Vis. Exp. (2025)

The video demonstrates the isolation of kidneys containing Staphylococcus aureus-infected macrophages, followed by tissue homogenization to release intracellular bacteria. It quantifies bacterial persistence within macrophages in control and antibiotic-treated groups by counting colony-forming units.

프로토콜

All procedures involving animal models have been reviewed by the local institutional animal care committee and the JoVE veterinary review board. 

  1. Intracellular bacterial infection in mice
    1. Randomly divide 20 Balb/c mice into four groups (n=5, Figure 1A).
    2. For Group I, inject 3 x 106 CFU (Colony-Forming Unit) planktonic MRSA252 per mouse by intravenous injection. For Group II, inject 3 x 106 CFU planktonic MRSA252 (Methicillin-Resistant Staphylococcus aureus 252) and vancomycin (110 mg/kg; see Table of Materials) per mouse by intravenous injection. For Group III, inject the intracellular bacteria Staphylococcus aureus (S. aureus) by intravenous injection. For Group IV, inject the intracellular bacteria S. aureus and vancomycin (110 mg/kg) per mouse by intravenous injection.
    3. Place the mice under the infrared physiotherapy lamp until their tail veins become dilated.
    4. Intravenously inject 3 x 106 CFU planktonic MRSA252 per mouse of Group I and Group II. Intravenously inject the intracellular bacteria into the mice of Groups III and IV.
      NOTE: When using a syringe to collect liquid containing intracellular bacteria, it is recommended to first gently mix the liquid evenly with a pipette to ensure consistent infection levels across all mice.
    5. After 30 min, intravenously inject vancomycin into Group II and Group IV per mouse.
  2. Evaluation of in vivo intracellular infection model
    1. Evaluate the intracellular infection model of mice by counting the colonization of bacteria in the kidneys. After 24 h of injection, anesthetize the mice with 3% isoflurane and sacrifice them by cervical dislocation. Disinfect them in 75% ethyl alcohol.
    2. Immobilize the mice, lift the abdominal skin with tweezers with one hand, cut the abdominal skin of the mouse with ophthalmic scissors with the other hand, find the kidneys in the abdominal cavity, and completely strip the kidneys. Put them in PBS (Phosphate-Buffered Saline).
    3. Add 1 mL of PBS to the tissue grinding tube. Transfer the kidneys from each mouse into separate grinding tubes and grind until no solid tissue remains. Pour the homogenized tissue into individual Eppendorf tubes and label each tube with the corresponding mouse identification.
    4. Use PBS to serially dilute the tissue homogenate. Spot each dilution onto separate TSA (Tryptic Soy Agar) plates and incubate overnight at 37 °C. Count the colonies and analyze the data (Figure 1B).

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결과

figure-results-1

Figure 1: Intracellular infection with MRSA252 (Methicillin-Resistant Staphylococcus aureus 252) is resistant to vancomycin killing. (A) Graphical abs...

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재료

이 논문에 사용된 재료 목록
이름회사카탈로그 번호댓글
Beef extract powderBBI, UKA600114-0500 
Biohazard safety equipmentHeal force, ChinaVS-1300L-u 
Cell incubatorESCO, SingaporeCCL-170B-8 
Centrifuge M1416RRWD, ChinaM1416R 
Centrifuge tubeGuanghou Labselect, ChinaCT-002-50A 
GentamycinShanghai Sangon, ChinaB540724-0010 
IncubatorShanghai Hengzi, ChinaHDPF-150 
Methicillin-Resistant Staphylococcus aureus 252Third Military Medical University, Chinanull 
Penicillin and StreptomycinShanghai Beyotime, ChinaC0222 
Phosphate Buffer SolutionShanghai Beyotime, ChinaST476 
SalineSichuan Kelun, Chinanull 
Tryptic Soy Agar (TSA) platesBeijing AOBOX Biotechnology Co., LTD,China02-130 
Tryptic Soy Broth (TSB) mediumBeijing AOBOX Biotechnology Co., LTD,China02-102K 
TryptoneOXOID, UKLP0042B 
VancomycinShanghai Beyotime, ChinaST2807-250mg 

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