Team:MIT mmethods
From 2010.igem.org
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<li>4. Leave all devices for 1 hour in the incubator (in the humidity box) for the gel to polymerize</li> | <li>4. Leave all devices for 1 hour in the incubator (in the humidity box) for the gel to polymerize</li> | ||
<li>5. [IMPORTANT. This protocol establishes a stable pocket of air between the two medium channels at the outlet port.] Fill channels with medium from reservoir ports (~50-100µL). Gently fill medium until the channels have been filled to the cell seeding filling ports. Do NOT fill all the way to the outlet port. Instead, be sure to leave air at the channel intersection and in the outlet port. Place a droplet of medium over the outlet port to trap the air inside. Place devices in incubator. They will be ready for cell seeding in 24hours. </li></ul> | <li>5. [IMPORTANT. This protocol establishes a stable pocket of air between the two medium channels at the outlet port.] Fill channels with medium from reservoir ports (~50-100µL). Gently fill medium until the channels have been filled to the cell seeding filling ports. Do NOT fill all the way to the outlet port. Instead, be sure to leave air at the channel intersection and in the outlet port. Place a droplet of medium over the outlet port to trap the air inside. Place devices in incubator. They will be ready for cell seeding in 24hours. </li></ul> | ||
+ | <b class="bolded">Cell Seeding</b><br> | ||
+ | <ul id="procedure"> | ||
+ | <li>1. Trypsinize cells, spin down (@ 1.2 rpm, 5 min), and resuspend in medium to a final concentration of 2 million cells/ml</li> | ||
+ | <li>2. Aspirate all reservoir and cell seeding ports all the way to the glass. Ensure that the suction tip is away from the channel, so that the channel is not dried out.</li> | ||
+ | <li>3. Add 20 μL of medium to the reservoir and cell seeding ports on the top channel. (This reduces the interstitial flow rate so that not too many cells are bunched up on the gel.)</li> | ||
+ | <li>4. Add 40 ul of cell suspension to one port of each channel.</li> | ||
+ | <li>5. Let cells attach for 1.5-2 hours and then aspirate all reservoir and cell seeding ports. Place large droplets of medium on the reservoir ports. Return devices to incubator.</li> | ||
+ | <li>6. Maintain devices with complete medium for 24 hours. Make sure large droplets are always present on both ports, to prevent evaporation. </li></ul> | ||
+ | <div id="bodybaby">Protocol for Deflection Experiments</div><br> | ||
+ | <b class="bolded">Tubing Setup Details</b><br> | ||
+ | <ul id="procedure"> | ||
+ | <li>1. Connect the outlet port to a ‘dead end’ (a cap at the end of the tubing that prevents liquid flow); use a tapered connection.</li> | ||
+ | <li>2. Connect the inlet port to a syringe. Note: The tubing should be sterilized.</li></ul> | ||
+ | |||
</td> | </td> |
Revision as of 03:26, 15 October 2010
Bacterial Construction Protocol
Bacterial Experimental Protocol
Phage western blot
Mammalian Protocol
Microfluidic stress
Materials
mammalian protocol |
The Mammalian team focused on creating a pressure-sensitive promoter and creating a standard protocol for mammalian genes.
1 HTD Preparation Protocol 1.1 PDMS Mixture Preparation 1.2 PDMS Pouring 1.3 PDMS Baking 1.4 PDMS-Device punching and Bonding 1.5 PDMS Device Bonding 1.6 PDL coating 1.7 Collagen filling 1.8 Cell Seeding 2 Protocol for Deflection Experiments 2.1 Tubing Setup Details 2.2 Adding Medium to Channels 2.3 Connecting device to pressure valve 2.4 Microcontroller details |
HTD Preparation Protocols (adapted from Yannis, Alisha) PDMS Mixture Preparation Materials
Procedure
PDMS Pouring
PDMS Baking
PDMS-Device punching and Bonding
PDMS Device Bonding - Plasma Treatment
PDL Coating
Collagen Filling Material
Procedure
Protocol for Deflection Experiments Tubing Setup Details
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