Difference between revisions of "Team:SZU-China/Demonstrate"

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     <title>Procedure</title>
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     <title>Demonstrate</title>
 
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                         <li><a href="https://2017.igem.org/Team:SZU-China/Demonstrate">DEMONSTRATE</a></li>
 
                         <li><a href="https://2017.igem.org/Team:SZU-China/Demonstrate">DEMONSTRATE</a></li>
 
                         <li><a href="https://2017.igem.org/Team:SZU-China/Protocol">PROTOCOL</a></li>
 
                         <li><a href="https://2017.igem.org/Team:SZU-China/Protocol">PROTOCOL</a></li>
                        <li><a href="https://2017.igem.org/Team:SZU-China/Notebook">NOTEBOOK</a></li>
 
  
 
                     </ul>
 
                     </ul>
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                             <p class="lead" style="color:black;">After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the sided itches, exposing the microcapsule. Now if we put the two parts of concrete column together by sticking them with a tape, we can build a micro-crack on the upper surface. So we mark these concrete columns and put them into the artificial seawaters for 28 days.  And you find the micro-crack on the upper surface be repaired like they never ever existed (as shown in Fig.1)</p><br />
 
                             <p class="lead" style="color:black;">After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the sided itches, exposing the microcapsule. Now if we put the two parts of concrete column together by sticking them with a tape, we can build a micro-crack on the upper surface. So we mark these concrete columns and put them into the artificial seawaters for 28 days.  And you find the micro-crack on the upper surface be repaired like they never ever existed (as shown in Fig.1)</p><br />
 +
                           
  
 +
                            <p class="lead" style="color:black">Spores (whole yeast medium and 2SG medium) were collected on a solid medium for 7 days.(As shown in Fig.1)</p>
 
                             <div style="width:60%;margin:0 auto">
 
                             <div style="width:60%;margin:0 auto">
                                 <img src="https://static.igem.org/mediawiki/2017/f/f9/T--SZU-China--d1.jpg" />
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                                 <img src="https://static.igem.org/mediawiki/2017/b/bf/T--SZU-China--demonstrate1.jpg" />
 
                             </div>
 
                             </div>
                            <p style="padding-top:5px;color:#2f2f2f;font-size:14px;width:75%;margin:0 auto">Fig 1. The comparison of repairing betweenWB800 (shown in upper two figures) and Modified WB800 (shown in under two figures)</p>
 
                            <br />
 
  
                             <br /><br />
+
                              
                             <p class="lead" style="color:black">And after 20 days, we take some concrete mole, running through the same protocol mentioned previously to see the repairing status (as shown in Fig.2) </p>
+
                             <p class="lead" style="color:black">2 ml of Deionized water was added to the solid culture dish and the spores were scraped with an applicator. The spore suspension was poured directly into a 10 ml centrifuge tube, and each group collected spores of 4-5 solid dishes</p>
  
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/0/08/T--SZU-China--demonstrate2.jpg" />
 +
                            </div>
  
                             <br />
+
                             <p class="lead" style="color:black">Microscopic microscopy spore detection: add deionized water on solid medium, scrape the spores, take the suspension 5μL on the slide, cover the coverslip under inverted microscope microscopy, start from the low magnification of the microscope, adjust the fine focus screw, and access the image in phase difference mode</p>
 +
                                                       
 +
                            <p class="lead" style="color:black">The spore suspension was centrifuged at 8000 r / min for 2 min, and the supernatant was discarded. To the precipitate, deionized water was added to 8 ml and the mixture was washed 8 times(As shown in Fig.3) </p>
 
                             <div style="width:60%;margin:0 auto">
 
                             <div style="width:60%;margin:0 auto">
                                 <img src="https://static.igem.org/mediawiki/2017/f/f9/T--SZU-China--d1.jpg" />
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                                 <img src="https://static.igem.org/mediawiki/2017/7/72/T--SZU-China--demonstrate3.jpg" />
 +
                            </div>
 +
                            <p class="lead" style="color:black">Configure CHL nutrient solution: 25 g of sodium lactate, 5 g of sodium nitrate, 0.0075 g of potassium dihydrogen phosphate, 0.375 g of magnesium sulfate, 1.25 g of inosine (last step). Add sodium lactate (viscous liquid), add the rotor to start mixing and then weighing the other components were added to the sodium lactate until completely mixed, and then 50ml volume to 50ml.</p>
 +
                            <p class="lead" style="color:black">Dilute the spores with CHL nutrient solution and count with a microscope plate under inverted microscope (cover-slide covers half of the counting chamber, take 2μL of spore CHL suspension on the coverslip boundary, push the coverslip to make bacteria Liquid into the counting room)</p>
 +
                            <p class="lead" style="color:black">Weigh 1gMCC and 0.1g clay, mixed in a clean beaker, add 1.5ml spore CHL suspension (3 times to join, each 0.5ml) mixed evenly. Take a hand to do a handful of microcapsules: first with four fingers from four directions to strengthen the powder, and then gently kneaded into a small ball, put in front of a good wrinkled weighing paper culture dish, cover the lid , Placed in 37 degrees incubator in 60h for condensation of water </p>
 +
                            <div style="width:80%;margin:0 auto">
 +
                                <div style="width:49%;float:left"><img src="https://static.igem.org/mediawiki/2017/f/f7/T--SZU-China--demonstrate4.jpg" style="width:90%" /></div>
 +
                                <div style="width:49%;float:left"><img src="https://static.igem.org/mediawiki/2017/9/92/T--SZU-China--demonstrate5.jpg" style="width:90%" /></div>
 +
                                                             
 
                             </div>
 
                             </div>
                            <center style="padding-top:5px;color:#2f2f2f;font-size:14px">Fig.2 The repairing status of a. blank group (no microcapsule) b. gerA group c. NMK-α group d.NMK-OF group</center>
 
                            <br /><br />
 
  
                             <p class="lead" style="color:black">This maybe a very limited way to truly understand how the self-healing concrete specifically undergoes. But we believe it is a very important way to achieve this exciting goal. With the success in the concrete-mold1.0, we can adjust our condition and craft concrete-mold 2.0 in the very future.</p>
+
                            <div style="clear:both"></div>
 +
                             <p class="lead" style="color:black">After 60h, use the culture dishes covered with cement powder, sieve to remove the coarse pieces of coarse cement powder 200g, according to the 0.4 water: cement ratio by adding 80ml deionized water, installed stir the machine, storing form the low-speed mixing 1min, and then turn to the highest Speed stirring for 2 min.</p>
 +
                            <p class="lead" style="color:black">Remove the cement basin, fill the cylindrical hollow resin into the cavity of the test chamber into the two-thirds of the cement, into a microcapsule on both sides of the gap in the middle, and then fill the cement ramming test block</p>
 +
                            <p class="lead" style="color:black">Gathered all concrete mold together, covered with a layer of plastic wrap, mark the mark, conservation for 2 days</p>
  
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                            <div style="width:60%;margin:0 auto">
                        <br /><br /><br />
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                                <img src="https://static.igem.org/mediawiki/2017/2/2a/T--SZU-China--demonstrate6.jpg" />
 +
                            </div>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/c/c6/T--SZU-China--demonstrate7.jpg" />
 +
                            </div>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/3/39/T--SZU-China--demonstrate71.jpg" />
 +
                            </div>
  
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/1/17/T--SZU-China--demonstrate8.jpg" />
 +
                            </div>
  
                    </div>
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                            <div style="width:60%;margin:0 auto">
                </div>
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                                <img src="https://static.igem.org/mediawiki/2017/3/3b/T--SZU-China--demonstrate9.jpg" />
 +
                            </div>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/5/53/T--SZU-China--demonstrate10.jpg" />
 +
                            </div>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/e/ed/T--SZU-China--demonstrate11.jpg" />
 +
                            </div>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/3/36/T--SZU-China--demonstrate12.jpg" />
 +
                            </div>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/e/e9/T--SZU-China--demonstrate13.jpg" />
 +
                            </div>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/d/dc/T--SZU-China--demonstrate14.jpg" />
 +
                            </div>
 +
                         
 +
                           
 +
                            <p class="lead" style="color:black">After that, take the solidified cement test block from the resin mold out, the cement block into the bag, make a mark, sealed 2 days</p>
 +
                            <div style="width:60%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/9/92/T--SZU-China--demonstrate15.jpg" />
 +
                            </div>
 +
                           
 +
                         
 +
                            <center style="padding-top:5px;color:#2f2f2f;font-size:14px">Fig.2 The repairing status of a. blank group (no microcapsule) b. gerA group c. NMK-α group d.NMK-OF group</center>
 +
                            <br /><br />
  
            </div><!--1-->
+
                            <p class="lead" style="color:black">Split the cement in the bag test block, with a vise to the cylindrical cement test block from the side of the split, to collect the appropriate split test block (buried in the test block in the microcapsules were split into two halves), with a transparent tape The pieces of the test pieces were re-bonded into a cylindrical shape</p>
 
+
                            <p class="lead" style="color:black">Put the re-glued test piece into the clean beaker vertically, pour it into the artificial seawater solution until the liquid level has not been tested. Place a layer of gauze on the beaker and place it in the shade for 28 days. Add artificial seawater to prevent evaporation</p>
        </section>
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                            <div style="width:80%;margin:0 auto">
 
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                                <div style="width:49%;float:left">
        <section class="cd-section" style="padding:96px 0;background-color:white">
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                                    <img src="https://static.igem.org/mediawiki/2017/f/ff/T--SZU-China--demonstrate16.jpg" />
            <div class="container">
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                                </div>
                <div class="row">
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                                <div style="width:49%;float:left">
                    <div class="col-sm-12">
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                                    <img src="https://static.igem.org/mediawiki/2017/6/60/T--SZU-China--demonstrate17.jpg" />
                        <h3 class="uppercase color-primary mb40 mb-xs-24" style="margin-bottom: 40px;">
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                                </div>
                            <center>Application</center>
+
                               
                        </h3>
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                            </div>
 
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                            <div style="clear:both"></div>
                        <div class="row text-center" style="width:80%;margin:0 auto;text-align:justify">
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                            <p class="lead" style="color:black;">Instead of just staying in the lab, we want our project to actually help people. Thus we did a lot of surveys and interviews with both villagers who build their own house and the engineer of HONGKONG-ZHUHAI-MACAO BRIDGE which is the longest cross-sea bridge in the world. We want to get to know the problem they met when building the constructions on different angles.</p><br />
+
  
 
                            
 
                            
                             <br />
+
                             <p class="lead" style="color:black">After 28 days, remove the test block and place the test block under microscopic examination of the microfracture</p>
                             <p class="lead" style="color:black">When we were doing surveys in Chendian Village, Chaonan District, Shantou, Guangdong. We came to know that cracks are really common among the neighborhood, there were even advertisements of helping strengthen the building on the street. With the common concrete and building technology they used cracks are inevitable. They don’t have regular checking system, and a lot of them don’t think they need to be repair even the visible cracks. But the capacity is usually very big.  This is not safe enough in our opinion. But if they use our concrete to build their house, with the damp weather and rain water, their cracks can be fixed by our self-healing system. They still don’t need to have regular checks, but this time there won’t be any potential safety hazard for the residents.</p>
+
                            <div style="width:30%;margin:0 auto">
                            <br/>
+
                                <img src="https://static.igem.org/mediawiki/2017/e/ed/T--SZU-China--demonstrate18.jpg" />
 
+
                            </div>
 +
                             <p class="lead" style="color:black">Under the microscope, you can see the microcrack lying in the middle between two grooves of concrete mold. And this is how it looks like when we have a x1000 horizon after 12days. So it is obviously that the microcrack has been repaired under the self-healing reaction of modified B.subtilis. In other words, it works.</p>
 
                              
 
                              
                             <p class="lead" style="color:black">Also, the deputy engineer of the HONGKONG-ZHUHAI-MACAO BRIDGE received our interview. They do have a lot of advanced devices for example chloridion detector to monitor the cracks, but none self-healing devices. Thus our self-healing system is definitely what they want. </p>
+
 
 +
                             <div style="width:50%;margin:0 auto">
 +
                                <img src="https://static.igem.org/mediawiki/2017/3/39/T--SZU-China--demonstrate19.jpg" />
 +
                            </div>
 +
 
 +
                            <div style="width:90%;margin:0 auto">
 +
                                <div style="width:33%;float:left;">
 +
                                    <img src="https://static.igem.org/mediawiki/2017/5/5a/T--SZU-China--demonstrate23.jpg" />
 +
                                </div>
 +
                                <div style="width: 33%; float: left;">
 +
                                    <img src="https://static.igem.org/mediawiki/2017/2/22/T--SZU-China--demonstrate20.jpg" />
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                                </div>
 +
                                <div style="width: 33%; float: left;">
 +
                                    <img src="https://static.igem.org/mediawiki/2017/8/8c/T--SZU-China--G84.jpg" />
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                                </div>
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                            </div>
  
 
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         </section>
 
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Revision as of 14:16, 1 November 2017

Demonstrate

Demonstrate

Experiment

After some days for the drying of concrete mold. Take out the column-like concrete from the mold. Then spilt the concrete right through the sided itches, exposing the microcapsule. Now if we put the two parts of concrete column together by sticking them with a tape, we can build a micro-crack on the upper surface. So we mark these concrete columns and put them into the artificial seawaters for 28 days. And you find the micro-crack on the upper surface be repaired like they never ever existed (as shown in Fig.1)


Spores (whole yeast medium and 2SG medium) were collected on a solid medium for 7 days.(As shown in Fig.1)

2 ml of Deionized water was added to the solid culture dish and the spores were scraped with an applicator. The spore suspension was poured directly into a 10 ml centrifuge tube, and each group collected spores of 4-5 solid dishes

Microscopic microscopy spore detection: add deionized water on solid medium, scrape the spores, take the suspension 5μL on the slide, cover the coverslip under inverted microscope microscopy, start from the low magnification of the microscope, adjust the fine focus screw, and access the image in phase difference mode

The spore suspension was centrifuged at 8000 r / min for 2 min, and the supernatant was discarded. To the precipitate, deionized water was added to 8 ml and the mixture was washed 8 times(As shown in Fig.3)

Configure CHL nutrient solution: 25 g of sodium lactate, 5 g of sodium nitrate, 0.0075 g of potassium dihydrogen phosphate, 0.375 g of magnesium sulfate, 1.25 g of inosine (last step). Add sodium lactate (viscous liquid), add the rotor to start mixing and then weighing the other components were added to the sodium lactate until completely mixed, and then 50ml volume to 50ml.

Dilute the spores with CHL nutrient solution and count with a microscope plate under inverted microscope (cover-slide covers half of the counting chamber, take 2μL of spore CHL suspension on the coverslip boundary, push the coverslip to make bacteria Liquid into the counting room)

Weigh 1gMCC and 0.1g clay, mixed in a clean beaker, add 1.5ml spore CHL suspension (3 times to join, each 0.5ml) mixed evenly. Take a hand to do a handful of microcapsules: first with four fingers from four directions to strengthen the powder, and then gently kneaded into a small ball, put in front of a good wrinkled weighing paper culture dish, cover the lid , Placed in 37 degrees incubator in 60h for condensation of water

After 60h, use the culture dishes covered with cement powder, sieve to remove the coarse pieces of coarse cement powder 200g, according to the 0.4 water: cement ratio by adding 80ml deionized water, installed stir the machine, storing form the low-speed mixing 1min, and then turn to the highest Speed stirring for 2 min.

Remove the cement basin, fill the cylindrical hollow resin into the cavity of the test chamber into the two-thirds of the cement, into a microcapsule on both sides of the gap in the middle, and then fill the cement ramming test block

Gathered all concrete mold together, covered with a layer of plastic wrap, mark the mark, conservation for 2 days

After that, take the solidified cement test block from the resin mold out, the cement block into the bag, make a mark, sealed 2 days

Fig.2 The repairing status of a. blank group (no microcapsule) b. gerA group c. NMK-α group d.NMK-OF group


Split the cement in the bag test block, with a vise to the cylindrical cement test block from the side of the split, to collect the appropriate split test block (buried in the test block in the microcapsules were split into two halves), with a transparent tape The pieces of the test pieces were re-bonded into a cylindrical shape

Put the re-glued test piece into the clean beaker vertically, pour it into the artificial seawater solution until the liquid level has not been tested. Place a layer of gauze on the beaker and place it in the shade for 28 days. Add artificial seawater to prevent evaporation

After 28 days, remove the test block and place the test block under microscopic examination of the microfracture

Under the microscope, you can see the microcrack lying in the middle between two grooves of concrete mold. And this is how it looks like when we have a x1000 horizon after 12days. So it is obviously that the microcrack has been repaired under the self-healing reaction of modified B.subtilis. In other words, it works.