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#labhacks — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #labhacks, aggregated by home.social.

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  1. Mikroplatten für 3D-Zellkultur sind teuer. Das IIT Bombay löst das Problem mit einer umgedrehten Wellplatte, etwas Polyacrylamid und kontrollierter Dehydrierung. Günstig, reproduzierbar und clever: 👉 laborjournal.de/editorials/351
    #Zellkultur #LabHacks #Labormethode

  2. Mikroplatten für 3D-Zellkultur sind teuer. Das IIT Bombay löst das Problem mit einer umgedrehten Wellplatte, etwas Polyacrylamid und kontrollierter Dehydrierung. Günstig, reproduzierbar und clever: 👉 laborjournal.de/editorials/351
    #Zellkultur #LabHacks #Labormethode

  3. Mikroplatten für 3D-Zellkultur sind teuer. Das IIT Bombay löst das Problem mit einer umgedrehten Wellplatte, etwas Polyacrylamid und kontrollierter Dehydrierung. Günstig, reproduzierbar und clever: 👉 laborjournal.de/editorials/351
    #Zellkultur #LabHacks #Labormethode

  4. Mikroplatten für 3D-Zellkultur sind teuer. Das IIT Bombay löst das Problem mit einer umgedrehten Wellplatte, etwas Polyacrylamid und kontrollierter Dehydrierung. Günstig, reproduzierbar und clever: 👉 laborjournal.de/editorials/351
    #Zellkultur #LabHacks #Labormethode

  5. Mikroplatten für 3D-Zellkultur sind teuer. Das IIT Bombay löst das Problem mit einer umgedrehten Wellplatte, etwas Polyacrylamid und kontrollierter Dehydrierung. Günstig, reproduzierbar und clever: 👉 laborjournal.de/editorials/351
    #Zellkultur #LabHacks #Labormethode

  6. #Methode
    Do It Yourself: 3D-Zellkultur zum Selbergießen und das kostengünstig und biokompatibel!

    Ein Team der Tufts University formt aus 3D-gedruckten Gießformen und PEGDMA-Hydrogel günstige, standardisierte Hantel-Gerüste, in denen neuronale Sphäroide über Millimeter hinweg Neuriten ausbilden. Interessiert? Mehr dazu im Artikel von Andrea Pitzschke: laborjournal.de/editorials/339

    #Laborjournal #Lifesciences #Zellbiologie #Biotechnologie #3DZellkultur #Sphäroide #Organoide #Neurosphären #LabHacks

  7. #Methode
    Do It Yourself: 3D-Zellkultur zum Selbergießen und das kostengünstig und biokompatibel!

    Ein Team der Tufts University formt aus 3D-gedruckten Gießformen und PEGDMA-Hydrogel günstige, standardisierte Hantel-Gerüste, in denen neuronale Sphäroide über Millimeter hinweg Neuriten ausbilden. Interessiert? Mehr dazu im Artikel von Andrea Pitzschke: laborjournal.de/editorials/339

    #Laborjournal #Lifesciences #Zellbiologie #Biotechnologie #3DZellkultur #Sphäroide #Organoide #Neurosphären #LabHacks

  8. #Methode
    Do It Yourself: 3D-Zellkultur zum Selbergießen und das kostengünstig und biokompatibel!

    Ein Team der Tufts University formt aus 3D-gedruckten Gießformen und PEGDMA-Hydrogel günstige, standardisierte Hantel-Gerüste, in denen neuronale Sphäroide über Millimeter hinweg Neuriten ausbilden. Interessiert? Mehr dazu im Artikel von Andrea Pitzschke: laborjournal.de/editorials/339

    #Laborjournal #Lifesciences #Zellbiologie #Biotechnologie #3DZellkultur #Sphäroide #Organoide #Neurosphären #LabHacks

  9. #Methode
    Do It Yourself: 3D-Zellkultur zum Selbergießen und das kostengünstig und biokompatibel!

    Ein Team der Tufts University formt aus 3D-gedruckten Gießformen und PEGDMA-Hydrogel günstige, standardisierte Hantel-Gerüste, in denen neuronale Sphäroide über Millimeter hinweg Neuriten ausbilden. Interessiert? Mehr dazu im Artikel von Andrea Pitzschke: laborjournal.de/editorials/339

    #Laborjournal #Lifesciences #Zellbiologie #Biotechnologie #3DZellkultur #Sphäroide #Organoide #Neurosphären #LabHacks

  10. #Methode
    Do It Yourself: 3D-Zellkultur zum Selbergießen und das kostengünstig und biokompatibel!

    Ein Team der Tufts University formt aus 3D-gedruckten Gießformen und PEGDMA-Hydrogel günstige, standardisierte Hantel-Gerüste, in denen neuronale Sphäroide über Millimeter hinweg Neuriten ausbilden. Interessiert? Mehr dazu im Artikel von Andrea Pitzschke: laborjournal.de/editorials/339

    #Laborjournal #Lifesciences #Zellbiologie #Biotechnologie #3DZellkultur #Sphäroide #Organoide #Neurosphären #LabHacks

  11. PSA: The restriction enzyme DpnI is a great way to remove the plasmid template after a PCR reaction.

    It has a 4-base recognition sequence and only cuts methylated or hemimethylated DNA. Therefore, it will chop up almost any plasmid template but not digest the PCR product. It also works in most polymerase buffers.

  12. PSA: The restriction enzyme DpnI is a great way to remove the plasmid template after a PCR reaction.

    It has a 4-base recognition sequence and only cuts methylated or hemimethylated DNA. Therefore, it will chop up almost any plasmid template but not digest the PCR product. It also works in most polymerase buffers.

    #FediScience #LabHacks #MolecularBiology #Sublconing #PCR

  13. PSA: The restriction enzyme DpnI is a great way to remove the plasmid template after a PCR reaction.

    It has a 4-base recognition sequence and only cuts methylated or hemimethylated DNA. Therefore, it will chop up almost any plasmid template but not digest the PCR product. It also works in most polymerase buffers.

    #FediScience #LabHacks #MolecularBiology #Sublconing #PCR

  14. PSA: The restriction enzyme DpnI is a great way to remove the plasmid template after a PCR reaction.

    It has a 4-base recognition sequence and only cuts methylated or hemimethylated DNA. Therefore, it will chop up almost any plasmid template but not digest the PCR product. It also works in most polymerase buffers.

    #FediScience #LabHacks #MolecularBiology #Sublconing #PCR

  15. PSA: The restriction enzyme DpnI is a great way to remove the plasmid template after a PCR reaction.

    It has a 4-base recognition sequence and only cuts methylated or hemimethylated DNA. Therefore, it will chop up almost any plasmid template but not digest the PCR product. It also works in most polymerase buffers.

    #FediScience #LabHacks #MolecularBiology #Sublconing #PCR

  16. Sustainability tip for yeast labs:
    when replica plating you can combine two different dissection plates into one replica plate. This will reduce the number of plates you use by almost ½.
    Here’s how it works.

    As you know, a normal dissection takes up an entire plate, and then to genotype you need to replica plate to many (5) different plates—each reporting on a different marker.

    To me, that’s a lot of plates.

    🧵 /1

  17. Sustainability tip for yeast labs:
    when replica plating you can combine two different dissection plates into one replica plate. This will reduce the number of plates you use by almost ½.
    Here’s how it works.

    As you know, a normal dissection takes up an entire plate, and then to genotype you need to replica plate to many (5) different plates—each reporting on a different marker.

    To me, that’s a lot of plates.

    🧵 /1

    #LabLife #LabHacks #YeastResources

  18. Sustainability tip for yeast labs:
    when replica plating you can combine two different dissection plates into one replica plate. This will reduce the number of plates you use by almost ½.
    Here’s how it works.

    As you know, a normal dissection takes up an entire plate, and then to genotype you need to replica plate to many (5) different plates—each reporting on a different marker.

    To me, that’s a lot of plates.

    🧵 /1

    #LabLife #LabHacks #YeastResources

  19. Sustainability tip for yeast labs:
    when replica plating you can combine two different dissection plates into one replica plate. This will reduce the number of plates you use by almost ½.
    Here’s how it works.

    As you know, a normal dissection takes up an entire plate, and then to genotype you need to replica plate to many (5) different plates—each reporting on a different marker.

    To me, that’s a lot of plates.

    🧵 /1

    #LabLife #LabHacks #YeastResources

  20. Sustainability tip for yeast labs:
    when replica plating you can combine two different dissection plates into one replica plate. This will reduce the number of plates you use by almost ½.
    Here’s how it works.

    As you know, a normal dissection takes up an entire plate, and then to genotype you need to replica plate to many (5) different plates—each reporting on a different marker.

    To me, that’s a lot of plates.

    🧵 /1

    #LabLife #LabHacks #YeastResources

  21. Most frighting lab ‘hack’ I ever saw was someone super gluing a cracked chloroform bottle. The best is using a cut-up rubber glove as a hair tie #LabHacks #LifeHacks

  22. Most frighting lab ‘hack’ I ever saw was someone super gluing a cracked chloroform bottle. The best is using a cut-up rubber glove as a hair tie #LabHacks #LifeHacks

  23. Most frighting lab ‘hack’ I ever saw was someone super gluing a cracked chloroform bottle. The best is using a cut-up rubber glove as a hair tie #LabHacks #LifeHacks

  24. Most frighting lab ‘hack’ I ever saw was someone super gluing a cracked chloroform bottle. The best is using a cut-up rubber glove as a hair tie

  25. Most frighting lab ‘hack’ I ever saw was someone super gluing a cracked chloroform bottle. The best is using a cut-up rubber glove as a hair tie #LabHacks #LifeHacks

  26. Thinking of getting either a Google or Alexa smart speaker for the lab (mostly so labbies can listen to music at the bench) - any thoughts/experience on which is better? Any good lab hacks I havn’t thought of yet that could make this even more useful? I have avoided them like the plague at home so I have no opinions…

    No idea what hashtags to put on this… #LabHacks #LabChat #RealTimeScience #WetLab #CellBiology

  27. Thinking of getting either a Google or Alexa smart speaker for the lab (mostly so labbies can listen to music at the bench) - any thoughts/experience on which is better? Any good lab hacks I havn’t thought of yet that could make this even more useful? I have avoided them like the plague at home so I have no opinions…

    No idea what hashtags to put on this… #LabHacks #LabChat #RealTimeScience #WetLab #CellBiology

  28. Thinking of getting either a Google or Alexa smart speaker for the lab (mostly so labbies can listen to music at the bench) - any thoughts/experience on which is better? Any good lab hacks I havn’t thought of yet that could make this even more useful? I have avoided them like the plague at home so I have no opinions…

    No idea what hashtags to put on this… #LabHacks #LabChat #RealTimeScience #WetLab #CellBiology

  29. Thinking of getting either a Google or Alexa smart speaker for the lab (mostly so labbies can listen to music at the bench) - any thoughts/experience on which is better? Any good lab hacks I havn’t thought of yet that could make this even more useful? I have avoided them like the plague at home so I have no opinions…

    No idea what hashtags to put on this… #LabHacks #LabChat #RealTimeScience #WetLab #CellBiology