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clinostat ground based microgravity simulation system  (Synthecon)

 
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    Structured Review

    Synthecon clinostat ground based microgravity simulation system
    <t>Ground-based</t> <t>hardware</t> used to simulate <t>microgravity</t> on Earth. A rotatory cell culture system (RCCS) equipped with HARVs and clinostat vessels rotated at different rotational axes: horizontal rotation to simulate microgravity (left) and vertical rotation for traditional gravity (right).
    Clinostat Ground Based Microgravity Simulation System, supplied by Synthecon, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/clinostat+ground+based+microgravity+simulation+system/pmc13141840-335-10-15?v=Synthecon
    Average 86 stars, based on 1 article reviews
    clinostat ground based microgravity simulation system - by Bioz Stars, 2026-08
    86/100 stars

    Images

    1) Product Images from "Microgravity effects on secondary metabolism of plant-affecting bacteria"

    Article Title: Microgravity effects on secondary metabolism of plant-affecting bacteria

    Journal: Microbiology Spectrum

    doi: 10.1128/spectrum.02239-25

    Ground-based hardware used to simulate microgravity on Earth. A rotatory cell culture system (RCCS) equipped with HARVs and clinostat vessels rotated at different rotational axes: horizontal rotation to simulate microgravity (left) and vertical rotation for traditional gravity (right).
    Figure Legend Snippet: Ground-based hardware used to simulate microgravity on Earth. A rotatory cell culture system (RCCS) equipped with HARVs and clinostat vessels rotated at different rotational axes: horizontal rotation to simulate microgravity (left) and vertical rotation for traditional gravity (right).

    Techniques Used: Cell Culture

    Simulated microgravity affects the growth rate of P. protegens and B. ambifaria . ( A ) Growth curve of ( A ) P. protegens and ( B ) B. ambifaria under simulated microgravity (SMG), traditional gravity (TG), and orbital shaking (OS) control. X-axis values represent hours.
    Figure Legend Snippet: Simulated microgravity affects the growth rate of P. protegens and B. ambifaria . ( A ) Growth curve of ( A ) P. protegens and ( B ) B. ambifaria under simulated microgravity (SMG), traditional gravity (TG), and orbital shaking (OS) control. X-axis values represent hours.

    Techniques Used: Control

    Relative production of select plant-promoting secondary metabolites under traditional gravity and simulated microgravity in P. protegens and B. ambifaria . ( A ) Pyoluteorin levels, ( B ) 2,4-DAPG levels, and ( C ) orfamide A levels on Day 1 and Day 3 in P. protegens cultured in TG and SMG conditions. ( D ) PQQ levels in B. ambifaria cultured in TG and SMG conditions on Day 1 and Day 3. Metabolite levels were measured via LC-MS/MS and are shown as maximum intensity values ( n = 3 biological replicates per condition). Bars show mean ± SD of three biological replicates ( n = 3), normalized to OD₆₀₀. Statistical significance was determined using a two-tailed Welch’s t -test; P < 0.05 (*), P < 0.01 (**), ns = not significant.
    Figure Legend Snippet: Relative production of select plant-promoting secondary metabolites under traditional gravity and simulated microgravity in P. protegens and B. ambifaria . ( A ) Pyoluteorin levels, ( B ) 2,4-DAPG levels, and ( C ) orfamide A levels on Day 1 and Day 3 in P. protegens cultured in TG and SMG conditions. ( D ) PQQ levels in B. ambifaria cultured in TG and SMG conditions on Day 1 and Day 3. Metabolite levels were measured via LC-MS/MS and are shown as maximum intensity values ( n = 3 biological replicates per condition). Bars show mean ± SD of three biological replicates ( n = 3), normalized to OD₆₀₀. Statistical significance was determined using a two-tailed Welch’s t -test; P < 0.05 (*), P < 0.01 (**), ns = not significant.

    Techniques Used: Cell Culture, Liquid Chromatography with Mass Spectroscopy, Two Tailed Test



    Similar Products

    86
    Synthecon clinostat ground based microgravity simulation system
    <t>Ground-based</t> <t>hardware</t> used to simulate <t>microgravity</t> on Earth. A rotatory cell culture system (RCCS) equipped with HARVs and clinostat vessels rotated at different rotational axes: horizontal rotation to simulate microgravity (left) and vertical rotation for traditional gravity (right).
    Clinostat Ground Based Microgravity Simulation System, supplied by Synthecon, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/clinostat+ground+based+microgravity+simulation+system/pmc13141840-335-10-15?v=Synthecon
    Average 86 stars, based on 1 article reviews
    clinostat ground based microgravity simulation system - by Bioz Stars, 2026-08
    86/100 stars
      Buy from Supplier

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    Ground-based hardware used to simulate microgravity on Earth. A rotatory cell culture system (RCCS) equipped with HARVs and clinostat vessels rotated at different rotational axes: horizontal rotation to simulate microgravity (left) and vertical rotation for traditional gravity (right).

    Journal: Microbiology Spectrum

    Article Title: Microgravity effects on secondary metabolism of plant-affecting bacteria

    doi: 10.1128/spectrum.02239-25

    Figure Lengend Snippet: Ground-based hardware used to simulate microgravity on Earth. A rotatory cell culture system (RCCS) equipped with HARVs and clinostat vessels rotated at different rotational axes: horizontal rotation to simulate microgravity (left) and vertical rotation for traditional gravity (right).

    Article Snippet: Both P. protegens and B. ambifaria were cultured using a clinostat ground-based microgravity simulation system (Synthecon).

    Techniques: Cell Culture

    Simulated microgravity affects the growth rate of P. protegens and B. ambifaria . ( A ) Growth curve of ( A ) P. protegens and ( B ) B. ambifaria under simulated microgravity (SMG), traditional gravity (TG), and orbital shaking (OS) control. X-axis values represent hours.

    Journal: Microbiology Spectrum

    Article Title: Microgravity effects on secondary metabolism of plant-affecting bacteria

    doi: 10.1128/spectrum.02239-25

    Figure Lengend Snippet: Simulated microgravity affects the growth rate of P. protegens and B. ambifaria . ( A ) Growth curve of ( A ) P. protegens and ( B ) B. ambifaria under simulated microgravity (SMG), traditional gravity (TG), and orbital shaking (OS) control. X-axis values represent hours.

    Article Snippet: Both P. protegens and B. ambifaria were cultured using a clinostat ground-based microgravity simulation system (Synthecon).

    Techniques: Control

    Relative production of select plant-promoting secondary metabolites under traditional gravity and simulated microgravity in P. protegens and B. ambifaria . ( A ) Pyoluteorin levels, ( B ) 2,4-DAPG levels, and ( C ) orfamide A levels on Day 1 and Day 3 in P. protegens cultured in TG and SMG conditions. ( D ) PQQ levels in B. ambifaria cultured in TG and SMG conditions on Day 1 and Day 3. Metabolite levels were measured via LC-MS/MS and are shown as maximum intensity values ( n = 3 biological replicates per condition). Bars show mean ± SD of three biological replicates ( n = 3), normalized to OD₆₀₀. Statistical significance was determined using a two-tailed Welch’s t -test; P < 0.05 (*), P < 0.01 (**), ns = not significant.

    Journal: Microbiology Spectrum

    Article Title: Microgravity effects on secondary metabolism of plant-affecting bacteria

    doi: 10.1128/spectrum.02239-25

    Figure Lengend Snippet: Relative production of select plant-promoting secondary metabolites under traditional gravity and simulated microgravity in P. protegens and B. ambifaria . ( A ) Pyoluteorin levels, ( B ) 2,4-DAPG levels, and ( C ) orfamide A levels on Day 1 and Day 3 in P. protegens cultured in TG and SMG conditions. ( D ) PQQ levels in B. ambifaria cultured in TG and SMG conditions on Day 1 and Day 3. Metabolite levels were measured via LC-MS/MS and are shown as maximum intensity values ( n = 3 biological replicates per condition). Bars show mean ± SD of three biological replicates ( n = 3), normalized to OD₆₀₀. Statistical significance was determined using a two-tailed Welch’s t -test; P < 0.05 (*), P < 0.01 (**), ns = not significant.

    Article Snippet: Both P. protegens and B. ambifaria were cultured using a clinostat ground-based microgravity simulation system (Synthecon).

    Techniques: Cell Culture, Liquid Chromatography with Mass Spectroscopy, Two Tailed Test