cellular patterning
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Langmuir ◽  
2021 ◽  
Author(s):  
Kento Kawabata ◽  
Masayasu Totani ◽  
Daisuke Kawaguchi ◽  
Hisao Matsuno ◽  
Keiji Tanaka

Cells ◽  
2021 ◽  
Vol 10 (4) ◽  
pp. 733
Author(s):  
Konrad Winnicki ◽  
Justyna Teresa Polit ◽  
Aneta Żabka ◽  
Janusz Maszewski

Plasmodesmata form intercellular channels which ensure the transport of various molecules during embryogenesis and postembryonic growth. However, high permeability of plasmodesmata may interfere with the establishment of auxin maxima, which are required for cellular patterning and the development of distinct tissues. Therefore, diffusion through plasmodesmata is not always desirable and the symplastic continuum must be broken up to induce or accomplish some developmental processes. Many data show the role of auxin maxima in the regulation of auxin-responsive genes and the establishment of various cellular patterns. However, still little is known whether and how these maxima are formed in the embryo proper before 16-cell stage, that is, when there is still a nonpolar distribution of auxin efflux carriers. In this work, we focused on auxin-dependent regulation of plasmodesmata function, which may provide rapid and transient changes of their permeability, and thus take part in the regulation of gene expression.


2021 ◽  
Vol 12 ◽  
Author(s):  
Taeko K. Noah ◽  
Jee-Boong Lee ◽  
Christopher A. Brown ◽  
Amnah Yamani ◽  
Sunil Tomar ◽  
...  

Food allergy is an emerging epidemic, and the underlying mechanisms are not well defined partly due to the lack of robust adjuvant free experimental models of dietary antigen sensitization. As housing mice at thermoneutrality (Tn) - the temperature of metabolic homeostasis (26–30°C) – has been shown to improve modeling various human diseases involved in inflammation, we tested the impact of Tn housing on an experimental model of food sensitization. Here we demonstrate that WT BALB/c mice housed under standard temperature (18–20°C, Ts) conditions translocated the luminal antigens in the small intestine (SI) across the epithelium via goblet cell antigen passages (GAPs). In contrast, food allergy sensitive Il4raF709 mice housed under standard temperature conditions translocated the luminal antigens in the SI across the epithelium via secretory antigen passages (SAPs). Activation of SI antigen passages and oral challenge of Il4raF709 mice with egg allergens at standard temperature predisposed Il4raF709 mice to develop an anaphylactic reaction. Housing Il4raF709 mice at Tn altered systemic type 2 cytokine, IL-4, and the landscape of SI antigen passage patterning (villus and crypt involvement). Activation of SI antigen passages and oral challenge of Il4raF709 mice with egg antigen under Tn conditions led to the robust induction of egg-specific IgE and development of food-induced mast cell activation and hypovolemic shock. Similarly, Tn housing of WT BALB/c mice altered the cellular patterning of SI antigen passage (GAPs to SAPs). Activation of SI antigen passages and the oral challenge of WT BALB/c mice with egg antigen led to systemic reactivity to egg and mast cell activation. Together these data demonstrate that Tn housing alters antigen passage cellular patterning and landscape, and concurrent oral exposure of egg antigens and SAP activation is sufficient to induce oral antigen sensitization.


2020 ◽  
Vol 18 ◽  
pp. 116-122
Author(s):  
Beatrice Mao ◽  
Tara Balasubramanian ◽  
Matthew W Kelley

Biomaterials ◽  
2020 ◽  
Vol 244 ◽  
pp. 119927 ◽  
Author(s):  
Jefferson Friguglietti ◽  
Susmi Das ◽  
Phi Le ◽  
Daniel Fraga ◽  
Marcos Quintela ◽  
...  

2020 ◽  
Vol 460 (2) ◽  
pp. 164-175
Author(s):  
Susumu Sakamoto ◽  
Tomoko Tateya ◽  
Koichi Omori ◽  
Ryoichiro Kageyama
Keyword(s):  

Cells ◽  
2020 ◽  
Vol 9 (3) ◽  
pp. 606 ◽  
Author(s):  
Konrad Winnicki

In plants, the first asymmetrical division of a zygote leads to the formation of two cells with different developmental fates. The establishment of various patterns relies on spatial and temporal gene expression, however the precise mechanism responsible for embryonic patterning still needs elucidation. Auxin seems to be the main player which regulates embryo development and controls expression of various genes in a dose-dependent manner. Thus, local auxin maxima and minima which are provided by polar auxin transport underlie cell fate specification. Diverse auxin concentrations in various regions of an embryo would easily explain distinct cell identities, however the question about the mechanism of cellular patterning in cells exposed to similar auxin concentrations still remains open. Thus, specification of cell fate might result not only from the cell position within an embryo but also from events occurring before and during mitosis. This review presents the impact of auxin on the orientation of the cell division plane and discusses the mechanism of auxin-dependent cytoskeleton alignment. Furthermore, close attention is paid to auxin-induced calcium fluxes, which regulate the activity of MAPKs during postembryonic development and which possibly might also underlie cellular patterning during embryogenesis.


2020 ◽  
Vol 4 (7) ◽  
pp. 2149-2156 ◽  
Author(s):  
Yingchun Su ◽  
Mehmet Berat Taskin ◽  
Mingdong Dong ◽  
Xiaojun Han ◽  
Flemming Besenbacher ◽  
...  

Through side-by-side electrospinning, Janus microfibers were transformed into 3D multi-helix-perversion microstructures due to the mismatch strain achieving Janus cellular patterning.


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