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Running and tumbling

In a recent talk, Sravanti Uppaluri discussed her work looking at the motility of Trypanosoma brucei brucei and how this affects the swimming motion of the parasites. The results have been published in PLoS Computational Biology.

Trypanosomes are bloodstream parasites. Found in Africa (T. Brucei) and South America (T. cruzi) , trypanosomes infect mammals via an insect vector. In Africa, this is the tsetse fly and infection results in the potentially fatal disease African trypanosomiasis, more commonly known as sleeping sickness. The parasite intially enters the blood stream before passing through the blood-brain barrier and invading the central nervous system.

Trypanosomes swim using a flagellum, which runs along the length of the cell. Uppaluri found that swimming cells have three different motility modes: tumbling walkers, persistent walkers and intermediate walkers. These motility modes correlate with the shape of the cell and their mean end-to-end length. Tumblers have no persistence in direction and no well-defined orientation. In the videos Uppaluri showed, the cells appeared to move in small circles or knots going nowhere. Persistent walkers on the other hand are highly directional; they swim for hundreds of micrometres without changing their trajectory. The cells are orientated, with the flagellum tip leading in the swimming direction. For persistent walkers, the cells appear stretched or elongated, with a mean end-to-end length 1.5 times greater than that of tumblers, which appear more bent. No tumbling is observed for persistent walkers. Intermediate walkers have an intermediate behaviour with periods of directional swimming interspersed with periods of tumbling.

Uppaluri suggests that the different motility modes arise from variations in the cell stiffness, with persistent cells having three times more flexural rigidity than tumblers. The flagellum of persistent walkers were also found to move at around twice the velocity of tumbling walkers.

The motility mode and cell properties may play a role in tissue invasion of the trypanosomes, when they pass through the blood-brain barrier. They may also be important for finding nutrients or removing host antibodies. Further work, however, is required before any definite conclusions can be made.

 

 
 
 
 
 
 

SEM of a red blood cell (red) and a T. cyclops (green). T. cyclops infects Monkeys and is found in South-east Asia. It has a very similar form to T. brucei. T. cyclops is not, however, infectious to man.

Related papers in Soft Matter

Effect of helicity on wrapping and bundling of semi-flexible filaments twirled in a viscous fluid, S. Clark and R. Prabhakar, 2011 (doi:10.1039/C1SM05269A).

Colloids in a bacterial bath: simulations and experiments, C. Valeriani, M. Li, J. Novosel, J. Arlt and D. Marenduzzo (doi:10.1039/C1SM05260H).

Image taken from: Separation of parasites from human blood using deterministic lateral displacement,  S.H. Holm et al., Lab Chip, 2011, 11, 1326-1332, (doi:10.1039/c0lc00560f).

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Symposium on Stimuli-Responsive Materials

Announcing the 7th International Symposium on Stimuli-Responsive Materials (October 24-26th, 2011 in Hattiesburg, MS, USA). Leading scientists from a variety of disciplines will discuss recent advances in adaptive materials at the interfaces of chemistry, physics, biology, and engineering. This symposium will build on a successful six year history of assembling experts in the area of stimuli-responsive/smart materials to discuss issues related to fundamental science and real-world applicability. For more information, visit the website here.

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Soft Matter Issue 12 is out now!

You can read the full issue here…

 

The paper featured on the outside front cover is ‘Origin of the superior adhesive performance of mushroom-shaped microstructured surfaces’ by G. Carbone, E. Pierro and S. N. Gorb. The inside front cover features work by Y. L. Sun, N. K. Mani, D. Baigl, T. Gisler, A. P. Schröder and C. M.l Marques: ‘Photocontrol of end-grafted lambda-phage DNA’ .

Showcasing work from the University of Basel, Switzerland, in collaboration with the University of Antwerp, Belgium- ‘A surprising system: polymeric nanoreactors containing a mimic with dual-enzyme activity’ by V. Balasubramanian, O. Onaca, M. Ezhevskaya, S. Van Doorslaer, B. Sivasankaran and C. G. Palivan. 

Also included in the issue is an Emerging Area article:
Liquid marbles: principles and applications by Glen McHale and Michael I. Newton

And the following reviews: 

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Soft Matter makes the news!

Gel fixes back problemsSoft Matter article on a gel that can fix back aches has been reported in the Daily Mail and the Telegraph. The work by Dr Brian Saunders and Professor Tony Freemont at the University of Manchester, involves the injection of a  liquid containing microgel particles into the spine where the sponge-like particles expand to form a strong, load-bearing material.

Read the original paper for FREE here!

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Soft Matter Issue 11, 2011, out now!

Soft Matter issue 11 is out now!

You can read the full issue here…

 Issue 11

The paper featured on the outside front cover is ‘Self-consistent field theory for diblock copolymers grafted to a sphere’ by Bart Vorselaars, Jaeup U. Kim, Tanya L. Chantawansri, Glenn H. Fredrickson and Mark W. Matsen. The inside front cover highlights work by Hüseyin Burak Eral, Jolet de Ruiter, Riëlle de Ruiter, Jung Min Oh, Ciro Semprebon, Martin Brinkmann and Frieder Mugele: ‘Drops on functional fibers: from barrels to clamshells and back’.

Bin Su, Shutao Wang, Yanlin Song and Lei Jiang highlight their recent work on ‘Utilizing superhydrophilic materials to manipulate oil droplets arbitrarily in water‘ on the back cover of the issue. 

The following review articles are included in the issue:

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Soft Matter article highlighted in ChemistryWorld

Ionic liquid advance over saline-based lenses

Ionic liquids are the key to observing improved performance and wider temperature ranges for variable focus lenses over conventional saline alternatives, report scientists in China.

Electrowetting-based variable focus liquid lenses (EVFLL) have been used in mobile phones, barcode readers and other optical equipment, in which the conductive liquid inside the lenses is currently limited to saline. In applications such as these, saline can only work in a narrow temperature range as it may evaporate or freeze in extreme temperatures. The lenses also need to operate in a wide spectral range, but again saline is restrictive here as it becomes opaque in the near infrared region – not ideal for optical devices… Read the rest of the article here… 

Or for the original paper read here: Xiaodong Hu, Shiguo Zhang, Chao Qu, Qinghua Zhang, Liujin Lu, Xiangyuan Ma, Xiaoping Zhang and Youquan Deng, Soft Matter, 2011, Advance Article, DOI: 10.1039/C1SM05585B

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Recent Hot Articles: Creep compliance, uniform vesicles and polymer nanocapsule formation

Read these Hot Articles for free until June 12:

The ability to tune size and content of microscopic vesicles is hugely important for the chemical, food and biomedical industries. Continuous droplet interface crossing encapsulation (cDICE) was used to develop a high throughput low cost method for the synthesis of monodisperse vesicle suspensions in minutes. Droplets are continuously dripped from a capillary and simultaneously forced through an interface using centrifugal force.  Manouk Abkarian, Etienne Loiseau and Gladys Massiera, Soft Matter, 2011, 7, 4610-4614, DOI: 10.1039/C1SM05239J

The dilational flow properties of polymer films are studied using creep compliance. Mobile polymers constrained to a quasi-2D conformation have different flow properties to those of the bulk system. The compliance curves allowed calculation of the viscoelastic parameters and relaxation times of the Langmuir films, fully consistent with previous rheology experiments.
Hani Hilles and Francisco Monroy, Soft Matter, 2011, Advance Article, DOI: 10.1039/C1SM05255A

Polymer vesicles to hollow nanocapsules:
Head-tail type polycation self-assemblies of polyamidoamine dendron and poly(L-lysine) were cross-linked to form hollow nanocapsules. The nanocapsules show unique pH dependent properties, such as change in size and swelling.

Atsushi Harada, Shin-ichi Ichimura, Eiji Yuba and Kenji Kono, Soft Matter, 2011, 7, 4629-4635, DOI: 10.1039/C1SM05075C

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