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1 separated from the HEL-presenting cells by a semipermeable membrane.
2 concentration of the target analyte around a semipermeable membrane.
3 ct with or separated from their targets by a semipermeable membrane.
4                 Every cell is protected by a semipermeable membrane.
5  the dynamic treatment of spheroids across a semipermeable membrane.
6 08 were produced by culturing each strain on semipermeable membranes.
7 hannels or by use of diffusion chambers with semipermeable membranes.
8 talled in the shell, which is separated by a semipermeable membrane (100-kD nominal cutoff) from the
9                 Protocells stabilized with a semipermeable membrane allow trafficking of single-stran
10 NO is transported to the gas phase through a semipermeable membrane and subsequently detected by moni
11 4(low/neg)CD25(+) T cells was prevented by a semipermeable membrane and was independent of IL-10 and
12 (+)-PIM-COOH were solvent cast directly into semipermeable membranes and evaluated for their ability
13                                              Semipermeable membranes are a key feature of all living
14 membrane, although solution gradients across semipermeable membranes are omnipresent in natural syste
15 rs on glass collagen-coated coverslips or on semipermeable membranes at an air-fluid interface.
16 d in a second solution of alginate to form a semipermeable membrane composed of an inner and an outer
17      In this study, graded concentrations of semipermeable membrane device (SPMD) extracts, collected
18 yrrolidine dithiocarbamate complexes) into a semipermeable membrane device (SPMD) filled with CHCl(3)
19 xymethylene, polyacrylate, polyurethane, and semipermeable membrane devices.
20              Separation of MSC and PBMC by a semipermeable membrane did not abrogate the suppression.
21 ed in an array of subnanoliter wells using a semipermeable membrane, enabling efficient cell lysis an
22 s and the self-assembly of metal oxide based semipermeable membranes for diverse applications.
23 between high and low salinity streams across semipermeable membranes has been explored for several de
24 merging applications of 2D materials such as semipermeable membranes; hence, their creation methods,
25 ms, which is exemplified by fabrication of a semipermeable membrane in a surface-patterned channel vi
26 ibited memory Th cell alloresponses across a semipermeable membrane in vitro.
27     Neurons separated from astrocytes with a semipermeable membrane increased GLT-1 protein, indicati
28           Separation of T cells from EC by a semipermeable membrane inhibits the effect of EC and IL-
29                         A small probe with a semipermeable membrane is implanted in tissue and consta
30                                            A semipermeable membrane is used to protect the spheroids
31 alent and noncovalent binding, entrapment in semipermeable membranes, microencapsulation, sol gel, an
32  biofilm formation directly on the polymeric semipermeable membrane of the microdialysis probe.
33  from immune rejection by enclosure within a semipermeable membrane or encapsulant, is one approach i
34                                  We deployed semipermeable membrane passive sampling devices (SPMDs)
35  from pathogens and toxins; it must act as a semipermeable membrane regulating passage of molecules b
36 micro ion trap mass analyzer equipped with a semipermeable membrane sampling inlet.
37 y that the solute acts on the solvent at the semipermeable membrane separating the solution and water
38      Our simulation setup comprises two such semipermeable membranes separating compartments of pure
39 h is supplied to the MS by using an external semipermeable membrane setup.
40 cyte co-incubation studies across a 4 microM semipermeable membrane suggested that L. infantum-expose
41  shell of w/o/w droplets plays the role of a semipermeable membrane that allows substances with low m
42 and the use of the ligand shell of a QD as a semipermeable membrane that gates its redox activity; an
43 oving the need for the restrictive synthetic semipermeable membranes that are required for organ-on-c
44 oliter-scale bioreactors are encapsulated in semipermeable membranes that form magnetic polymeric mic
45    When FDCs and T cells were separated by a semipermeable membrane, the inhibitory effect was partia
46 isms thought to operate in the presence of a semipermeable membrane, the properties of that membrane,
47 for adsorption of dyes or heavy metals, as a semipermeable membrane to control particle transport, an
48 heric pressure to elevated pressure across a semipermeable membrane to prepressurize RO feedwater.
49  However, BMSCs separated from myocytes by a semipermeable membrane were still negative for alpha-act
50 lts and those of experiments in which either semipermeable membranes were used to separate AKR.H-2b m