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1 ogen A and cytochrome C/lysozyme on a strong cation exchanger.
2 oaded membranes without excess of lipophilic cation exchanger.
3 st Li+ to be the most strongly retained on a cation exchanger.
4 e used to evaluate the functionality of each cation exchanger.
5 group was synthesized as a chemically stable cation exchanger.
6 ed calcium/proton antiporter [known as short cation exchanger 1 (sCAX1)] to increase Ca transport int
8 the Arabidopsis Ca(2+)/H(+) antiporter CAX1 (cation exchanger 1) has been shown previously to regulat
10 e Arabidopsis Ca(2+)/H(+) transporter, CAX1 (cation exchanger 1), was identified by its ability to su
11 pen reading frames for CAX1, CAX2, and CAX3 (cation exchangers 1, 2, and 3) were previously identifie
12 one membrane segment containing a lipophilic cation exchanger and the other containing an anion excha
13 phase adsorbent, and PSDVB-based strong acid cation exchangers and strong base and weak base anion ex
15 ionophore II, a lipophilic tetraphenylborate cation exchanger, and TOPO-capped CdSe/CdS quantum dot a
16 nes doped with an ionophore and a lipophilic cation-exchanger are used here in a new tandem measureme
20 cally the least strongly held cation on most cation exchangers, because of its very high hydration en
22 (3+) of the generator eluate is trapped on a cation exchanger cartridge (100 mg, approximately 8 mm l
23 CrCAX1 was more closely related to fungal cation exchanger (CAX) genes than those from higher plan
25 sing Arabidopsis (Arabidopsis thaliana) H(+)/cation exchangers (CAX) have more calcium (Ca2+) and pro
27 ture/function analysis of the Arabidopsis H+/cation exchanger, CAX1, revealed that a nine amino acid
30 bidopsis thaliana), a family of endomembrane cation exchangers (CAXs) transports Ca(2+) and other cat
31 ent of alkaline mine drainage water requires cation exchangers combining excellent sorption propertie
32 nium cyclosilicate (ZS-9), a novel selective cation exchanger, could lower serum potassium levels in
34 e pH, it is demonstrated that the lipophilic cation exchanger (DNNS) within the membrane phase can li
36 us positive protein charges are close to the cation exchanger functional groups produce the most favo
38 hat carba-closo-dodecaborates can be used as cation exchangers in neutral carrier-based ion-selective
39 d dodecacarboranes were found to be improved cation exchangers in terms of lipophilicity and chemical
40 an increased concentration of the lipophilic cation exchanger is required to achieve proper ion sensi
44 ard cesium ions and the use of a sacrificial cation exchanger (NaBPh(4)) to control loss of imidazoli
45 dopamine response can be restored using the cation exchanger Nafion without significantly increasing
46 n solution could be completely retained on a cation-exchanger Nafion membrane, constituting a colorim
47 a(2+), respectively, in combination with the cation-exchanger NaTFPB (sodium tetrakis-[3,5-bis(triflu
48 ve fluorescent chromoionophore (ETH 5294), a cation-exchanger (NaTFPB), and either a highly sodium-se
49 o two ionophores in addition to a lipophilic cation-exchanger, overlaid on an electropolymerized poly
53 rified from E. coli in a single step using a cation-exchanger resin, SP-Sepharose, and a selected buf
55 l changes and that golden encodes a putative cation exchanger slc24a5 (nckx5) that localizes to an in
56 ium zirconium cyclosilicate is a nonabsorbed cation exchanger that selectively binds potassium in the
57 or the convenient covalent attachment of the cation exchanger to the polymeric backbone of the sensin
58 sults suggest a network linking the vacuolar cation exchangers to apoplastic pH maintenance that play
60 e their successful application as industrial cation exchangers under near neutral conditions, their p
62 r other lipids, a minicolumn of a silica gel cation exchanger was used to adsorb the cationic lipids
63 rostatic interactions of FGF-1 vs FGF-2 with cation exchangers were obtained, and aid in rationalizin
64 Zeolites represent a family of inorganic cation exchangers, which naturally occur in hyper alkali
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