Abstract:
There are provided compounds of formulas (I) and (II): Various chemical entities can be used for R1 to R6. These compounds comprise at least one polymerizable entity. These compounds can be useful for preparing various polymers. The polymers prepared by using such compounds can be used for preparing proton exchange membranes. For example, compounds (I) and (II) can be polymerized with various monomers including monomers representing their respective unprotonated form.
Abstract:
Methods for increasing lipolysis in a cell are described herein. Such methods comprise the application of an electrical current to a cell. In an embodiment, the application of the electrical current does not substantially alter the viability of such cell and/or preserves the viability of such cell. In an embodiment, such cell is an adipocyte. Corresponding uses and packages are also described.
Abstract:
There is provided a process for preparing compounds of formula M 3 M 1 A 2 . The process comprises reacting a compound of formula M 2 M 1 A 2 with a compound of formula M 3 X 2 , in the presence of at least one coordinating solvent. M 1 can be chosen from B 3+ , Al 3+ , Ga 3+ , In 3+ , Tl 3+ , Fe 3+ , and Au 3+ ; M 2 can be chosen from Li + , Na + , K + , Cs + , (T 1 ) 3 Si-, and N(T 2 ) 4 + ; M 3 can be chosen from Cu + , Ag + , Li + , Na + , K + , Cs + , Rb + , Fr + , Au + , and Hg + ; A can be chosen from S and Se; and X 2 can be chosen from Cl - , Br - , I - , F - , CH 3 COO - , NO 3 - , and CN - . Such compounds can be used for various purposes in the field of electrochemistry.
Abstract translation:提供了一种制备式M 3的化合物的方法。 该方法包括使式M 2 O 1 H 2 A 2 N 2的化合物与式M 3的化合物 在至少一种配位溶剂的存在下进行。 M 1可以选自B 3+,3+,3+,3+,3,..., 3 + SUP>,Tl 3+,Fe 3+和Au 3+。 M 2可以选自Li +,Na +,K +,C + (T 1)3 Si-和N(T 2)4 Si 3,
Abstract:
There is provided compositions comprising a first compound selected from the group consisting of compounds of formulas (I), (III), (V), and (VII), and a second compound selected from the group consisting of compounds of formulas (II), (IV), (VI), and (VIII) (insert formulas (I), (II), (III), (IV), (V), (VI), (VII), and (VIII). Various chemical entities can be used for R 1 to R 10 . These compositions can be particularly useful as anti-static agents or as electron activable precursors to a redox couple.
Abstract:
The present disclosure relates to peptide compounds and conjugate compounds, processes, methods and uses thereof for treating cancer and increasing cellular internalization of said peptide compounds. The peptide compounds are selected from the following group consisting of; GVRAKAGVRNMFKSESY as set forth in SEQ ID NO: 9; GVRAKAGVRN(Nle)FKSESY as set forth in SEQ ID NO: 10; and YKSLRRKAPRWDAPLRDPALRQLL as set forth in SEQ ID NO: 11; and wherein at least one protecting group and/or at least one labelling agent is connected to said peptide compound.
Abstract:
Methods for increasing lipolysis in a cell are described herein. Such methods comprise the application of an electrical current to a cell. In an embodiment, the application of the electrical current does not substantially alter the viability of such cell and/or preserves the viability of such cell. In an embodiment, such cell is an adipocyte. Corresponding uses and packages are also described.
Abstract:
Compositions for the selective delivery of an agent comprising an uncrosslinked starch modified by an acidic group and an agent are described. The compositions are substantially resistant to degradation and thus result in no or substantially no release of the agent in a first environment, and are capable of degradation in a second environment thereby allowing release of the agent. The pKa of the acidic group of the uncrosslinked starch used is higher than the pH of the first environment and lower than or equal to the pH of the subsequent environment. Also described herein are methods of preparing the compositions, methods of using the compositions and the uncrosslinked starch modified by an acidic group, and corresponding commercial packages.
Abstract:
The present invention relates to an electrode comprising a non-conductive substrate, a first layer and a second layer. The first layer is disposed on the substrate and comprises indium tin oxide or fluorine-doped Sn02. The second layer is disposed on the first layer and comprises CoS. A process for preparing this electrode is also disclosed. Such an electrode is particularly useful in a photovoltaic cell.