Cargando…

The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles

Brain aging and Alzheimer’s disease both demonstrate the accumulation of beta-amyloid protein containing “plaques” and tau protein containing “tangles” that contribute to accelerated memory loss and cognitive decline. In the present investigation we identified a specific plant extract and its consti...

Descripción completa

Detalles Bibliográficos
Autores principales: Snow, Alan D., Castillo, Gerardo M., Nguyen, Beth P., Choi, Paula Y., Cummings, Joel A., Cam, Judy, Hu, Qubai, Lake, Thomas, Pan, Weihong, Kastin, Abba J., Kirschner, Daniel A., Wood, Steven G., Rockenstein, Edward, Masliah, Eliezer, Lorimer, Stephen, Tanzi, Rudolph E., Larsen, Lesley
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6365538/
https://www.ncbi.nlm.nih.gov/pubmed/30728442
http://dx.doi.org/10.1038/s41598-019-38645-0
_version_ 1783393441529462784
author Snow, Alan D.
Castillo, Gerardo M.
Nguyen, Beth P.
Choi, Paula Y.
Cummings, Joel A.
Cam, Judy
Hu, Qubai
Lake, Thomas
Pan, Weihong
Kastin, Abba J.
Kirschner, Daniel A.
Wood, Steven G.
Rockenstein, Edward
Masliah, Eliezer
Lorimer, Stephen
Tanzi, Rudolph E.
Larsen, Lesley
author_facet Snow, Alan D.
Castillo, Gerardo M.
Nguyen, Beth P.
Choi, Paula Y.
Cummings, Joel A.
Cam, Judy
Hu, Qubai
Lake, Thomas
Pan, Weihong
Kastin, Abba J.
Kirschner, Daniel A.
Wood, Steven G.
Rockenstein, Edward
Masliah, Eliezer
Lorimer, Stephen
Tanzi, Rudolph E.
Larsen, Lesley
author_sort Snow, Alan D.
collection PubMed
description Brain aging and Alzheimer’s disease both demonstrate the accumulation of beta-amyloid protein containing “plaques” and tau protein containing “tangles” that contribute to accelerated memory loss and cognitive decline. In the present investigation we identified a specific plant extract and its constituents as a potential alternative natural solution for preventing and reducing both brain “plaques and tangles”. PTI-00703 cat’s claw (Uncaria tomentosa from a specific Peruvian source), a specific and natural plant extract from the Amazon rain forest, was identified as a potent inhibitor and reducer of both beta-amyloid fibrils (the main component of “plaques”) and tau protein paired helical filaments/fibrils (the main component of “tangles”). PTI-00703 cat’s claw demonstrated both the ability to prevent formation/aggregation and disaggregate preformed Aβ fibrils (1–42 and 1–40) and tau protein tangles/filaments. The disaggregation/dissolution of Aβ fibrils occurred nearly instantly when PTI-00703 cat’s claw and Aβ fibrils were mixed together as shown by a variety of methods including Thioflavin T fluorometry, Congo red staining, Thioflavin S fluorescence and electron microscopy. Sophisticated structural elucidation studies identified the major fractions and specific constituents within PTI-00703 cat’s claw responsible for both the observed “plaque” and “tangle” inhibitory and reducing activity. Specific proanthocyanidins (i.e. epicatechin dimers and variants thereof) are newly identified polyphenolic components within Uncaria tomentosa that possess both “plaque and tangle” reducing and inhibitory activity. One major identified specific polyphenol within PTI-00703 cat’s claw was epicatechin-4β-8-epicatechin (i.e. an epicatechin dimer known as proanthocyanidin B2) that markedly reduced brain plaque load and improved short-term memory in younger and older APP “plaque-producing” (TASD-41) transgenic mice (bearing London and Swedish mutations). Proanthocyanidin B2 was also a potent inhibitor of brain inflammation as shown by reduction in astrocytosis and gliosis in TASD-41 transgenic mice. Blood-brain-barrier studies in Sprague-Dawley rats and CD-1 mice indicated that the major components of PTI-00703 cat’s claw crossed the blood-brain-barrier and entered the brain parenchyma within 2 minutes of being in the blood. The discovery of a natural plant extract from the Amazon rain forest plant (i.e. Uncaria tomentosa or cat’s claw) as both a potent “plaque and tangle” inhibitor and disaggregator is postulated to represent a potential breakthrough for the natural treatment of both normal brain aging and Alzheimer’s disease.
format Online
Article
Text
id pubmed-6365538
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-63655382019-02-08 The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles Snow, Alan D. Castillo, Gerardo M. Nguyen, Beth P. Choi, Paula Y. Cummings, Joel A. Cam, Judy Hu, Qubai Lake, Thomas Pan, Weihong Kastin, Abba J. Kirschner, Daniel A. Wood, Steven G. Rockenstein, Edward Masliah, Eliezer Lorimer, Stephen Tanzi, Rudolph E. Larsen, Lesley Sci Rep Article Brain aging and Alzheimer’s disease both demonstrate the accumulation of beta-amyloid protein containing “plaques” and tau protein containing “tangles” that contribute to accelerated memory loss and cognitive decline. In the present investigation we identified a specific plant extract and its constituents as a potential alternative natural solution for preventing and reducing both brain “plaques and tangles”. PTI-00703 cat’s claw (Uncaria tomentosa from a specific Peruvian source), a specific and natural plant extract from the Amazon rain forest, was identified as a potent inhibitor and reducer of both beta-amyloid fibrils (the main component of “plaques”) and tau protein paired helical filaments/fibrils (the main component of “tangles”). PTI-00703 cat’s claw demonstrated both the ability to prevent formation/aggregation and disaggregate preformed Aβ fibrils (1–42 and 1–40) and tau protein tangles/filaments. The disaggregation/dissolution of Aβ fibrils occurred nearly instantly when PTI-00703 cat’s claw and Aβ fibrils were mixed together as shown by a variety of methods including Thioflavin T fluorometry, Congo red staining, Thioflavin S fluorescence and electron microscopy. Sophisticated structural elucidation studies identified the major fractions and specific constituents within PTI-00703 cat’s claw responsible for both the observed “plaque” and “tangle” inhibitory and reducing activity. Specific proanthocyanidins (i.e. epicatechin dimers and variants thereof) are newly identified polyphenolic components within Uncaria tomentosa that possess both “plaque and tangle” reducing and inhibitory activity. One major identified specific polyphenol within PTI-00703 cat’s claw was epicatechin-4β-8-epicatechin (i.e. an epicatechin dimer known as proanthocyanidin B2) that markedly reduced brain plaque load and improved short-term memory in younger and older APP “plaque-producing” (TASD-41) transgenic mice (bearing London and Swedish mutations). Proanthocyanidin B2 was also a potent inhibitor of brain inflammation as shown by reduction in astrocytosis and gliosis in TASD-41 transgenic mice. Blood-brain-barrier studies in Sprague-Dawley rats and CD-1 mice indicated that the major components of PTI-00703 cat’s claw crossed the blood-brain-barrier and entered the brain parenchyma within 2 minutes of being in the blood. The discovery of a natural plant extract from the Amazon rain forest plant (i.e. Uncaria tomentosa or cat’s claw) as both a potent “plaque and tangle” inhibitor and disaggregator is postulated to represent a potential breakthrough for the natural treatment of both normal brain aging and Alzheimer’s disease. Nature Publishing Group UK 2019-02-06 /pmc/articles/PMC6365538/ /pubmed/30728442 http://dx.doi.org/10.1038/s41598-019-38645-0 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Snow, Alan D.
Castillo, Gerardo M.
Nguyen, Beth P.
Choi, Paula Y.
Cummings, Joel A.
Cam, Judy
Hu, Qubai
Lake, Thomas
Pan, Weihong
Kastin, Abba J.
Kirschner, Daniel A.
Wood, Steven G.
Rockenstein, Edward
Masliah, Eliezer
Lorimer, Stephen
Tanzi, Rudolph E.
Larsen, Lesley
The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles
title The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles
title_full The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles
title_fullStr The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles
title_full_unstemmed The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles
title_short The Amazon rain forest plant Uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles
title_sort amazon rain forest plant uncaria tomentosa (cat’s claw) and its specific proanthocyanidin constituents are potent inhibitors and reducers of both brain plaques and tangles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6365538/
https://www.ncbi.nlm.nih.gov/pubmed/30728442
http://dx.doi.org/10.1038/s41598-019-38645-0
work_keys_str_mv AT snowaland theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT castillogerardom theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT nguyenbethp theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT choipaulay theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT cummingsjoela theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT camjudy theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT huqubai theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT lakethomas theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT panweihong theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT kastinabbaj theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT kirschnerdaniela theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT woodsteveng theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT rockensteinedward theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT masliaheliezer theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT lorimerstephen theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT tanzirudolphe theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT larsenlesley theamazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT snowaland amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT castillogerardom amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT nguyenbethp amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT choipaulay amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT cummingsjoela amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT camjudy amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT huqubai amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT lakethomas amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT panweihong amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT kastinabbaj amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT kirschnerdaniela amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT woodsteveng amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT rockensteinedward amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT masliaheliezer amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT lorimerstephen amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT tanzirudolphe amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles
AT larsenlesley amazonrainforestplantuncariatomentosacatsclawanditsspecificproanthocyanidinconstituentsarepotentinhibitorsandreducersofbothbrainplaquesandtangles