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20 pages, 1279 KB  
Article
Mangifera indica ‘Namdokmai’ Prevents Neuronal Cells from Amyloid Peptide Toxicity and Inhibits BACE-1 Activities in a Drosophila Model of Alzheimer’s Amyloidosis
by Piya Temviriyanukul, Suwapat Kittibunchakul, Piyapat Trisonthi, Thanit Kunkeaw, Woorawee Inthachat, Dalad Siriwan and Uthaiwan Suttisansanee
Pharmaceuticals 2022, 15(5), 591; https://doi.org/10.3390/ph15050591 - 11 May 2022
Cited by 15 | Viewed by 5004
Abstract
Alzheimer’s disease (AD) is a progressive neurological illness with few effective treatments. Thus, ameliorating the effects of AD using natural products has attracted global attention with promising efficacy and safety. In this study, ten tropical fruits including Ananas comosus ‘Phulae’, Ananas comosus ‘Pattavia’, [...] Read more.
Alzheimer’s disease (AD) is a progressive neurological illness with few effective treatments. Thus, ameliorating the effects of AD using natural products has attracted global attention with promising efficacy and safety. In this study, ten tropical fruits including Ananas comosus ‘Phulae’, Ananas comosus ‘Pattavia’, Carica papaya ‘Khaekdum’, Carica papaya ‘Khaeknuan’, Durio zibethinus ‘Monthong’, Durio zibethinus ‘Chanee’, Psidium guajava ‘Kimju’, Psidium guajava ‘Keenok’, Mangifera indica ‘Kaew’ and Mangifera indica ‘Namdokmai’ were screened for their inhibitory activities against the key enzymes, cholinesterases and β-secretase (BACE-1), involved in AD pathogenesis. The top three fruit extracts with promising in vitro anti-AD activities were further investigated using rat pheochromocytoma PC-12 neuronal cell line and Drosophila AD model. Data showed that M. indica ‘Kaew’, M. indica ‘Namdokmai’ and P. guajava ‘Kimju’ reduced Aβ1–42-mediated neurotoxicity by promoting glutathione-dependent enzymes, while M. indica ‘Namdokmai’ limited Aβ1–42 peptide formation via BACE-1 inhibition and amended locomotory behavior of the Drosophila AD model. Results indicated the potential anti-AD properties of tropical fruits, particularly M. indica ‘Namdokmai’ in the prevention of Aβ1–42-mediated neurotoxicity and as a BACE-1 blocker. Full article
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11 pages, 305 KB  
Article
“I Am the Home Care Agency”: The Dementia Family Caregiver Experience Managing Paid Care in the Home
by Jennifer M. Reckrey, Deborah Watman, Emma K. Tsui, Emily Franzosa, Sasha Perez, Chanee D. Fabius and Katherine A. Ornstein
Int. J. Environ. Res. Public Health 2022, 19(3), 1311; https://doi.org/10.3390/ijerph19031311 - 25 Jan 2022
Cited by 23 | Viewed by 5108
Abstract
As the locus of long-term care in the United States shifts from institutions to the community, paid caregivers (i.e., home health aides, personal care attendants) are providing more hands-on care to persons with dementia living at home. Yet, little is known about how [...] Read more.
As the locus of long-term care in the United States shifts from institutions to the community, paid caregivers (i.e., home health aides, personal care attendants) are providing more hands-on care to persons with dementia living at home. Yet, little is known about how family caregivers engage with paid caregivers. We conducted in-depth, semi-structured interviews (n = 15) with family caregivers, of persons living at home with severe dementia, and enriched our findings with data from a second cohort of family caregivers of persons with dementia (n = 9). Whether paid caregivers were hired privately or employed via a Medicaid-funded agency, family caregivers reported that they needed to manage paid caregivers in the home. Core management tasks were day-to-day monitoring and relationship building with family caregivers; training paid caregivers and coordinating care with homecare agencies was also described. In order to support family caregivers of individuals with dementia at home, it is important consider their preferences and skills in order to effectively manage paid caregivers. Support of efforts to build a high-quality paid caregiving workforce has the potential to improve not only care delivered to persons with dementia, but the experiences of their family caregivers. Full article
20 pages, 3677 KB  
Article
Analysis of Phytonutrients, Anti-Mutagenic and Chemopreventive Effects of Tropical Fruit Extracts
by Piya Temviriyanukul, Suwapat Kittibunchakul, Piyapat Trisonthi, Woorawee Inthachat, Dalad Siriwan and Uthaiwan Suttisansanee
Foods 2021, 10(11), 2600; https://doi.org/10.3390/foods10112600 - 27 Oct 2021
Cited by 20 | Viewed by 4145
Abstract
Thailand is located in the tropics and a wide variety of fruits are grown commercially. However, studies regarding the phytonutrients, anti-mutagenic and chemopreventive effects of these fruits are limited. Thus, phytochemical profiles and inhibition of key enzymes involved in obesity and diabetes, together [...] Read more.
Thailand is located in the tropics and a wide variety of fruits are grown commercially. However, studies regarding the phytonutrients, anti-mutagenic and chemopreventive effects of these fruits are limited. Thus, phytochemical profiles and inhibition of key enzymes involved in obesity and diabetes, together with anti-mutagenic and chemopreventive properties of eight tropical fruit extracts cultivated in Thailand, including Psidium guajava ‘Kimju’, Psidium guajava ‘Keenok’, Ananas comosus ‘Pattavia’, Ananas comosus ‘Phulae’, Durio zibethinus ‘Chanee’, Durio zibethinus ‘Monthong’, Carica papaya ‘Khaekdum’ and Mangifera indica ‘Namdokmai’ were investigated. Different cultivars were also compared. Results showed that M. indica ‘Namdokmai’ was the most antioxidant-rich extract containing abundant 4-hydroxybenzoic acid and its derivative, gallic acid, as the main phenolics. M. indica ‘Namdokmai’ also exhibited high inhibitory capacities (>60% inhibition under studied conditions) against lipase, α-amylase and α-glucosidase, key enzymes as drug targets for controlling obesity and type 2 diabetes. Interestingly, all fruit extracts suppressed food mutagen-induced DNA mutations assayed by the Ames test, especially M. indica ‘Namdokmai’ and C. papaya ‘Khaekdum’ (>50% inhibition at 200 µg/plate). The M. indica ‘Namdokmai’ was also the most potent extract for suppression of cancer promotion (>90% inhibition at 200 µg/mL) followed by P. guajava ‘Kimju’, P. guajava ‘Keenok’ and C. papaya ‘Khaekdum’. Results potentially indicated that fruit intake after overcooked meat consumption might supplement nutrients and fiber and also reduce DNA mutation sources. Full article
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15 pages, 1819 KB  
Article
Fermentable Sugar Production from the Peels of Two Durian (Durio zibethinus Murr.) Cultivars by Phosphoric Acid Pretreatment
by Abraham Kusi Obeng, Duangporn Premjet and Siripong Premjet
Resources 2018, 7(4), 60; https://doi.org/10.3390/resources7040060 - 20 Sep 2018
Cited by 27 | Viewed by 7737
Abstract
The potential of durian (Durio zibethinus Murr.) peel as feedstock for the production of fermentable sugars was evaluated. Durian peel biomass from two cultivars, monthong (Durio zibethinus Murr. cv. Monthong) and chanee (Durio zibethinus Murr. cv. Chanee), were pretreated with [...] Read more.
The potential of durian (Durio zibethinus Murr.) peel as feedstock for the production of fermentable sugars was evaluated. Durian peel biomass from two cultivars, monthong (Durio zibethinus Murr. cv. Monthong) and chanee (Durio zibethinus Murr. cv. Chanee), were pretreated with different concentrations (70%, 75%, 80%, and 85%) of phosphoric acid (H3PO4) at a moderate temperature of 60 °C for 60 min. The H3PO4-pretreated durian peel biomass was then subjected to enzymatic hydrolysis. Significantly higher glucan (44.74 ± 0.21%) content was observed in the monthong peel compared to the chanee peel (42.06 ± 0.28%). Phosphoric acid pretreatment caused the significant solubilization of the xylan and acid soluble lignin (ASL) contents. This enhanced the enzymatic hydrolysis process causing a significant increase in the hydrolysis efficiency and glucose concentration. The highest hydrolysis efficiency and glucose concentration were obtained after 72 h from the 75% H3PO4-pretreated peel biomass for both the monthong (90.33 ± 0.42% and 9.55 ± 0.11 g/L, respectively) and chanee (90.06 ± 0.40% and 8.56 ± 0.13 g/L, respectively) peels. Biomass to glucose recovery for monthong and chanee were improved by approximately 7- and 6-fold, respectively. The scanning electron microscopy (SEM) and X-ray diffraction (XRD) analysis showed destruction of the peel biomass structure and changes in the cellulose crystallinity index (CrIs). Full article
(This article belongs to the Special Issue Renewable Resources, Clean Resources, Future Resources)
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