Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 4 de 4
Filter
Add more filters










Database
Language
Publication year range
1.
J Cannabis Res ; 4(1): 16, 2022 Apr 06.
Article in English | MEDLINE | ID: mdl-35387682

ABSTRACT

BACKGROUND: Cannabis use among pregnant women has increased. We surveyed pregnant women in rural Pennsylvania to examine cannabis use and opinions regarding its safety during pregnancy. We examined associations between challenges of pregnancy (e.g., exhaustion, pain, nausea) and cannabis use. METHODS: A cross-sectional survey was administered to a convenience sample of English-speaking pregnant women receiving prenatal care at Geisinger, May-June 2019. Principal component analysis (PCA) was used to construct three scores (overwhelmed/exhausted, happy/optimistic, and health worries) based on 10 questions regarding common experiences during pregnancy (e.g., nausea/vomiting, pain, exhaustion, mood). A score based on four questions regarding cannabis safety during pregnancy was also constructed. RESULTS: From a maximum of 300 surveys distributed, 284 were completed (95%). Most participants were white (87%), married (49%) or living with a partner (38%), and had private health insurance (62%). Most women indicated it was unsafe to use alcohol and tobacco products during pregnancy (> 90%), but that proportion dropped to 82% and 63% regarding recreational cannabis and medical cannabis, respectively. Only women with prior cannabis use (23% of sample) continued to do so during pregnancy: 57% of women reporting daily cannabis use prior to pregnancy continued to use cannabis during pregnancy with 33% reporting daily use. Two thirds of users during pregnancy indicated they were self-medicating for: nausea (90%), anxiety (70%), insomnia (30%), and pain management (30%). Many (56%) of the women who used cannabis during pregnancy believed it is safe. Younger women and women who were overwhelmed/exhausted or less happy/optimistic were more likely to believe cannabis use is safe. Women valued healthcare provider advice more than advice from family and friends. Study strengths include a high response rate. Weaknesses include self-report and that is was a convenience sample; however, the demographics of the sample were similar to past studies. CONCLUSION: Women with a history of cannabis use, especially daily use, are at risk of continuing during pregnancy and should receive counseling. Younger women and women with greater stressors during pregnancy also are at greater risk. Screening for prior use and for stressors may identify patients that would benefit from enhanced counseling.

2.
Zoo Biol ; 40(3): 192-200, 2021 May.
Article in English | MEDLINE | ID: mdl-33705586

ABSTRACT

We assayed 31 milk samples collected from two African elephant cows housed at the Indianapolis Zoo across lactation (birth to calf age 973 days) for macronutrient composition (water, fat, protein, sugar, gross energy [GE], ash, calcium, and phosphorus). All assays were performed at the Smithsonian National Zoological Park Nutrition Laboratory, Washington, DC (SNZP) using standard methods developed at SNZP. Milk constituents are expressed on a weight-per-weight basis (%) and as a proportion each constituent contributes to milk energy. Calf weights were recorded, and growth rate calculated. The macronutrient composition of the African elephant milk samples was compared to previously published results for Asian elephants using analysis of covariance. African elephant milk is similar to Asian elephant milk, being moderately high in fat and energy and low in sugar. The mean values across lactation (excluding colostrum; n = 28) are 5.6 ± 0.3% crude protein, 3.1 ± 0.3% sugar, 13.0 ± 1.0% fat, and GE of 1.63 ± 0.10 kcal/g. Milk composition did not differ between cows. Milk composition significantly changed over lactation; fat and protein increased, and sugar decreased with calf age, comparable to previously reported data for African and Asian elephant milk. The proportion of milk energy from fat increased and that from sugar decreased over lactation, but the energy from protein was relatively constant. Protein contributed a higher proportion of energy to African elephant milk compared to Asian elephant milk (20.6% vs. 17.0%, p = .001). Despite this, calf growth rate was similar between the species, with the calves in this study gaining about 0.8 kg/day for the first 6 months.


Subject(s)
Elephants/physiology , Milk/chemistry , Nutrients/chemistry , Animals , Animals, Zoo , Female
3.
Zoo Biol ; 38(5): 405-413, 2019 Oct.
Article in English | MEDLINE | ID: mdl-31267587

ABSTRACT

Hand-rearing and assisted-rearing aardvarks in captivity has become commonplace and has led to success in breeding the species. However, the macronutrient content of aardvark milk past 1 month of age is unknown. A better understanding of aardvark milk composition would enhance captive management efforts. Here, we assayed milk samples from two captive individuals from 2 to 114 days postpartum (N = 21) for dry matter, fat, crude protein, total sugar, ash (total minerals), calcium (Ca), phosphorus (P), and gross energy. The body weight of one calf was measured from birth to weaning. Milk macronutrient composition was compared to that of other Afrotherian species and Xenarthra species with similar diets. Average protein, fat, and sugar concentrations of aardvark milk across lactation were 12.3%, 13.6%, and 2.5%, respectively. Ash averaged 1.9%, with Ca (0.50%) and P (0.35%) accounting for about 45% of total minerals. All measured nutrients increased over lactation except sugar, which decreased. Aardvark milk is high in energy (2.12 kcal/g) mostly derived from fat and protein and little energy from sugar. Calf growth was linear (r2 = 0.995) with a mean gain of 159 g/day, achieving almost 30% of adult weight at weaning. Within Afrotheria, aardvark milk is higher in fat and protein and lower in sugar than elephant milk and more closely resembles the milk of its fellow insectivore, the elephant shrew. Aardvark milk is also similar in composition to milk of insectivorous Xenarthra species (nine-banded armadillo and giant anteater). Aardvark milk composition is consistent with the species' high-protein diet, fast growth, and nursing pattern.


Subject(s)
Milk/chemistry , Nutrients/analysis , Xenarthra , Animals , Animals, Zoo , Carbohydrates/chemistry , Female , Lactation , Proteins/chemistry
4.
Am J Primatol ; 81(10-11): e22994, 2019 10.
Article in English | MEDLINE | ID: mdl-31219214

ABSTRACT

Milk is inhabited by a community of bacteria and is one of the first postnatal sources of microbial exposure for mammalian young. Bacteria in breast milk may enhance immune development, improve intestinal health, and stimulate the gut-brain axis for infants. Variation in milk microbiome structure (e.g., operational taxonomic unit [OTU] diversity, community composition) may lead to different infant developmental outcomes. Milk microbiome structure may depend on evolutionary processes acting at the host species level and ecological processes occurring over lactation time, among others. We quantified milk microbiomes using 16S rRNA high-throughput sequencing for nine primate species and for six primate mothers sampled over lactation. Our data set included humans (Homo sapiens, Philippines and USA) and eight nonhuman primate species living in captivity (bonobo [Pan paniscus], chimpanzee [Pan troglodytes], western lowland gorilla [Gorilla gorilla gorilla], Bornean orangutan [Pongo pygmaeus], Sumatran orangutan [Pongo abelii], rhesus macaque [Macaca mulatta], owl monkey [Aotus nancymaae]) and in the wild (mantled howler monkey [Alouatta palliata]). For a subset of the data, we paired microbiome data with nutrient and hormone assay results to quantify the effect of milk chemistry on milk microbiomes. We detected a core primate milk microbiome of seven bacterial OTUs indicating a robust relationship between these bacteria and primate species. Milk microbiomes differed among primate species with rhesus macaques, humans and mantled howler monkeys having notably distinct milk microbiomes. Gross energy in milk from protein and fat explained some of the variations in microbiome composition among species. Microbiome composition changed in a predictable manner for three primate mothers over lactation time, suggesting that different bacterial communities may be selected for as the infant ages. Our results contribute to understanding ecological and evolutionary relationships between bacteria and primate hosts, which can have applied benefits for humans and endangered primates in our care.


Subject(s)
Microbiota , Milk, Human/microbiology , Milk/microbiology , Primates/microbiology , Animals , Female , Host Microbial Interactions , Humans , Lactation/physiology , Milk/chemistry , Milk, Human/chemistry , Primates/physiology , RNA, Ribosomal, 16S/genetics , Sequence Analysis, DNA , Species Specificity
SELECTION OF CITATIONS
SEARCH DETAIL
...