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Biomedical subjects

J G Thompson

Publications and source records attributed to J G Thompson.

At least 37 records · Page 2Linked to original sources

Salvage and reconstruction of complex post-extirpative knee wounds: a successful surgical protocol.

Six patients with massive post-extirpative wounds of the knee, all of whom had received adjuvant therapy, underwent wound closure and limb salvage via free-tissue transfer in all but one case. No instance of delayed wound healing requiring surgery occurred among the patients reconstructed by microsurgical tissue transfer. Five of the six patients are presently ambulating on the salvaged extremity. A protocol for management of these complex wounds is presented.

Amputation, Surgical↗

Effect of delayed supplementation of fetal calf serum to culture medium on bovine embryo development in vitro and following transfer.

Supplementation of synthetic oviduct fluid (SOF) medium plus amino acids and bovine serum albumin (BSA) with either fetal calf serum (FCS) or charcoal-treated FCS (CT-FCS) from Day 5 of development was investigated to determine if either in vitro or post-transfer development was altered. Development to the compact morula stage or beyond was similar for all 3 treatments. However, blastocyst development at Day 7 was accelerated when serum was added to the medium (21.6, 40.1 and 39.4% blastocysts from cleaved embryos for BSA, FCS and CT-FCS, respectively; P < 0.01), but cell number of the resulting embryos was unaffected. Furthermore, addition of CT-FCS decreased the between replicate variation in embryo development and produced more Grade 1 and 2 quality embryos (25.8%) than BSA supplementation (18.1%; P < 0.05). The transfer of Grade 1 and 2 embryos at Day 7 following culture resulted in similar pregnancy and embryo survival rates for the 3 treatments, with a tendency for lower embryo survival of embryos cultured in FCS (embryo survival at Day 50 = 37.7% vs 53.3% and 57.6% for FCS, BSA and CT-FCS, respectively; P = 0.1). Significant fetal loss from Day 50 to term occurred within all 3 treatments. There were no birth weight differences for calves amongst the 3 culture treatments; however, one of the sires produced calves that were significantly heavier than expected, suggesting a possible sire-by-embryo interaction. These results demonstrate that addition of FCS may promote blastocyst development; however, there was also a tendency for lower embryo survival. Thus charcoal treatment of FCS is recommended, because it decreases variability in embryo development between runs and results in embryo survival rates to term similar to that BSA-supplemented media.

Animals↗

Total protein content and protein synthesis within pre-elongation stage bovine embryos.

Protein content was measured in zona-free bovine oocytes and pre-elongation stage embryos, following in vitro maturation, fertilisation, and then culture in Synthetic Oviduct Fluid medium supplemented with amino acids and 8 mg ml(-1) bovine serum albumin (BSA). Values (ng embryo(-1)) of 122 +/- 7.8, 137 +/- 8.6, 111 +/- 8.8, 115 +/- 10.4, 139 +/- 9.0 and 152 +/- 10.1 were obtained for zona-free mature oocytes, 2-cell (day 2), 8-cell (day 3), compact morula (day 6), blastocyst (day 7), and expanded blastocyst (day 8) stage embryos, respectively. The protein content of day 7 zona-enclosed blastocysts was 337 +/- 58.0 ng embryo(-1). These values suggest that prior to compaction and blastulation, the early cleavage stage bovine embryo has a higher rate of protein degradation than that of synthesis. Net growth is observed only after initiation of compaction. The protein content of day 7 blastocysts was measured in embryos following in vitro production and culture in the same media supplemented with either 0.5% w/v polyvinyl alcohol (PVA), 8 mg ml(-1) BSA, 8 mg ml(-1) BSA and further supplemented with 10% fetal calf serum (FCS) from the beginning of culture (FCS-D1), 8 mg ml(-1) BSA and 10% FCS from the fourth day of culture (day 5 of development) or from in vivo-derived day 7 blastocysts. Protein content was significantly (P < 0.05) lower in PVA-cultured embryos than other treatments. To determine if this difference in PVA-cultured embryos was due to a difference in the rate of protein synthesis, comparisons were made between day 7 embryos derived from BSA-culture and either PVA-culture, FCS-D1 culture or in vivo-derived embryos. Despite differences in diameter, no significant difference was observed in the incorporation of L-[2,3,4,5,6-3H]-phenylalanine into the TCA-precipitable fraction in any of the three comparisons made. However, incubation in the presence of FITC-abelled BSA or beta-casein and examination under either fluorescence or confocal microscopy revealed that protein in the extra-embryonic environment was actively taken up by the trophectoderm of day 7 blastocysts, most likely by endocytosis. These results suggest that exogenous protein is an important nutritive source, probably maintaining intracellular amino acid pools. Results obtained from the production of em bryos in protein-free medium should be viewed with the knowledge that such embryos differ metabolically from those embryos grown in the presence of protein, including in vivo-derived embryos.

Animals↗

Exogenous protein affects developmental competence and metabolic activity of bovine pre-implantation embryos in vitro.

The role of exogenous protein during bovine pre-implantation embryo development in two in vitro production systems was investigated. Morphological development, survival after vitrification and metabolic activity before and after vitrification were recorded in blastocysts generated in vitro in synthetic oviduct fluid (SOF) medium in the presence of either bovine serum albumin (BSA) or polyvinyl-alcohol (PVA). Metabolic activity was determined by measuring oxygen consumption, glucose and pyruvate uptake as well as lactate production. Development to blastocysts and survival after vitrification were reduced significantly in medium lacking protein. Of the metabolic parameters measured, only pyruvate uptake was increased significantly in embryos cultured in medium supplemented with PVA. Whereas in BSA-supplemented medium pyruvate uptake was correlated with lactate production, in PVA-supplemented medium glucose uptake was correlated with lactate production. Lactate production increased significantly after vitrification as compared with fresh embryos. Thus, exogenously added protein significantly alters oxidative metabolism. In medium lacking protein, the additional pyruvate may be used for the maintenance of intracellular amino acid pools. Vitrification appears to alter glycolytic metabolic profiles indicating a stress-response. In conclusion, the perturbed metabolism corresponding to reduced developmental capacity of embryos produced under protein-free conditions emphasizes the ambiguity between maximum development, technical and hygienic requirements and physiological demands of the early bovine embryo in vitro. The use of well-defined recombinant proteins might assist in closing this gap.

Animals↗

Human assisted conception: a cautionary tale. Lessons from domestic animals.

A variety of embryo-based technologies used in farm animal reproduction, including embryo culture, nuclear transfer, embryo-somatic cell co-culture and asynchronous embryo transfer can lead to the production of large offspring; the so-called large calf/lamb syndrome. In some cases, abnormalities in the fetus and newborn are apparent. The nature of these associations is explored with emphasis on the biological differences between in-vivo- and in-vitro-produced embryos. A unifying framework and research programme aimed at explaining anomalies in early embryo development is then proposed in terms of the response of somatic cells and embryos to cellular stress. The review concludes with a caution against developments in assisted conception technologies, in man and domestic animals, being determined too much by the needs of commerce at the expense of research on the molecular, biochemical and physiological basis of early mammalian development.

Animals↗

Comparison between in vivo-derived and in vitro-produced pre-elongation embryos from domestic ruminants.

In vitro production of ruminant embryos has become routine and is increasingly available as a commercial service to dairy, meat and wool producers. However, the efficiency of producing viable embryos and the development of such embryos after transfer to recipients are perceived to be inferior to that which occurs in vivo. The present review outlines the biochemical and morphological similarities and differences between embryos produced in vitro and those produced in vivo. Some measures of metabolism are not markedly different between in vitro- and in vivo-derived blastocysts. However, at a cellular and subcellular level, differences in metabolism, morphology and ultrastructure have been described, as has susceptibility to manipulation and cryopreservation. Most importantly are the differences in lambing and calving rates and the reports of abnormal fetal development from embryos produced in vitro. These latter observations are of major concern, as they suggest that the in vitro environment may affect subsequent developmental physiology. At the extreme, these effects may not be expressed until adult life. Further efforts to improve the efficiency of in vitro embryo production must be accompanied by a commitment to assess the long-term consequences of these procedures.

Animals↗

Oxygen consumption and energy metabolism of the early mouse embryo.

Oxygen consumption of preimplantation and early postimplantation mouse embryos has been measured using a novel noninvasive ultramicrofluorescence technique, based on an oil-soluble, nontoxic quaternary benzoid compound pyrene, whose fluorescence is quenched in the presence of oxygen. Pyruvate and glucose consumption, lactate production, and glycogen formation from glucose were also measured. Preimplantation mouse embryos of the strain CBA/Ca x C57BL/6 were cultured in groups of 10-30 in 2 microliters of modified M2 medium containing 1 mmol l-1 glucose, 0 mmol l-1 lactate, and 0.33 mmol l-1 pyruvate, for between 4-6 hr. Day 6.5 and 7.5 embryos were cultured singly in 40 microliters M2 medium for between 2-3 hr. Oxygen consumption was detected at all stages of development, including, for the first time, in the early postimplantation embryo. Consumption remained relatively constant from zygote to morula stages before increasing in the blastocyst and day 6.5-7.5 stages. When expressed as QO2 (microliters/mg dry weight/hr), oxygen consumption was relatively constant from the one-cell to morula stages before increasing sharply at the blastocyst stage and declining to preblastocyst levels on days 6.5 and 7.5. Pyruvate was consumed during preimplantation stages, with glucose uptake undetectable until the blastocyst stage. Glucose was the main substrate consumed by the 6.5 and 7.5 day embryo. The proportions of glucose accounted for by lactate appearance were 81%, 86%, and 119% at blastocyst, day 6.5, and day 7.5 stages, respectively. The equivalent figures for glucose incorporated into glycogen were 10.36%, 0.21%, and 0.19%, respectively. The data are consistent with a switch from a metabolism dependent on aerobic respiration during early preimplantation stages to one dependent on both oxidative phosphorylation and aerobic glycolysis at the blastocyst stage, a pattern which is maintained on days 6.5 and 7.5. Our technique for measuring oxygen consumption may have diagnostic potential for selecting viable embryos for transfer following assisted conception techniques in man and domestic animals.

Animals↗

Economic effects of the outmigration of obstetric services in a rural county.

Obstetrical health care resources have been declining in rural areas since 1980, resulting in reduced prenatal care that can result in higher medical costs. Loss of health care services is known to have negative economic consequences for rural communities. This article illustrates how hospitals and other providers of medical services can be used as vehicles for local economic development. Provision of medical services is an important component of the economic base of all communities and especially of small rural communities with hospitals. When a community loses medical services to another community, it loses both direct and indirect economic benefits. The research presented here analyzes the economic effects of outmigration of obstetric services from a rural "perimeter" community in Wyoming. The combined direct and indirect economic losses are shown to be significant. Annual revenue losses to the local hospital were estimated as high as 12 percent. It is important to make explicit the economic losses that result from reductions in health care. Such research, combined with knowledge of negative health and social factors can provide community leaders with additional motivation to find solutions to declining health care in rural areas.

Birth Rate↗

Oxygen uptake and carbohydrate metabolism by in vitro derived bovine embryos.

The consumption of oxygen, uptake of pyruvate and glucose and production of lactate were determined for groups of bovine embryos produced in vitro from the one-cell to the blastocyst stage (day 0-6 of culture). Measurements were made in Hepes-buffered synthetic oviduct fluid medium supplemented with 1.0 mmol pyruvate l-1, 10 mmol D,L-lactate l-1 and 1.5 mmol glucose l-1 and also 3 mg BSA ml-1 and, from day 5 of development, 10% (v/v) fetal calf serum. The amount of ATP production was determined from oxygen consumption and the proportion of glucose taken up that could be accounted for by lactate production. The data revealed that oxygen consumption was relatively constant from days 0-4 of culture (0.24-0.27 nl per embryo h-1), but increased with the initiation of compaction (0.39 nl per embryo h-1) and continued to increase with the formation and expansion of the blastocoel (0.9 nl per embryo h-1). Both pyruvate and glucose uptake followed similar patterns. Furthermore, when plotted against oxygen consumption, both pyruvate and glucose uptake increased significantly (P < 0.001) in a linear relationship (R2 = 0.61 and 0.49, respectively). Lactate production also increased with development and accounted for 40% of glucose uptake at day 0 of culture (putative zygotes), increasing to 70% by day 2 (eight-cell stage) and 100% of glucose uptake from day 4 of culture onwards. ATP production followed a similar pattern to that of oxygen consumption (60-85 pmol per embryo h-1 from day 0 to day 4) increasing with compaction (124 pmol per embryo h-1) and blastulation (221 pmol per embryo h-1). For precompaction stages, 93-96% of ATP production was derived from oxidative phosphorylation, decreasing to 82% with compaction. ATP produced by oxidative phosphorylation could be accounted for by the uptake of pyruvate, suggesting that bovine embryos produced in vitro utilize little endogenous substrates when appropriate exogenous substrates are present in the culture medium. The data revealed that bovine embryos were dependent on oxidative phosphorylation for energy (ATP) production at all stages of pre-elongation development, with perhaps a shift in dependence towards glycolysis in conjunction with compaction. It follows that oxidizable substrates, such as pyruvate and certain amino acids, are preferred in embryo culture medium during development in vitro.

Adenosine Triphosphate↗

The effects of the Ilizarov distraction technique on bone and muscle in a canine model: a preliminary report.

This study examined the functional and morphological changes experienced by bone and muscle during Ilizarov distraction osteogenesis. Although extensive research has been conducted in the area of regenerate bone formation, the effect of limb lengthening on the biomechanical properties of bone and muscle has not been thoroughly addressed. In this study, an Ilizarov external fixator was applied to one tibia of nine skeletally mature dogs, and distracted 3 cm over thirty days. The contralateral tibia served as control. Histology and weekly radiographs assessed muscle morphology and bone growth. The contractile capabilities of the gastrocnemius muscles from the experimental and control limbs were measured prior to sacrifice, and the bending stiffness of the tibias of five dogs was determined. All dogs experienced loss of knee extension secondary to muscle contracture and/or stiffness about the joint. These dogs did not bear weight on the experimental limb. In one dog, spontaneous resolution of the muscle contracture allowed partial weight bearing during the last three weeks of consolidation. Despite 3 cm distraction, tibial lengthening ranged from 1.7 to 3 cm. Biomechanical testing revealed a significant reduction in the bending stiffness of the lengthened bones when compared with control values (p < 0.003). The weight of the lengthened muscles was 35% less than control values, a finding consistent with the histology which showed mild muscle fiber degeneration in all dogs. The contractile capabilities of the lengthened muscles were reduced to 29-80% of control values (p < 0.005). In contrast, the lengthened muscle from the weight bearing dog retained 85% of the weight and 104% of the maximum contractile force of the control muscle.

Animals↗

Successful in vitro culture of early cleavage stage embryos recovered from superovulated red deer (Cervus elaphus).

Three separate embryo culture systems were evaluated for their ability to support development of early cleavage stage red deer (Cervus elaphus ) embryos: ligated sheep oviducts (Treatment A); cervine oviduct epithelial monolayer in TCM 199 + 10% deer serum (Treatment B); synthetic oviduct fluid + 20% human serum at 7% O(2) atmosphere (Treatment Q. In addition, 2 superovulation protocols were compared for their efficacy in producing early cleavage stage embryos. Twenty red deer (2 to 7 yr old) were synchronized in April with intravaginal CIDR devices for 12 d. All animals received a total of 0.4 units of ovine FSH administered in 8 equal doses, 12 h apart, beginning 72 h before removal of CIDR devices. The deer additionally received 200 IU PMSG, either with the first FSH injection (Group 1, n = 10) or with the last FSH injection (Group 2, n = 10). Hinds were placed with fertile stags following withdrawal of CIDR devices. Ova were collected by surgical recovery 63 h post CIDR removal. At the time of collection, animals in Group 2 had a significantly greater mean (+/- SEM) ovulation rate (11.2 +/- 2.4 vs 5.3 +/- 2.4), with more animals responding to treatment (>1 ovulation), than the animals in Group 1 (10/10 vs 4/10). Late in the breeding season (June), 10 additional red deer (Group 3, Experiment 2) were superovulated using the same protocol as for the deer in Group 2, with ova collection advanced by 24 h. Mean (+/- SEM) ovulation rate was 6.4 +/- 1.2 with 9 10 animals responding. Ova recovery did not differ among the groups (range 73 to 87%). Superovulation treatment did not affect cultured embryo development to the morula/blastocyst stage. Furthermore, there was no difference among the 3 culture systems in their support of development either to the morula (range 50 to 58%) or to the blastocyst (range 22 to 26%) stage. After laparoscopic transfer of 4 morula/blastocyst embryos to recipient red deer (2 from Treatment B and 2 from Treatment C) 2 live calves were born from embryos cultured in Treatment B.

Journal Article↗

Lamb birth weight is affected by culture system utilized during in vitro pre-elongation development of ovine embryos.

It has previously been reported that ovine embryos cultured in Synthetic Oviduct Fluid medium supplemented with 20% human serum (SOF+HS) develop into lambs with a high birth weight. We have investigated this phenomenon by culturing ovine zygotes in SOF+HS or a serum-free version of Synthetic Oviduct Fluid with BSA and amino acids (SOFaaBSA) in place of serum. Zygotes were either obtained from superovulated and naturally mated ewes or produced in vitro. Embryos were subsequently transferred to synchronized recipient ewes (n = 63). An additional group of ewes (n = 16) served as flock fertility and lambing controls. Development of zygotes to stages suitable for transfer (i.e., good to excellent compact morulae or blastocysts) was not affected by medium (SOFaaBSA = 53 +/- 5% vs. SOF+HS = 59 +/- 5%) but was affected by source (in vivo-derived = 74 +/- 5% vs. in vitro-derived = 35 +/- 5%, p < 0.001). Embryos incubated in SOF+HS were morphologically different from those incubated in SOFaaBSA, having abundant lipid droplets. Pregnancy rate (65%) and embryo survival (48%) of recipients determined by ultrasonography on approximately Day 60 of pregnancy did not differ between medium treatments or source of embryo. Mean weight of lambs from embryos cultured in SOF+HS (4.2 +/- 0.2 kg) was significantly heavier than that of controls (3.4 +/- 0.2 kg, p < 0.01) or of lambs from embryos cultured in SOFaaBSA (3.5 +/- 0.2 kg, p < 0.05). Furthermore, mean gestation length was longer in recipients receiving embryos incubated in SOF+HS (147 +/- 1 days) than in SOFaaBSA (145 +/- 1 day, p < 0.05). Reasons for this birth weight and gestation length difference are unclear, but our data suggest that different culture conditions can produce embryos with differing morphology, apparent chemical composition, and rate of development, resulting in lambs with differing gestation length and birth weight.

Animals↗

Metabolism of pyruvate by pre-elongation sheep embryos and effect of pyruvate and lactate concentrations during culture in vitro.

In the first of two experiments, utilization of [1-14C]pyruvate by 8-cell and blastocyst-stage embryos derived in vivo was examined during a 3-h incubation in HEPES-buffered synthetic oviduct fluid (SOF) medium in the presence or absence of other substrates. In the second, a factorial design examined the effect of pyruvate (0, 0.33, 1.0 and 3.3 mM) and lactate (3.3, 10 and 33 mM) on development of 1- and 2-cell sheep embryos cultured in vitro in a modified SOF medium (containing glucose, glutamine and modified Eagle's medium non-essential amino acids). Peak utilization of [1-14C]pyruvate was unaffected by the presence or absence of other energy substrates. In contrast, rate of utilization was affected by the addition of other energy substrates, with half maximal utilization occurring at either 0.4 +/- 0.2 mM or 1.2 +/- 0.2 mM for 8-cells and either 0.2 +/- 0.2 mM or 1.3 +/- 0.3 mM for blastocysts when incubated in the absence or presence of other energy substrates respectively. In the second experiment the proportion of embryos developing to blastocysts was inhibited by high lactate levels (P < 0.001), but was generally not affected by pyruvate concentration. However, there was a significant interaction (P < 0.001) between pyruvate and lactate when both were present in the medium. At 0.33 mM pyruvate, 3.3 mM lactate supported good development (83 +/- 8% blastocysts) whereas 10 mM lactate supported less development (50 +/- 11%). However, at the higher levels of pyruvate this effect was lost.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Requirement for glucose during in vitro culture of sheep preimplantation embryos.

Glucose utilization by sheep embryos was examined in 8-cell (N = 36) and blastocyst (N = 36) stages, by measuring conversion of [5-3H]glucose to 3H2O. Fifty percent glucose utilization occurred at 0.79 +/- 0.69 mM for 8-cell embryos and -0.06 +/- 0.15 mM for blastocysts. Development of 1- and 2-cell sheep embryos (N = 264) was examined under different glucose concentrations (0, 1.5, 3, or 6 mM) and in the presence or absence of 0.33 mM pyruvate and 3.3 mM lactate (PL). Overall, the presence of glucose was detrimental (P less than 0.001) to embryonic development. By contrast, the presence of pyruvate and lactate was beneficial (P less than 0.001) to development. An interaction was observed between the concentration of glucose and presence or absence of PL (P less than 0.05). An optimum level of glucose occurs at 0-3 mM in the presence of PL (P less than 0.1). Development to the blastocyst stage was observed in medium when supplemented with amino acids and albumin alone. Thus, glucose metabolism is not critical for embryonic development, but beneficial at low concentrations. High concentrations can inhibit development, possibly by inhibiting the tricarboxylic acid (TCA) cycle. Sheep embryos may also be using amino acids as an energy source for development.

Animals↗

Addition of superoxide dismutase and catalase does not necessarily overcome developmental retardation of one-cell mouse embryos during in-vitro culture.

There is evidence that developmental blocks observed in mouse embryos during culture in vitro may be the result of free radical-induced cellular dysfunction. We have further investigated this possibility by examining the effects of 5% O2 and the antioxidant enzymes, superoxide dismutase (SOD) and catalase (CAT), on mouse 1-cell embryo development. The results demonstrate that development of CF-1 strain embryos is enhanced by incubating in 5% CO2, 5% O2, 90% N2 (5/5/90) compared with 5% CO2 in air (5/air) (P < 0.01) and by culturing in the presence of other embryos. Superoxide dismutase significantly improved embryonic development (35 +/- 5% v. 17 +/- 4% morulae/blastocysts, P < 0.001) at a concentration of 100 units mL-1 when embryos were gassed under 5/5/90. At a concentration of 1000 units mL-1, SOD was detrimental to development (P < 0.001). Injection of SOD and/or CAT into embryos had not effect on development. Development has also been examined in four strains of mice (CF-1, Quackenbush (random-bred strains), Balb-C (inbred) and the F1 hybrid of CBA x C57B1) in the presence or absence of 100 units SOD mL-1 and 1000 units CAT mL-1. Embryonic development was markedly different among the four strains examined, with F1 hybrid > Balb-C (P < 0.001), Balb-C > CF-1 (P < 0.05) and Quackenbush embryos performing very poorly compared with the embryos of the other three strains (P < 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Developmental ability of in vitro matured sheep oocytes collected during the nonbreeding season and fertilized in vitro with frozen ram semen.

During the nonbreeding season, oocytes recovered from ovaries of FSH-primed or nonprimed ewes were matured in the presence or absence of granulosa cells collected from ovaries of primed or nonprimed ewes prior to in vitro fertilization with either fresh or frozen-thawed sperm. Following fertilization, ova were cultured for 24 h in synthetic oviduct fluid medium (SOF) supplemented with 20% human serum at 39 degrees C under humidified 5% CO(2), 5% O(2), 90% N(2) and then assessed for cleavage. Overall, 52% of ova cleaved. Cleavage was not affected by the source of sperm. Significantly more oocytes from primed follicles cleaved after 24 hours than those from nonprimed follicles (P<0.001). Maturation of oocytes in the presence of granulosa cells from nonprimed ewes resulted in a lower cleavage rate (44%, P<0.05) than in the presence of granulosa from primed ewes (59%) or no granulosa cells (50%). Oocytes (n = 508) from primed ewes were matured in the presence of granulosa cells (also from primed ewes) and fertilized in vitro with frozen-thawed sperm. Following in vitro culture for 24 hours, 68 of the 270 (53%) cleaved embryos were transferred to 17 recipient ewes, 15 of which remained pregnant to term, producing 24 lambs. The remaining 202 cleaved embryos were cultured for a further 5 days, of which 73 appeared to reach the morula/blastocyst stage and 61 were transferred to 16 recipients. Two ewes remained pregnant to term producing two lambs. These results demonstrate that production of sheep embryos using in vitro maturation and fertilization techniques is possible in the nonbreeding season. However, the poor viability of embryos obtained following extended culture needs to be resolved before such techniques can be usefully applied.

Journal Article↗