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Biomedical subjects

John Long

Publications and source records attributed to John Long.

8 recordsLinked to original sources

Distal Recirculation of Enteral contents Augmented Mechanically (DREAM) Promotes Intestinal Adaptation and Restores Enterohepatic Signaling in Short Bowel Syndrome.

BACKGROUND & AIMS: Short bowel syndrome (SBS) leads to malabsorption and intestinal failure-associated liver disease. Intestinal adaptation (IA) driven by sustained enteral nutrition (EN) is essential, but EN delivery is limited after major resection. We developed DREAM (Distal Recirculation of Enteral contents Augmented Mechanically), which enables complete EN despite SBS, and enhances IA. We evaluated its efficacy in a translational large-animal model. METHODS: The study randomized 20 neonatal pigs to EN (control), SBS (75% resection), or DREAM. Growth, serum biochemistry, cytokines, intestinal morphology, barrier integrity, hepatic histology, and gene expression (quantitative polymerase chain reaction, RNA sequencing, Kyoto Encyclopedia of Genes and Genomes, and Gene Ontology enrichment) were analyzed. RESULTS: DREAM prevented hepatic and intestinal injury seen in SBS. Serum bilirubin (0.11 vs 5.14 mg/dL, P = .0008), &#x3b3;-glutamyl transferase (23.2 vs 114.6 IU/L, P < .0001), and bile acids (9.7 vs 39 &#x3bc;mol/L, P = .0026) were significantly lower. Inflammatory cytokines (interferon-&#x3b3;, P = .0296; interleukin 1&#x3b2;, P = .0349; and interleukin 6, P = .0189) and portal lipopolysaccharide (P = .0130) markedly improved. DREAM enhanced IA, increasing linear gut density (0.38 vs 0.209 g/cm, P < .0001), villus-to-crypt ratio (P = .0026), glucagon-like peptide 2 (P < .0001) and restored occludin and E-cadherin (P < .001). Hepatic bile salt export pump and cholesterol 7&#x3b1;-hydroxylase regulation were preserved (P = .0373 and P = .0034), and intestinal farnesoid X receptor, Takeda G-protein-coupled receptor 5, and epidermal growth factor signaling were reactivated (P < .01). Transcriptomic analysis confirmed improvements in metabolic, absorptive, and immune pathways. DREAM effluent demonstrated >80% macronutrient absorption within 6 hours (P < .0001). CONCLUSION: DREAM enables full EN in SBS, restoring absorption, mucosal integrity, and gut-liver homeostasis while preventing intestinal failure-associated liver disease. This approach represents a promising translational advance in SBS therapy.

Gut Atrophy↗

Time-dependent inhibitory effects of indomethacin on spinal fusion.

BACKGROUND: The use of nonsteroidal anti-inflammatory drugs following spine arthrodesis is discouraged because of the negative effects on bone-healing. We are not aware of any data regarding when nonsteroidal anti-inflammatory drugs may be safely resumed postoperatively. We hypothesized that these drugs have a time-dependent deleterious effect on fusion, with the greatest inhibition during the early phases of fusion. METHODS: Seventy New Zealand White rabbits underwent posterior intertransverse process arthrodesis at L5-L6 with use of iliac autograft. Rabbits randomly received indomethacin (10 mg/kg orally) starting at two weeks after surgery (twenty-four animals), indomethacin starting at four weeks postoperatively (twenty-three), or saline starting at two weeks postoperatively (twenty-three) (the control group). The animals were killed at six weeks, and the spines were denuded of soft tissues and palpated for L5-L6 motion. Fusion was defined as the complete absence of motion. RESULTS: Sixty-five percent (fifteen) of the twenty-three spines in the control group and 48% (eleven) of the twenty-three in the four-week group fused. However, only 21% (five) of the twenty-four spines in the two-week group fused. The difference between the two-week and control groups was significant (p < 0.002), as was the difference between the two and four-week groups (p = 0.05). The difference between the four-week and control groups was not significant (p = 0.2). CONCLUSIONS: The earlier that indomethacin was resumed postoperatively, the greater was its negative effect on fusion. Indomethacin appears to play a significant inhibitory role in the early phase of healing. Initiating indomethacin treatment in the latter phase of healing does not appear to significantly affect fusion rates, although there was a nonsignificant trend toward inhibition. To our knowledge, this is the first investigation of the time-dependent nature of indomethacin's effect on bone-healing.

Animals↗

Biomechanical evaluation of lumbosacral reconstruction techniques for spondylolisthesis: an in vitro porcine model.

STUDY DESIGN: Biomechanical evaluation of lumbosacral fixation using a porcine model. OBJECTIVES: The primary objective of the current study was to quantify and compare the changes in lumbosacral range of motion produced by four different methods of surgical stabilization, as well as comparing the relative effects of the four constructs in destructive testing. SUMMARY OF BACKGROUND DATA: The lumbosacral junction continues to be a difficult region to obtain a successful spinal arthrodesis and is one of the primary regions for construct failure. METHODS: Twenty-four fresh-frozen porcine lumbosacral spines were used in this investigation. Following intact analysis, the specimens were radically destabilized at the lumbosacral junction and randomized into four treatment groups based on reconstruction: 1) L7-S1 pedicle screws alone (n = 6); 2) L7-S1 pedicle screws and interbody cage (titanium mesh) (n = 6); 3) L7-S1 pedicle screws and iliac screws (n = 6); and 4) L7-S1 pedicle/iliac screws and interbody cage (n = 6). Nondestructive, multidirectional flexibility analyses included four loading methods and fatigue component followed by a destructive flexural load to failure. Lumbosacral peak range of motion (millimeters or degrees) and ultimate failure load (Nm) of the four reconstruction techniques were statistically compared using a one-way analysis of variance combined with Fisher's PLSD. RESULTS: 1) Axial compression: There were no differences in lumbosacral flexibility among the four treatment groups (P > 0.05). 2) Axial rotation: Iliac screw constructs, with or without cages, decreased flexibility at the lumbosacral junction compared with pedicle screws alone (P < 0.05). However, interbody cage reconstructions did not significantly reduce motion. 3) Flexion-extension: Iliac screws with interbody cages reduced segmental motion about the lumbosacral junction, which was significantly different from the remaining treatments (P < 0.05). 4) Lateral bending: The iliac screw constructs afforded significantly less lumbosacral motion compared with bothpedicle screw constructs (with or without cages). With destructive testing, pullout for L7-S1 constructs occurred at the sacrum, whereas failure for the L7-S1/iliac screw, with and without cages, occurred at the proximal adjacent level. CONCLUSION: Iliac screw constructs reduced lumbosacral flexibility levels in three of four loading methods (axial rotation, flexion-extension, and lateral bending) compared with pedicle screw reconstructions. The addition of interbody cages decreased lumbosacral motion for the iliac screw treatments under flexion-extension loading and pedicle screw constructs under axial rotation but did not protect the sacral screws in destructive testing as the iliac screws did. Based on evaluation using an porcine model, both iliac screws and interbody cages effectively reduce the multidirectional flexibility properties of the lumbosacral junction; however, iliac screws are more restrictive of motion (at the lumbosacral joint) and protective of the S1 screws.

Animals↗

Adnexal trauma.

Injuries to the adnexa have both functional and cosmetic implications. This article details the conditions, and their treatment, which ophthalmologists should be familiar with.

Eye Injuries↗

Orbital trauma.

The orbit is designed to protect and nurture the eyeball. The seven bones of the orbit enclose a pear-shaped cavity. The bones of the superior and lateral orbit are extremely strong, as opposed to the bones of the inferior and medial orbit, which are extremely weak. The strengths and weaknesses inherent to the orbital bones produce a unique pressure safety valve, designed to protect the eyeball.

Eye Injuries↗

Analysis of the biological and chemical reactivity of zeolite-based aluminosilicate fibers and particulates.

Environmental and/or occupational exposure to minerals, metals, and fibers can cause lung diseases that may develop years after exposure to the agents. The presence of toxic fibers such as asbestos in the environment plus the continuing development of new mineral or vitreous fibers requires a better understanding of the specific physical and chemical features of fibers/particles responsible for bioactivity. Toward that goal, we have tested aluminosilicate zeolites to establish biological and chemical structure-function correlations. Zeolites have known crystal structure, are subject to experimental manipulation, and can be synthesized and controlled to produce particles of selected size and shape. Naturally occurring zeolites include forms whose biological activity is reported to range from highly pathogenic (erionite) to essentially benign (mordenite). Thus, we used naturally occurring erionite and mordenite as well as an extensively studied synthetic zeolite based on faujasite (zeolite Y). Bioactivity was evaluated using lung macrophages of rat origin (cell line NR8383). Our objective was to quantitatively determine the biological response upon interaction of the test particulates/fibers with lung macrophages and to evaluate the efficacy of surface iron on the zeolites to promote the Fenton reaction. The biological assessment included measurement of the reactive oxygen species by flow cytometry and chemiluminescence techniques upon phagocytosis of the minerals. The chemical assessment included measuring the hydroxyl radicals generated from hydrogen peroxide by iron bound to the zeolite particles and fibers (Fenton reaction). Chromatography as well as absorption spectroscopy were used to quantitate the hydroxyl radicals. We found that upon exposure to the same mass of a specific type of particulate, the oxidative burst increased with decreasing particle size, but remained relatively independent of zeolite composition. On the other hand, the Fenton reaction depended on the type of zeolite, suggesting that the surface structure of the zeolite plays an important role.

Aluminum Silicates↗

The effect of cyclooxygenase-2 inhibitors on spinal fusion.

BACKGROUND: Spine surgeons discourage the use of nonsteroidal anti-inflammatory drugs following spine arthrodesis because of their inhibitory effect on bone-healing. To our knowledge, there are no data on the effects of the new cyclooxygenase-2 inhibitors on bone-healing. We undertook this study to determine the effects of these more selective nonsteroidal anti-inflammatory drugs on spinal fusion in a rabbit model. METHODS: Seventy-two New Zealand White rabbits underwent a posterolateral intertransverse process arthrodesis with use of autologous iliac crest bone. Sixty-six rabbits survived the surgical procedure and the perioperative period and had an uneventful postoperative course. These rabbits were randomly divided into three groups. One group received 10 mg/kg of celecoxib orally, the second group received 10 mg/kg of indomethacin orally, and the third group (the control group) received 1 cm (3) of saline solution orally. The rabbits received the treatment daily for eight weeks, after which they were killed and the lumbar spine was harvested. The specimens were palpated for motion, radiographed, and prepared for histological analysis. The quality of the fusion was graded at each level by assigning a histological score of 0 to 7. RESULTS: Gross inspection and palpation revealed that 64% (fourteen) of the twenty-two control spines and 45% (ten) of the twenty-two spines in the rabbits treated with celecoxib were fused. With the numbers available, this difference was not significant (p = 0.224). Of the twenty-two spines in the indomethacin-treated rabbits, 18% (four) were fused, and this percentage was significantly different from the control value (p = 0.002). On radiographic assessment, the spine segment was deemed to be fused in 82% (eighteen) of the twenty-two controls, 86% (nineteen) of the twenty-two rabbits treated with celecoxib, and 41% (nine) of the twenty-two indomethacin-treated animals. Only the difference between the indomethacin-treated and control groups was significant (p = 0.004). The histological scores averaged 5.2, 4.8, and 3.5 for the control, celecoxib, and indomethacin groups, respectively. There was a significant difference between the control and indomethacin groups (p = 0.002) but not between the celecoxib and control groups (p = 0.161). CONCLUSIONS: These results suggest that celecoxib does not significantly inhibit the rate of spinal fusion in rabbits. They also suggest that the inhibitory effects of nonsteroidal anti-inflammatory drugs on bone-healing are likely mediated by inhibition of cyclooxygenase-1 and that celecoxib is the better choice if treatment with nonsteroidal anti-inflammatory drugs is deemed necessary following spinal arthrodesis.

Administration, Oral↗

A Potential Role for PGE and IL-14 (HMW-BCGF) in B-Cell Hyperactivity of Patients with Systemic Lupus Erythematosus.

Systemic lupus erythematosus (SLE) is a disease characterized by the prolonged production of high-affinity autoantibodies resulting in direct and immune complex-mediated tissue damage. Because autoantibody responses occur over several years, memory B cells are likely to be involved. Interleukin-14 (IL-14) is a cytokine implicated in the generation and maintenance of normal memory B cells. Many of the actions of IL-14, including inhibition of antibody synthesis and upregulation of IL-14 receptors (IL-14R), are dependent on the formation of prostaglandin E (PGE) and subsequently cAMP. We observed that IL-14 induces phospholipase A(2) (PLA(2))-dependent release of arachidonic acid from phosphatidylcholine and phosphatidylinositol. Production of PGE is blocked by the PLA(2) inhibitor bromophenacyl bromide. Exogenous PGE (misoprostol) induces similar inhibition of antibody synthesis and increases in IL-14R as IL-14. Lymphocytes from patients with inactive SLE were noted to spontaneously produce PGE. Lymphocytes from normal donors produced PGE only after Sac-activation and IL-14 stimulation. Peripheral B and T lymphocytes from SLE patients, but not normal donors, spontaneously produced IL-14. Increased numbers of peripheral B lymphocytes from patients with inactive SLE expressed IL-14R, when compared to normal donors. Thus, increased production of IL-14 and PGE in SLE may result in expansion of a memory B-cell population capable of long-term autoantibody production. Further study will be necessary to confirm these preliminary findings and to examine in greater depth the regulation of PGE and IL-14 in SLE patients and normal donors.

Journal Article↗