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1.
BMJ ; 384: q420, 2024 02 22.
Article in English | MEDLINE | ID: mdl-38387965

Subject(s)
Commerce , State Medicine , Humans
2.
Glia ; 71(6): 1402-1413, 2023 06.
Article in English | MEDLINE | ID: mdl-36762504

ABSTRACT

Oligodendrocytes are highly specialized glial cells characterized by their production of multilayer myelin sheaths that wrap axons to speed up action potential propagation. It is due to their specific role in supporting axons that impairment of myelin structure and function leads to debilitating symptoms in a wide range of degenerative diseases, including Multiple Sclerosis and Leukodystrophies. It is known that myelin damage can be receptor-mediated and recently oligodendrocytes have been shown to express Ca2+ -permeable Transient Receptor Potential Ankyrin-1 (TRPA1) channels, whose activation can result in myelin damage in ischemia. Here, we show, using organotypic cortical slice cultures, that TRPA1 activation, by TRPA1 agonists JT010 and Carvacrol for varying lengths of time, induces myelin damage. Although TRPA1 activation does not appear to affect oligodendrocyte progenitor cell number or proliferation, it prevents myelin formation and after myelination causes internodal shrinking and significant myelin degradation. This does not occur when the TRPA1 antagonist, A967079, is also applied. Of note is that when TRPA1 agonists are applied for either 24 h, 3 days or 7 days, axon integrity appears to be preserved while mature myelinated oligodendrocytes remain but with significantly shortened internodes. These results provide further evidence that TRPA1 inhibition could be protective in demyelination diseases and a promising therapy to prevent demyelination and promote remyelination.


Subject(s)
Ankyrins , Demyelinating Diseases , Humans , Ankyrins/metabolism , Myelin Sheath/metabolism , Demyelinating Diseases/chemically induced , Demyelinating Diseases/drug therapy , Demyelinating Diseases/metabolism , Oligodendroglia/metabolism , Neuroglia/metabolism , TRPA1 Cation Channel/metabolism
4.
Pharmaceuticals (Basel) ; 14(9)2021 Sep 09.
Article in English | MEDLINE | ID: mdl-34577609

ABSTRACT

Oligodendrocytes produce myelin, which provides insulation to axons and speeds up neuronal transmission. In ischaemic conditions, myelin is damaged, resulting in mental and physical disabilities. Recent evidence suggests that oligodendrocyte damage during ischaemia can be mediated by Transient Receptor Potential Ankyrin-1 (TRPA1), whose activation raises intracellular Ca2+ concentrations and damages compact myelin. Here, we show that TRPA1 is constitutively active in oligodendrocytes and the optic nerve, as the specific TRPA1 antagonist, A-967079, decreases basal oligodendrocyte Ca2+ concentrations and increases the size of the compound action potential (CAP). Conversely, TRPA1 agonists reduce the size of the optic nerve CAP in an A-967079-sensitive manner. These results indicate that glial TRPA1 regulates neuronal excitability in the white matter under physiological as well as pathological conditions. Importantly, we find that inhibition of TRPA1 prevents loss of CAPs during oxygen and glucose deprivation (OGD) and improves the recovery. TRPA1 block was effective when applied before, during, or after OGD, indicating that the TRPA1-mediated damage is occurring during both ischaemia and recovery, but importantly, that therapeutic intervention is possible after the ischaemic insult. These results indicate that TRPA1 has an important role in the brain, and that its block may be effective in treating many white matter diseases.

5.
J Allergy Clin Immunol ; 147(5): 1561-1578, 2021 05.
Article in English | MEDLINE | ID: mdl-33965093

ABSTRACT

Food allergy management in child care centers and schools is a controversial topic, for which evidence-based guidance is needed. Following the Grading of Recommendations Assessment, Development, and Evaluation approach, we conducted systematic literature reviews of the anticipated health effects of selected interventions for managing food allergy in child care centers and schools; we compiled data about the costs, feasibility, acceptability, and effects on health equity of the selected interventions; and we developed the following conditional recommendations: we suggest that child care centers and schools implement allergy training and action plans; we suggest that they use epinephrine (adrenaline) to treat suspected anaphylaxis; we suggest that they stock unassigned epinephrine autoinjectors, instead of requiring students to supply their own personal autoinjectors to be stored on site for designated at-school use; and we suggest that they do not implement site-wide food prohibitions (eg, "nut-free" schools) or allergen-restricted zones (eg, "milk-free" tables), except in the special circumstances identified in this document. The recommendations are labeled "conditional" due to the low quality of available evidence. More research is needed to determine with greater certainty which interventions are likely to be the most beneficial. Policymakers might need to adapt the recommendations to fit local circumstances.


Subject(s)
Anaphylaxis/prevention & control , Anaphylaxis/therapy , Child Day Care Centers/standards , Food Hypersensitivity/prevention & control , Food Hypersensitivity/therapy , Schools/standards , Allergens , Bronchodilator Agents/administration & dosage , Child , Drug Delivery Systems , Epinephrine/administration & dosage , Humans , Injections , Practice Guidelines as Topic
6.
Bioorg Med Chem Lett ; 29(4): 560-562, 2019 02 15.
Article in English | MEDLINE | ID: mdl-30616904

ABSTRACT

Fluorination of metabolic hotspots in a molecule is a common medicinal chemistry strategy to improve in vivo half-life and exposure and, generally, this strategy offers significant benefits. Here, we report the application of this strategy to a series of poly-ADP ribose glycohydrolase (PARG) inhibitors, resulting in unexpected in vivo toxicity which was attributed to this single-atom modification.


Subject(s)
Cyclopropanes/pharmacology , Glycoside Hydrolases/toxicity , Microsomes, Liver/drug effects , Administration, Oral , Animals , Cyclopropanes/administration & dosage , Cyclopropanes/chemistry , Cyclopropanes/pharmacokinetics , Glycoside Hydrolases/administration & dosage , Glycoside Hydrolases/chemistry , Glycoside Hydrolases/pharmacokinetics , Half-Life , Humans , Mice , Microsomes, Liver/metabolism
7.
Neurosci Lett ; 690: 202-209, 2019 01 18.
Article in English | MEDLINE | ID: mdl-30366011

ABSTRACT

Transient receptor potential (TRP) proteins are a large family of tetrameric non-selective cation channels that are widely expressed in the grey and white matter of the CNS, and are increasingly considered as potential therapeutic targets in brain disorders. Here we briefly review the evidence for TRP channel expression in glial cells and their possible role in both glial cell physiology and stroke. Despite their contribution to important functions, our understanding of the roles of TRP channels in glia is still in its infancy. The evidence reviewed here indicates that further investigation is needed to determine whether TRP channel inhibition can decrease damage or increase repair in stroke and other diseases affecting the white matter.


Subject(s)
Ischemia/physiopathology , Transient Receptor Potential Channels/physiology , White Matter/physiology , Animals , Humans , Neuroglia/physiology
8.
J Med Chem ; 61(23): 10767-10792, 2018 12 13.
Article in English | MEDLINE | ID: mdl-30403352

ABSTRACT

DNA damage repair enzymes are promising targets in the development of new therapeutic agents for a wide range of cancers and potentially other diseases. The enzyme poly(ADP-ribose) glycohydrolase (PARG) plays a pivotal role in the regulation of DNA repair mechanisms; however, the lack of potent drug-like inhibitors for use in cellular and in vivo models has limited the investigation of its potential as a novel therapeutic target. Using the crystal structure of human PARG in complex with the weakly active and cytotoxic anthraquinone 8a, novel quinazolinedione sulfonamides PARG inhibitors have been identified by means of structure-based virtual screening and library design. 1-Oxetan-3-ylmethyl derivatives 33d and 35d were selected for preliminary investigations in vivo. X-ray crystal structures help rationalize the observed structure-activity relationships of these novel inhibitors.


Subject(s)
DNA Repair , Drug Design , Glycoside Hydrolase Inhibitors/chemistry , Glycoside Hydrolase Inhibitors/pharmacology , Glycoside Hydrolases/antagonists & inhibitors , Quinazolinones/chemistry , Quinazolinones/pharmacology , Administration, Oral , Animals , Biological Availability , Catalytic Domain , Glycoside Hydrolase Inhibitors/administration & dosage , Glycoside Hydrolase Inhibitors/pharmacokinetics , Glycoside Hydrolases/chemistry , Glycoside Hydrolases/metabolism , HeLa Cells , Humans , Male , Mice , Models, Molecular , Quinazolinones/administration & dosage , Quinazolinones/pharmacokinetics , Structure-Activity Relationship
9.
Proc Natl Acad Sci U S A ; 115(7): E1608-E1617, 2018 02 13.
Article in English | MEDLINE | ID: mdl-29382767

ABSTRACT

Microglia, the brain's innate immune cells, have highly motile processes which constantly survey the brain to detect infection, remove dying cells, and prune synapses during brain development. ATP released by tissue damage is known to attract microglial processes, but it is controversial whether an ambient level of ATP is needed to promote constant microglial surveillance in the normal brain. Applying the ATPase apyrase, an enzyme which hydrolyzes ATP and ADP, reduces microglial process ramification and surveillance, suggesting that ambient ATP/ADP maintains microglial surveillance. However, attempting to raise the level of ATP/ADP by blocking the endogenous ecto-ATPase (termed NTPDase1/CD39), which also hydrolyzes ATP/ADP, does not affect the cells' ramification or surveillance, nor their membrane currents, which respond to even small rises of extracellular [ATP] or [ADP] with the activation of K+ channels. This indicates a lack of detectable ambient ATP/ADP and ecto-ATPase activity, contradicting the results with apyrase. We resolve this contradiction by demonstrating that contamination of commercially available apyrase by a high K+ concentration reduces ramification and surveillance by depolarizing microglia. Exposure to the same K+ concentration (without apyrase added) reduced ramification and surveillance as with apyrase. Dialysis of apyrase to remove K+ retained its ATP-hydrolyzing activity but abolished the microglial depolarization and decrease of ramification produced by the undialyzed enzyme. Thus, applying apyrase affects microglia by an action independent of ATP, and no ambient purinergic signaling is required to maintain microglial ramification and surveillance. These results also have implications for hundreds of prior studies that employed apyrase to hydrolyze ATP/ADP.


Subject(s)
Adenosine Triphosphatases/metabolism , Adenosine Triphosphate/metabolism , Microglia/enzymology , Adenosine Diphosphate/metabolism , Animals , Apyrase/metabolism , Brain/enzymology , Brain/physiology , Female , Male , Microglia/chemistry , Microglia/physiology , Potassium/metabolism , Rats , Rats, Sprague-Dawley
10.
Elife ; 62017 06 13.
Article in English | MEDLINE | ID: mdl-28608780

ABSTRACT

Myelin, made by oligodendrocytes, is essential for rapid information transfer in the central nervous system. Oligodendrocyte precursors (OPs) receive glutamatergic synaptic input from axons but how this affects their development is unclear. Murine OPs in white matter express AMPA receptor (AMPAR) subunits GluA2, GluA3 and GluA4. We generated mice in which OPs lack both GluA2 and GluA3, or all three subunits GluA2/3/4, which respectively reduced or abolished AMPAR-mediated input to OPs. In both double- and triple-knockouts OP proliferation and number were unchanged but ~25% fewer oligodendrocytes survived in the subcortical white matter during development. In triple knockouts, this shortfall persisted into adulthood. The oligodendrocyte deficit resulted in ~20% fewer myelin sheaths but the average length, number and thickness of myelin internodes made by individual oligodendrocytes appeared normal. Thus, AMPAR-mediated signalling from active axons stimulates myelin production in developing white matter by enhancing oligodendrocyte survival, without influencing myelin synthesis per se.


Subject(s)
Myelin Sheath/metabolism , Oligodendrocyte Precursor Cells/physiology , Receptors, AMPA/metabolism , Animals , Cell Proliferation , Cell Survival , Cells, Cultured , Mice , Mice, Knockout , Receptors, AMPA/genetics
11.
Glia ; 65(2): 309-321, 2017 02.
Article in English | MEDLINE | ID: mdl-27796063

ABSTRACT

Adjusting the thickness and internodal length of the myelin sheath is a mechanism for tuning the conduction velocity of axons to match computational needs. Interactions between oligodendrocyte precursor cells (OPCs) and developing axons regulate the formation of myelin around axons. We now show, using organotypic cerebral cortex slices from mice expressing eGFP in Sox10-positive oligodendrocytes, that endogenously released GABA, acting on GABAA receptors, greatly reduces the number of oligodendrocyte lineage cells. The decrease in oligodendrocyte number correlates with a reduction in the amount of myelination but also an increase in internode length, a parameter previously thought to be set by the axon diameter or to be a property intrinsic to oligodendrocytes. Importantly, while TTX block of neuronal activity had no effect on oligodendrocyte lineage cell number when applied alone, it was able to completely abolish the effect of blocking GABAA receptors, suggesting that control of myelination by endogenous GABA may require a permissive factor to be released from axons. In contrast, block of AMPA/KA receptors had no effect on oligodendrocyte lineage cell number or myelination. These results imply that, during development, GABA can act as a local environmental cue to control myelination and thus influence the conduction velocity of action potentials within the CNS. GLIA 2017;65:309-321.


Subject(s)
Axons/physiology , Cerebral Cortex/cytology , Myelin Sheath/metabolism , Oligodendroglia/physiology , Organogenesis/physiology , gamma-Aminobutyric Acid/metabolism , Animals , Axons/drug effects , Axons/ultrastructure , Cell Differentiation/drug effects , Cell Differentiation/genetics , Cell Proliferation/drug effects , Cell Proliferation/genetics , Cerebral Cortex/physiology , Excitatory Amino Acid Antagonists/pharmacology , GABA Agents/pharmacology , Gene Expression Regulation/drug effects , Gene Expression Regulation/genetics , Mice , Mice, Transgenic , Myelin Sheath/ultrastructure , Neurons/cytology , Neurons/drug effects , Oligodendroglia/drug effects , Oligodendroglia/ultrastructure , Organ Culture Techniques , Organogenesis/drug effects , Quinoxalines/pharmacology , Receptors, GABA/genetics , Receptors, GABA/metabolism , SOXE Transcription Factors/genetics , SOXE Transcription Factors/metabolism , Synaptic Transmission/drug effects , Synaptic Transmission/genetics , Tetrodotoxin/pharmacology , gamma-Aminobutyric Acid/pharmacology
12.
J Med Chem ; 59(24): 11120-11137, 2016 12 22.
Article in English | MEDLINE | ID: mdl-28002956

ABSTRACT

A collaborative high throughput screen of 1.35 million compounds against mutant (R132H) isocitrate dehydrogenase IDH1 led to the identification of a novel series of inhibitors. Elucidation of the bound ligand crystal structure showed that the inhibitors exhibited a novel binding mode in a previously identified allosteric site of IDH1 (R132H). This information guided the optimization of the series yielding submicromolar enzyme inhibitors with promising cellular activity. Encouragingly, one compound from this series was found to induce myeloid differentiation in primary human IDH1 R132H AML cells in vitro.


Subject(s)
Drug Discovery , Enzyme Inhibitors/pharmacology , Isocitrate Dehydrogenase/antagonists & inhibitors , Leukemia, Myeloid, Acute/enzymology , Allosteric Regulation/drug effects , Cell Differentiation/drug effects , Dose-Response Relationship, Drug , Enzyme Inhibitors/chemistry , Humans , Isocitrate Dehydrogenase/isolation & purification , Isocitrate Dehydrogenase/metabolism , Leukemia, Myeloid, Acute/pathology , Models, Molecular , Molecular Structure , Structure-Activity Relationship , Tumor Cells, Cultured
13.
ACS Chem Biol ; 11(11): 3179-3190, 2016 11 18.
Article in English | MEDLINE | ID: mdl-27689388

ABSTRACT

The enzyme poly(ADP-ribose) glycohydrolase (PARG) performs a critical role in the repair of DNA single strand breaks (SSBs). However, a detailed understanding of its mechanism of action has been hampered by a lack of credible, cell-active chemical probes. Herein, we demonstrate inhibition of PARG with a small molecule, leading to poly(ADP-ribose) (PAR) chain persistence in intact cells. Moreover, we describe two advanced, and chemically distinct, cell-active tool compounds with convincing on-target pharmacology and selectivity. Using one of these tool compounds, we demonstrate pharmacology consistent with PARG inhibition. Further, while the roles of PARG and poly(ADP-ribose) polymerase (PARP) are closely intertwined, we demonstrate that the pharmacology of a PARG inhibitor differs from that observed with the more thoroughly studied PARP inhibitor olaparib. We believe that these tools will facilitate a wider understanding of this important component of DNA repair and may enable the development of novel therapeutic agents exploiting the critical dependence of tumors on the DNA damage response (DDR).


Subject(s)
DNA Repair , Glycoside Hydrolases/chemistry , Molecular Probes/chemistry , Phthalazines/pharmacology , Piperazines/pharmacology , Enzyme Inhibitors/pharmacology , Glycoside Hydrolases/antagonists & inhibitors , HeLa Cells , Humans , Surface Plasmon Resonance
14.
F1000Res ; 5: 736, 2016.
Article in English | MEDLINE | ID: mdl-27610220

ABSTRACT

After a DNA damage signal multiple polymers of ADP ribose attached to poly(ADP) ribose (PAR) polymerases (PARPs) are broken down by the enzyme poly(ADP) ribose glycohydrolase (PARG). Inhibition of PARG leads to a failure of DNA repair and small molecule inhibition of PARG has been a goal for many years. To determine whether biochemical inhibitors of PARG are active in cells we have designed an immunofluorescence assay to detect nuclear PAR after DNA damage. This 384-well assay is suitable for medium throughput high-content screening and can detect cell-permeable inhibitors of PARG from nM to µM potency. In addition, the assay has been shown to work in murine cells and in a variety of human cancer cells. Furthermore, the assay is suitable for detecting the DNA damage response induced by treatment with temozolomide and methylmethane sulfonate (MMS). Lastly, the assay has been shown to be robust over a period of several years.

15.
Cyberpsychol Behav Soc Netw ; 19(9): 532-7, 2016 Sep.
Article in English | MEDLINE | ID: mdl-27635441

ABSTRACT

Where humans have been found to detect lies or deception only at the rate of chance in offline face-to-face communication (F2F), computer-mediated communication (CMC) online can elicit higher rates of trust and sharing of personal information than F2F. How do levels of trust and empathetic personality traits like perspective taking (PT) relate to deception detection in real-time CMC compared to F2F? A between groups correlational design (N = 40) demonstrated that, through a paired deceptive conversation task with confederates, levels of participant trust could predict accurate detection online but not offline. Second, participant PT abilities could not predict accurate detection in either conversation medium. Finally, this study found that conversation medium also had no effect on deception detection. This study finds support for the effects of the Truth Bias and online disinhibition in deception, and further implications in law enforcement are discussed.


Subject(s)
Communication , Deception , Empathy , Text Messaging , Trust/psychology , Adolescent , Adult , Female , Humans , Male , Middle Aged , Young Adult
16.
Nature ; 529(7587): 523-7, 2016 Jan 28.
Article in English | MEDLINE | ID: mdl-26760212

ABSTRACT

The myelin sheaths wrapped around axons by oligodendrocytes are crucial for brain function. In ischaemia myelin is damaged in a Ca(2+)-dependent manner, abolishing action potential propagation. This has been attributed to glutamate release activating Ca(2+)-permeable N-methyl-D-aspartate (NMDA) receptors. Surprisingly, we now show that NMDA does not raise the intracellular Ca(2+) concentration ([Ca(2+)]i) in mature oligodendrocytes and that, although ischaemia evokes a glutamate-triggered membrane current, this is generated by a rise of extracellular [K(+)] and decrease of membrane K(+) conductance. Nevertheless, ischaemia raises oligodendrocyte [Ca(2+)]i, [Mg(2+)]i and [H(+)]i, and buffering intracellular pH reduces the [Ca(2+)]i and [Mg(2+)]i increases, showing that these are evoked by the rise of [H(+)]i. The H(+)-gated [Ca(2+)]i elevation is mediated by channels with characteristics of TRPA1, being inhibited by ruthenium red, isopentenyl pyrophosphate, HC-030031, A967079 or TRPA1 knockout. TRPA1 block reduces myelin damage in ischaemia. These data suggest that TRPA1-containing ion channels could be a therapeutic target in white matter ischaemia.


Subject(s)
Brain Ischemia/metabolism , Brain Ischemia/pathology , Calcium/metabolism , Myelin Sheath/metabolism , Myelin Sheath/pathology , Protons , Transient Receptor Potential Channels/metabolism , Animals , Calcium Signaling/drug effects , Electric Conductivity , Female , Hydrogen-Ion Concentration , Magnesium/metabolism , Male , Mice , Mice, Transgenic , Multiple Sclerosis/metabolism , Multiple Sclerosis/pathology , Myelin Sheath/drug effects , N-Methylaspartate/metabolism , N-Methylaspartate/pharmacology , Oligodendroglia/drug effects , Oligodendroglia/metabolism , Oligodendroglia/pathology , Potassium/metabolism , Rats , Rats, Sprague-Dawley , Receptors, N-Methyl-D-Aspartate/metabolism , Stroke/metabolism , Stroke/pathology , Transient Receptor Potential Channels/antagonists & inhibitors , Transient Receptor Potential Channels/deficiency , Transient Receptor Potential Channels/genetics , White Matter/metabolism , White Matter/pathology
17.
Stud Health Technol Inform ; 219: 112-6, 2015.
Article in English | MEDLINE | ID: mdl-26799890

ABSTRACT

Research has indicated that online daters may pick up on language cues connected to personality traits in online dating profile texts, and act upon those cues. This research seeks to investigate the level of accuracy of detection of personality in dating profile texts, and the extent to which perceived or actual similarity of personality has an effect on attractiveness of the author. An online survey was conducted collecting the Ten Item Personality Inventory (TIPI) for each participant and text author, a peer-report TIPI score by participants for each text author, and an attractiveness rating on a Likert scale for each author. Participants correctly identified Extraversion, though the effect size was small. Contrary to the hypotheses, participants preferred texts when written by an author with a personality they perceived as dissimilar to their own, specifically in Openness and Conscientiousness, and no relationship was found between actual similarity of personality and attractiveness. Online daters may choose partners with complementary or desirable traits rather than similar traits, or other factors in attraction may be more salient in the initial stages of determining attraction.


Subject(s)
Character , Courtship/psychology , Cues , Friends/psychology , Internet , Interpersonal Relations , Semantics , Social Media , User-Computer Interface , Adult , Extraversion, Psychological , Female , Humans , Male , Personality Inventory , Self Concept , Social Identification , Young Adult
18.
J Clin Oncol ; 33(5): 442-7, 2015 Feb 10.
Article in English | MEDLINE | ID: mdl-25547504

ABSTRACT

PURPOSE: The CLEOPATRA (Clinical Evaluation of Trastuzumab and Pertuzumab) study demonstrated superior progression-free survival (PFS) and overall survival when pertuzumab was added to trastuzumab and docetaxel. Paclitaxel given once per week is effective and less toxic than docetaxel. We performed a phase II study to evaluate the efficacy and safety of pertuzumab and trastuzumab with paclitaxel given once per week. PATIENTS AND METHODS: Patients with metastatic human epidermal growth factor receptor 2-positive breast cancer with zero to one prior therapy were enrolled. Treatment consisted of paclitaxel 80 mg/m(2) once per week plus trastuzumab (8 mg/kg loading dose → 6 mg/kg) once every 3 weeks plus pertuzumab (840 mg loading dose → 420 mg) once every 3 weeks, all given intravenously. The primary end point was 6-month PFS assessed by Kaplan-Meier methods. RESULTS: From January 2011 to December 2013, we enrolled 69 patients: 51 (74%) and 18 (26%) treated in first- and second-line metastatic settings, respectively. At a median follow-up of 21 months (range, 3 to 38 months), 6-month PFS was 86% (95% CI, 75% to 92%). The median PFS was 19.5 months (95% CI, 14 to 26 months) overall. PFS was 24.2 months (95% CI, 14 months to not reached [NR]) and 16.4 months (95% CI, 8.5 months to NR) for those without and with prior treatment, respectively. At 1 year, Kaplan-Meier PFS was 70% (95% CI, 56% to 79%) overall, 71% (95% CI, 55% to 82%) for those without prior therapy, and 66% (95% CI, 40% to 83%) for those with prior therapy. Treatment was well-tolerated; there was no febrile neutropenia or symptomatic left ventricular systolic dysfunction. CONCLUSION: Paclitaxel given once per week with trastuzumab and pertuzumab is highly active and well tolerated and seems to be an effective alternative to docetaxel-based combination therapy.


Subject(s)
Antineoplastic Combined Chemotherapy Protocols/therapeutic use , Biomarkers, Tumor/analysis , Breast Neoplasms/chemistry , Breast Neoplasms/drug therapy , Receptor, ErbB-2/analysis , Adult , Aged , Aged, 80 and over , Antibodies, Monoclonal, Humanized/administration & dosage , Disease-Free Survival , Drug Administration Schedule , Female , Follow-Up Studies , Humans , Immunohistochemistry , In Situ Hybridization, Fluorescence , Infusions, Intravenous , Kaplan-Meier Estimate , Middle Aged , Paclitaxel/administration & dosage , Trastuzumab , Treatment Outcome
19.
Nature ; 508(7494): 55-60, 2014 Apr 03.
Article in English | MEDLINE | ID: mdl-24670647

ABSTRACT

Increases in brain blood flow, evoked by neuronal activity, power neural computation and form the basis of BOLD (blood-oxygen-level-dependent) functional imaging. Whether blood flow is controlled solely by arteriole smooth muscle, or also by capillary pericytes, is controversial. We demonstrate that neuronal activity and the neurotransmitter glutamate evoke the release of messengers that dilate capillaries by actively relaxing pericytes. Dilation is mediated by prostaglandin E2, but requires nitric oxide release to suppress vasoconstricting 20-HETE synthesis. In vivo, when sensory input increases blood flow, capillaries dilate before arterioles and are estimated to produce 84% of the blood flow increase. In pathology, ischaemia evokes capillary constriction by pericytes. We show that this is followed by pericyte death in rigor, which may irreversibly constrict capillaries and damage the blood-brain barrier. Thus, pericytes are major regulators of cerebral blood flow and initiators of functional imaging signals. Prevention of pericyte constriction and death may reduce the long-lasting blood flow decrease that damages neurons after stroke.


Subject(s)
Capillaries/cytology , Cerebrovascular Circulation/physiology , Pericytes/physiology , Animals , Arterioles/physiology , Blood-Brain Barrier/pathology , Blood-Brain Barrier/physiopathology , Brain Ischemia/pathology , Capillaries/drug effects , Cell Death , Cerebellum/blood supply , Cerebral Cortex/blood supply , Cerebral Cortex/cytology , Cerebrovascular Circulation/drug effects , Dinoprostone/metabolism , Excitatory Amino Acid Antagonists/pharmacology , Female , Functional Neuroimaging , Glutamic Acid/pharmacology , Hydroxyeicosatetraenoic Acids/biosynthesis , In Vitro Techniques , Male , Mice , Mice, Inbred C57BL , Nitric Oxide/metabolism , Pericytes/cytology , Pericytes/drug effects , Pericytes/pathology , Rats , Rats, Sprague-Dawley , Rats, Wistar , Receptors, Glutamate/metabolism , Signal Transduction/drug effects , Stroke/pathology , Vasoconstriction , Vasodilation/drug effects
20.
Nat Protoc ; 9(2): 323-36, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24434801

ABSTRACT

The cerebral circulation is highly specialized, both structurally and functionally, and it provides a fine-tuned supply of oxygen and nutrients to active regions of the brain. Our understanding of blood flow regulation by cerebral arterioles has evolved rapidly. Recent work has opened new avenues in microvascular research; for example, it has been demonstrated that contractile pericytes found on capillary walls induce capillary diameter changes in response to neurotransmitters, suggesting that pericytes could have a role in neurovascular coupling. This concept is at odds with traditional models of brain blood flow regulation, which assume that only arterioles control cerebral blood flow. The investigation of mechanisms underlying neurovascular coupling at the capillary level requires a range of approaches, which involve unique technical challenges. Here we provide detailed protocols for the successful physiological and immunohistochemical study of pericytes and capillaries in brain slices and isolated retinae, allowing investigators to probe the role of capillaries in neurovascular coupling. This protocol can be completed within 6-8 h; however, immunohistochemical experiments may take 3-6 d.


Subject(s)
Blood-Retinal Barrier/ultrastructure , Brain/blood supply , Immunohistochemistry/methods , Microvessels/ultrastructure , Pericytes/ultrastructure , Animals , Brain/cytology , Mice , Microscopy, Fluorescence/methods , Microscopy, Interference/methods , Models, Biological , Patch-Clamp Techniques
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