FBMD Basis for investigation, strategy, & intervention
The endocannabinoid system modulates essential cell signaling targets for energy homeostasis. PhytoCannas supplement, bind, and activate transmembrane G-protein-coupled receptors in the central nervous system and periphery. Modulation of CB1 and CB2 receptor activity reveals potential therapeutic targets to reduce health and mental health issues and invigorate a spectrum of coping mechanisms. Rational oleoresin selection and dosing result in valuable clinically relevant intentional evidence-based outcomes and healthy wellbeing.
Cannabinoids — A class of fatty acids including 419 natural PhytoCannas from Cannabis sativa, and 6 EndoCannas produced on-demand by mammalians, binding with, interacting, and modulating through the ECS Receptor system.
EndoCannabinoid System, ECS — A widespread transmembrane neuro- and immune-modulating animal supersystem enabling and regulating crucial health and mental health response. Class1 Receptors in the central nervous system (CNS) manage the development, synaptic plasticity, and response to endogenous and environmental insults—CB1. Class 2 immune system receptors with transient receptor potential (TRP) channels and peroxisome proliferation-activated receptors (PPARs) handle regulating energy metabolism—CB2.
ECS Receptors -- Effects of Phyto- and Endo-cannabinoids are mediated by CB1 and CB2 configured cannabinoid receptors, with other PPAR and TRP receptor channels. CB1 receptors are abundant in the central nervous system (CNS), particularly in the cortex, basal ganglia, hippocampus, and cerebellum. CB2 receptors are expressed at lower levels in the CNS, primarily present in microglia and vascular elements. Highly inducible, CB2 increases up to 100 fold following tissue injury or during inflammation.
EndoCannas — Six (6) endogenous cannabinoids are lipids that engage cannabinoid receptors, affecting behavior in a fashion recapitulating the effects produced by the psychoactive components of cannabis. Upon demand—by activation of G-protein-coupled receptors or by depolarization--EndoCannas are liberated in one or two rapid enzymatic steps and released into the extracellular space.
PhytoCannas -- 419 structurally diverse natural molecular constituents found on the surface of Cannabaceae. Derivatives from a common C18-25 precursor, cannabigerolic acid, CBGA. The PhytoCanna precursors are formed through the reaction between geranyl pyrophosphate with olivetolic and divarinic acids. PhytoCannas simulate the final EndoCanna geometries and modulate the EndoCannabinoid System Receptors.
MX:Profile OleoResins -- Nutraceutically curated PhytoCanna OleoResins demonstrate consistency and clinically relevant potential because they supplement and support the ECS. MX:Profiles are capable of intentional medicinal outcomes across mammalian populations and may benefit from health and mental health outcomes the pharmacodynamic effect of the profile (pD) at specifically delivered pharmacokinetic (pK) concentrations deliver.
MX:Scale Project — A classification structure for a pharmacologic model linking health sciences expectations, chemical composition, and resultant binding affinities, with rational wellness outcomes within clinical populations. The MX:Scale project clarifies, classifies, and communicates the intended effects of cannabis as a nutraceutical capable of evidence-based outcomes. It bridges the final capability of a cannabis OleoResin with expectation and demand for the patient. The project incorporates the actual pK/pD metrics while evaluating pharmacoConsistancy (pC, p(V)) robustness across populations and comorbidities. The MX:Scale tracks the pharmacological trends across dosing regimens that influence receptor binding affinities and pharmacodynamics. The project reports MX:Supply of Effect potentials and MX:Demand for Effects, creating a real-time MX:Forecast of availability and unmet need.
FurBabyMD:OCO — Observational Clinic and Outcome programs explore putative solutions and their effective outcomes based on the MX:Scale Project data, dosing impact, and root causation models for patients exploring cannabis as a rational therapeutic agent. the FBMD:OCO leverages epidemiologic and health services records to identify evidence-based strategies and valuable outcomes. Comparative assessment, progress, and evaluation are performed by independent health inventories, professionals, screens, and assay.
Weed Propaganda -- Hype and spurious claims for weed that promote fictitious miracles and cures. Big Weed propaganda doesn’t result in consistent, utilitarian, or useful effects or outcomes and includes terms like %THC, %CBD, THC:CBD ratio, Color, Strain name, Terpene names, Hybrid, %Sativa, %Indica, Entourage, etc. Although popular propaganda, they do not identify the function, efficacious details, nor quality, yet always associated with increased pricing, because they intentionally and effectively confuse and trick buyers.
Cannabis isn't a poison, and its efficacious application is not based on turning the dose up, because it's not poisonous. FurBabyMD programs start with an education based on how cannabis-based medicinal molecules (Structure-Activity Relationships) interact with the receptors and create a new expectation for cannabis as an intentional therapy.
Cannabis medicinals have 59 Medicine-type vibrations that are delivered to special receptors and 3 receptor depths across 2major + 1minor systems directly modulating the key health systems within mammals. The advantage cannabis OleoResins have over poisonous pharma is mind-boggling, and yet the beneficial pK/pD and pV, that should create next-generation health outcomes are mired by the hype and ignorant applications pushing intoxication as if cannabis was poisonous, and yet it’s not. FBMD:OCO treats cannabis as the super advantage it is, deploys the nuance it has, and brings cannabis forward as an intentional therapeutic capable of evidence-based results.
Whether it’s separation or dependency, or safety within their pack, our FurBabies are especially stressed because of the pandemic. Ongoing and endless stress and micro-pack stressors have only been the norm in the last minutes of their eons-long evolutionary timeline. Our best friends live in small families and their genetics haven’t had the requisite millennia to adapt. Taxing their coping mechanisms exhausts the EndoCannas to support their mental health. Without the correct PhytoCannas basis, our fur babies suffer. FurBabyMD:OCO programs supplement and support missing resources, personalizing their clinically relevant PhytoCanna OleoResins capable of evidence-based results.
MX:Strategy example: CB1 Receptor, Resource rebalencing
Unsupported neural coping mechanisms may benefit from supplemental PhytoCanna—FBMD OleoResin profiles with a primary affinity for the CB1 neural receptors. They don’t adjust to a situation appropriately, often responding with repetitive or fixed movements or actions, because their EndoCannas are depleted. Abnormal repetitive behaviors include both compulsive/impulsive and stereotypic behaviors. Rebalancing may restore normal behaviors.
MX:Strategy example: CB1 & CB2 receptors, prefrontal cortex/ventral tegmental area
Stress from unwanted fear, stimuli, and predatory activity can bring the correct responses to inappropriate times. Traumatic response circuits to genetic encoding may overtax the ECS system because excessive neural activity across the neural clefts deplete EndoCanna resources and mismanage the emotional control and response.
Anticipating danger and signs of tension (vigilance, increased movement, and tense muscles), the focus of anxiety can be internal and external. The correct and natural response releases EndoCannas on demand. However, prolonged exposure depletes the key ECS resources, and without them, the ECS is starved and issues are magnified. FBMD OleoResins replace, supplement, and support the ECS exhausted resources.
Stress exhausts the EndoCannas supply when normal frustration or conflict progress to inappropriate situations and intensities. Stress and anxiety intensify these disorders because the brain releases neurotransmitters—Compulsive behaviors can be genetic. FBMD:OCO programs work to match and dose to achieve clinically relevant outcomes.
Conflict resolution with seemingly unrelated physically or behavioral activity may arise from conflict, frustration, or vacuum activity. The conflict between sex and/or aggression and fear can draw upon the EndoCannas supply and result in compulsive grooming, feeding, or sleeping. FBMB:OCO programs identify and fine-tune MX:Profile OleoResins to restore coping abilities.
Constant and recurrent apprehension may reveal abnormal and threatening environments. The danger compounds with irrational rehearsal, and patterning behavior because the stimuli are ongoing and persist and deplete the EndoCannas responsible for processing and coping. The cycle defeats successful life quality outcomes. FBMD:OCO programs establish, deploy, and deliver the MX:Profile OleoResins to support healthy mental processes.
Unable to complete a physical or psychological behavior because of obstacle frustration draws on the EndoCannas supply diminishing the resources needed for processing and coping with anxiety, control, and stress. Without supplemental key MX:Profile OleoResins, redirected behavior may emerge as attacks, displacement behaviors, and signs of anxiety. Rehearsal without control further embeds negative behaviors and spurs issues that overwhelm quality of life.
Supporting mental health resources disrupts negative rehearsal cycles and opens positive pathways, neurochemical rewards, & successful goal achievement without intoxication. Reward cycles replace negative rehearsal and set our favorite furries for success and their well-being.
Aids memory & learning & contributes to feelings of well-being & happiness.
Associated with the brain's pleasure, reward, motivation, & memory centers
Helps with cognitive function, alertness, memory & learning
Assists in the fight-or-flight response & helps moderate mood by alleviating depression & anxiety
Acts as the main inhibitory neurotransmitter & helps increase feelings of calm & relaxation, reduce stress & pain, & improve sleep & concentration
FBMD:OCO
high-level test
YES or NO
FBMD:OCO
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EFFECTIVENESS
FBMD:OCO
consistency
EXPECTATION
FBMD:OCO
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WELL-BEING
FurBabyMD's Observational Clinical & Outcome Program
EndoCannas facilitate subsystems within the immune system and when taxed by genomic inefficiencies, free radical bombardment, degradations, and anomalies. CB receptors within the blood and marrow systems density, production, response, and recovery targets of interest for MX:Profile OleoResins with significant therapeutic potentials.
The EndoCannabinoid Receptors affecting metabolism, genetic, and pharmacological modulation illuminate novel matrices associated with bone disease, cell function, and treatment of osteoclastic bone resorption—Including osteoporosis, rheumatoid arthritis, and bone metastasis. It is important to evaluate the role of PhytoCannas and their impressive collaboration with EndoCannas within the ECS therapeutic targets that prevent and rebalance disorders affecting bone loss.
Identification of G-protein-coupled cannabinoid receptors in the brain and nervous system harbingered an explosion of PhytoCanna potentials within the CB1 ECS. However, Big Pharma and Big Weed immediately pushed spurious CBD and THC propaganda, presuming 2 of the 419 PhytoCannas, would replace a spectrum of tools and collaboration with the 6 EndoCannas capable of clinically relevant outcomes. Working from the inconsistent and popular hearse, FBMD:OCO programs uncovered a complete and tuned PhytoCanna profile that could sustain consistent evidence-based outcomes. The Big Pharma gimmicks reestablished singularized medicine models do not work for cannabis as a therapeutic. The potential of cannabis as an intentional nutraceutical does not align when cannabis is managed in a poison model, because Cannabis is not poisonous.
PhytoCannas has been used to treat GI disorders—Abdominal pain and diarrhea. The ECS protects the GI tract and presents therapeutic targets against inflammatory bowel disease/Crohn’s, irritable bowel syndrome, secretion, motility-related disorders, liver and pancreas issues, nausea and vomiting, anorexia, weight loss, chronic abdominal pain, and other GI symptoms. Caution should be observed with Big Weed’s promotion of ridiculous CBD dosing, as it may cause cannabinoid hyperemesis syndrome.
PhytoCannas’ influence on infection, by bacteria, viruses, parasites, and to a lesser degree, fungi, has been documented thoroughly. Evidence identifies the ECS control and elimination of infectious agents. Investigation in infections and the ECS detail the microbicidal effects of PhytoCanna compounds, and the association between MX:Profile OleoResins and the disrupting targets with rare pathologies and specific diseases.
PhytoCannas reduce intraocular pressure with glaucoma medications. This is true whether the cannabinoids are administered orally, intravenously, or by inhalation but may not when they are applied directly to the eye. Specific OleoResin profiles modulate CB1 signaling, reduce pain, and recontrol inflammation in corneal hyperalgesia. CB1 allosteric ligands offer novel strategies for treating ocular disease, including corneal pain and inflammation.
PhytoCannas impact on cardiovascular function in physiology and pathology presents signaling pathways governing the regulation of cardiovascular function by EndoCanna collaborating with specific MX:Profile OleoResin PhytoCannas. When pathological conditions over-activate the ECS, it can play both a protective compensatory role—forms of hypertension, atherosclerosis, and other inflammatory conditions; and a pathophysiological role—disease states associated with excessive hypotension.
The HPT axis maintains the metabolic rate, the heart, digestive functions, muscle control, brain development, and bone health. It also oversees the body’s functions related to reproductive health, and it regulates our hormones to maintain optimal function and health of all tissues throughout the body (brain, connective tissue, cardiovascular, reproductive organs, immune system, etc.). MX:Profile OleoResins can support, supplement, and manage the rebalancing of systems behind unhealthy issues because of energetic hormonal imbalances.
CB2 receptors are predominately expressed in the immune system, and selective modulation of CB2 has therapeutic potential in inflammatory, fibrotic, and neurodegenerative diseases with distinctly different binding pose relative to PhytoCanna matrices with CB1 affinities. Structural analysis using mutagenesis studies and molecular docking reveal the molecular basis for their function and selectivity. MX:Profile OleoResin antagonists and agonists provide important insight into the activation mechanism of CB2 facilitating rational therapeutic strategy toward precise modulation of the ECS.
CB1 and CB2 play key roles in renal function and dysfunction while antagonism of CB1 and agonism of CB2 in diabetic nephropathy and obesity-associated kidney disease can reduce albuminuria, by acting on both the glomeruli and tubules. There are additional roles for CB1 in renal diseases associated with fibrosis, upregulated in multiple models of nephropathies. Therapeutic MX:Profiled OleoResins modulating CB1 and CB2 activity in renal disease are becoming clinically relevant.
Macrophages are pivotal effector cells in immune responses and tissue remodeling because they produce a spectrum of mediators—angiogenic and lymphangiogenic factors. CB1 and CB2 activation identify a new rational strategy for modulating angiogenesis. ECS Receptor activation selectively inhibits the release of angiogenic and lymphangiogenic factors from lung macrophage. MX:Profile OleoResins activate cannabinoid receptors across tissue-resident macrophage modulate macrophage-assisted vascular remodeling in cancer and chronic inflammation.
CB1 receptors are deeply involved in all aspects of the control of energy balance in mammals facilitating energy intake and enhancing energy storage into the adipose tissue reducing energy expenditure by influencing both lipid and glucose metabolism. Normally controlled by hormones and neuropeptides, both central and peripheral aspects of ECS regulation of energy balance can become dysregulated and contribute to obesity, dyslipidemia, and type 2 diabetes. Candidate MX:Profile OleoResin CB1 antagonists may enhance treatment of these metabolic disorders while other profiles may retard β-cell damage in type 1 diabetes.
CB1 and CB2 receptors are characterized throughout the female reproductive tract. PhytoCannas may affect many aspects of female reproductive health, including fertility, pregnancy outcomes with neonatal implications, and menopause. EndoCannas may affect sex hormones essential to fertility and the timing of ovulation. MX:Profile OleoResins may be capable of evidence-based reduction of pain, inflammation, and spasm. The ECS also has drug targets for male reproductive disorders, and its components might be useful as biomarkers of male infertility.
Anti-inflammatory properties of PhytoCannas explain skin benefits. Able to activate/antagonize/inhibit a remarkably wide variety of cellular targets, including several metabotropic CB1 and CB2, ionotropic transient receptor potential (TRP) ion channels, and nuclear peroxisome proliferator-activated receptors (PPAR), various enzymes, and transporters. MX:Profile OleoResin PhytoCanna ligands can be characterized by a unique, molecular fingerprint, and exert opposing biological actions on the same target. ECS signaling can influence skin biology, found on different cell types of the skin, including, but not limited to, epidermal keratinocytes, melanocytes, mast cells, fibroblasts, sebocytes, sweat gland cells, as well as certain cell populations of hair follicles.
Clinically relevant CB2 and CB1 strategies are used within palliative care models to alleviate pain, relieve nausea and stimulate appetite. Cell culture and animal studies demonstrate antitumor effects associated with PhytoCannas in various cancer types and hormone-influenced oncological disease models. MX:Profile OleoResins may effectively modulate tumor growth. The antitumor effects largely depend on the cancer type and resin dose/concentrations. The PhytoCanna FBMD:OCO program support strategies that may regulate essential cellular processes—Progression through the cell cycle, cell proliferation, and cell death. Profiles demonstrate interactions between PhytoCannas and the immune system. Rational PharmaDynamic tactics are crucial to improve the resultant therapeutic impact in cancer programs within the FBMD:OCO.
CB1 and CB2 receptors recognize multiple classes of agonist and antagonist compounds and produce an array of distinct downstream effects. Natural polymorphisms and alternative splice variants may also contribute to their pharmacological diversity. MX:Profile OleoResins target select receptor conformations and their corresponding pharmacological responses. The FBMD:OCO applies MX:Scale Project pharma-type characterization, distribution, phylogeny, and signaling pathways. The effects of extended agonist exposure affect signaling and expression patterns of the receptors craft the rational profile selection, application, and strategy for intentional applications for cannabinoids as an intentional evidence-based therapeutic.