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Diminishing the risk of nonrelapse mortality in hematopoietic stem cell transplantation: Prediction of exposure to the cyclophosphamide metabolite carboxyethylphosphoramide mustard.

OBJECTIVES: Our objectives were (1) to develop a population pharmacokinetic model for cyclophosphamide, 4-hydroxycyclophosphamide, and carboxyethylphosphoramide mustard (a reporter for nonrelapse mortality) in hematopoietic stem cell transplantation patients and (2) to validate a Bayesian approach to dosing. METHODS: In this study 147 patients received intravenous infusions of 60 mg. kg -1. d -1 cyclophosphamide for 2 days, followed by 12 to 14.4 Gy total body irradiation. A population model was developed to fit concentration-time data of cyclophosphamide and metabolites. Bayesian prediction of the area under the curve (AUC) was validated by dividing the data set into an index set (98 patients) and validation set (49 patients). Parameters from the index data set were used as priors. RESULTS: Cyclophosphamide elimination was best described by noninducible and inducible routes producing 4-hydroxycyclophosphamide. Induction was described by a zero-order maximum fold of induction-type increase in enzyme level. The prediction of the AUC of carboxyethylphosphoramide mustard was clinically accurate and precise (mean prediction error = -3.5% and root mean squared prediction error = 12.2%) with data limited to 5 to 6 points obtained in the first 16 hours. However, the AUC of 4-hydroxycyclophosphamide was overestimated (mean prediction error = 16.9%-23.6%). Several alternative models did not improve the result. CONCLUSION: The integrated mechanism-based model describes the pharmacokinetics of cyclophosphamide and carboxyethylphosphoramide mustard. Accurate modeling of 4-hydroxycyclophosphamide is limited by its chemical instability. Exposure to carboxyethylphosphoramide mustard could be accurately and precisely predicted with minimal data obtained over a 16-hour period after the first dose, offering the potential of pharmacokinetically guided dosing to reduce the nonrelapse mortality rate.

Adolescent↗

High-dose cyclophosphamide as salvage therapy for severe aplastic anemia.

OBJECTIVE: The treatment options for patients with aplastic anemia who do not respond to conventional immunosuppression are limited. The aim of this study was to evaluate high-dose cyclophosphamide in patients with refractory severe aplastic anemia (SAA). MATERIALS AND METHODS: We treated 17 SAA patients with high-dose cyclophosphamide (50 mg/kg/day for 4 consecutive days) who previously did not respond to one or more courses of immunosuppressive therapy. Median age was 31 years (range 6-58); median disease duration was 14 months (range 6-58), and 8 patients met criteria for very severe aplastic anemia (absolute neutrophil count <0.2 x 10(9)/L) at the time of treatment. RESULTS: At median follow-up of 29 months, 10 patients (59%) are alive. Nine patients (53%) achieved a drug-free remission after high-dose cyclophosphamide; 4 patients achieved a complete remission and 5 patients currently meet criteria for a partial remission but continue to improve. One nonresponder to high-dose cyclophosphamide developed paroxysmal nocturnal hemoglobinuria; another nonresponder developed a myelodysplastic syndrome. In responding patients, median time to 500 neutrophils was 54 days (range 35-119), median time to the last platelet transfusion was 99 days (range 51-751), and median time to the last red cell transfusion was 125 days (range 63-796). CONCLUSION: High-dose cyclophosphamide shows promise for salvaging patients with refractory SAA.

Adolescent↗

[The flavonoids effect against vinblastine, cyclophosphamide and paracetamol toxicity by inhibition of lipid-peroxydation and increasing liver glutathione concentration].

The paracetamol and cyclophosphamid are metabolized in the liver by the cytochrome P450. The formed reactive intermediates are responsible of a hepatocyte depletion of the glutathion and a lipoperoxydation. the vinblastine is also a chemotherapeutic agent hepatotoxic and hematotoxic. Otherwise, flavonoïds are polyphenols substances of plant origin having some biological and anti-oxydative properties. However no information is available on their effects on glutathion and glutathion-s-transferases. In our research, we valued the effect of oral administration of flavonoids (diosmine and quercetine) under shape of propolis extract to 60 mg/kg daily during 14 days, on hematological and hepatic toxicity of a single dose of cyclophosphamide 80 mg/kg by intravenous way, vinblastine 2 mg/kg by intravenous way and the hepatic toxicity of the paracetamol managed by oral way to 200 mg/kg corresponding to 2/3 the DL50 at the rat female albinos wistar. We did a blood numeration, an assessment of serum activities of transaminases and alkali phosphatases as well as quantification of the glutathion and the malondialdehyde (MDA) in liver homogenats of rats treated. Analyses are done at regular intervals; 1, 3, 7 and 14 days after the administration of drugs. In the group of rats treated by the cyclophosphamid paracetamol alone we observed since the 1st day, an increase of lipid peroxide (MDA) of 120% and a downfall of hepatic glutathion including the group receiving the vinblastine (until 210% of reduction). In the same way a severe leucopenia and a thrombopenia (70% of reduction) are observed between the 3rd and the 14th day at rats treated by the chemotherapeutic agents alone (cyclophosphamide and vinblastine). The combination of flavonoids with drugs have clearly reduced the effect of drugs toxicity. Indeed, the aplasic observed with the vinblastine, as well as the leucopenia and thrombopenia of the cyclophosphamide are corrected entirely. In the same way, we noted a restoration of rates of peroxide and glutathion. Flavonoïds seem to act by activation of the turn over of the glutathion and enzymes stimulating particularly glutathion-s-transferases permitting the captation of the reactive metabolites of the studied drugs.

Acetaminophen↗

Effects of a 5-HT1A receptor agonist on acute and delayed cyclophosphamide-induced vomiting.

LY228729 [(-)-4(dipropylamino)-1,3,4,5-tetrahydrobenz-[c,d]indole-6-carboxa mide]], an agonist at the 5-HT1A subtype of 5-HT receptor, was studied as an antiemetic in pigeons dosed with a highly emetic oncolytic agent, cyclophosphamide. An intramuscular injection of 0.32 mg/kg of LY228729 administered 15 min prior to the intravenous injection of 200 mg/kg of cyclophosphamide totally prevented the acute emetic response induced by cyclophosphamide. When used as a rescue therapy in a separate group of pigeons, LY228729 (0.32 mg/kg, i.m.) prevented further emetic episodes when it was administered after vomiting had already been induced by cyclophosphamide. Injections of LY228729 given at intervals over the next 2 d also attenuated the delayed emetic response induced by cyclophosphamide. LY228729 appears to be a broad spectrum antiemetic agent that is effective against the anticipatory, the acute and the delayed stages of emesis induced by oncolytic agents.

Animals↗

Intermittent intravenous cyclophosphamide therapy for lupus nephritis.

We carried out a preliminary study to determine whether intermittent intravenous cyclophosphamide therapy could be safely and effectively used in the treatment of childhood lupus nephritis. Sixteen children (4 to 18 years of age) with lupus nephritis were treated with cyclophosphamide monthly for 6 months and then every 3 months. Eight children were treated because of corticosteroid-unresponsive active lupus nephritis, with a fall in their creatinine clearance to less than 100 ml/min/1.75 m2, and eight children were treated because of corticosteroid-dependent nephrotic syndrome or active lupus nephritis with unacceptable corticosteroid-induced side effects. Cyclophosphamide treatment was associated with significant improvement at 1 year in mean levels of hemoglobin (11.3 +/- 0.5 to 13.1 +/- 0.3 gm/dl), C3 (52 +/- 5.9 to 108 +/- 13.7 mg/dl), and C4 (7.6 +/- 0.9 to 15.9 +/- 2.2 mg/dl) (all p less than 0.005), despite a significant reduction in mean prednisone dosage (31 +/- 5 to 14 +/- 2 mg/day; p less than 0.005). There was a decrease in 24-hour urine protein excretion from 3121 +/- 913 to 1016 +/- 364 mg/24 hours (p less than 0.05). For children whose initial creatinine clearance was less than 100 ml/min/1.75 m2, creatinine clearance also improved significantly (57.5 +/- 11 to 121 +/- 24.5 ml/min/1.75 m2; p less than 0.05). The long-term safety of intravenous cyclophosphamide therapy and its long-term efficacy in comparison with prednisone alone remain to be established. In the interim, intravenous cyclophosphamide therapy should be reserved for children with severe, unacceptable corticosteroid side effects or with corticosteroid-resistant and potentially life-threatening disease.

Adolescent↗

Cyclophosphamide attenuates the degenerative changes induced by CSF from patients with amyotrophic lateral sclerosis in the neonatal rat spinal cord.

Our earlier studies have shown that cerebrospinal fluid (CSF) of patients with amyotrophic lateral sclerosis (ALS), when intrathecally injected into the neonatal rats, produces an aberrant phosphorylation of neurofilaments (NF) in the ventral horn neurons and reactive astrogliosis in the spinal cord. We wanted to investigate the effect of cyclophosphamide in the spinal cords of neonatal rats exposed to ALS-CSF. A single dose (5 microg in 5 microl saline) of cyclophosphamide was injected, 24 h after the administration of CSF samples from ALS and non-ALS neurological patients into the spinal subarachnoid space of 3-day-old rat pups. Rats were sacrificed after a period of 24 h, and stained with antibodies against the phosphorylated NF (SMI-31 antibody) and glial fibrillary acidic protein (GFAP). Cyclophosphamide treatment resulted in a 50% decrease in the number of SMI-31 stained neuronal soma in ventral horns of spinal cords of ALS-CSF exposed rats. This was accompanied by a decrease in the number of GFAP immunoreactive astrocytes. Furthermore, lactate dehydrogenase (LDH) activity was also decreased significantly, following cyclophosphamide treatment. These results suggest that cyclophosphamide could exert a neuroprotective effect against the neurotoxic action of factor(s) present in the ALS-CSF.

Amyotrophic Lateral Sclerosis↗

Comparison of the uroprotective efficacy of mesna and HBO treatments in cyclophosphamide-induced hemorrhagic cystitis.

The aim of this research was to compare the protective effects of mesna, hyperbaric oxygenation (HBO), and their combination in cyclophosphamide-induced hemorrhagic cystitis in guinea pigs. Following one dose of i.p. 21.5 mg./kg. mesna administration 20 minutes before i.p. 68.1 mg./kg. cyclophosphamide, 3 additional doses of mesna were given every three hours. A total of 8 HBO exposures, 5 of which were applied prophylactically before cyclophosphamide, were performed at 2.8 ATA for 90 minutes 2 times a day. Although mesna or HBO provided significant protection for cyclophosphamide-cystitis in animal bladders, there was also significant damage compared with controls. The combination of mesna and HBO, which act through independent mechanisms, resulted in complete protection, since mean histological scores and hematuria levels in this group were not different from controls (p >0.05). Therefore, this combination may be a useful tool in the prophylaxis and treatment of cyclophosphamide-induced hemorrhagic cystitis.

Animals↗

Squamous cell carcinoma of the bladder associated with cyclophosphamide therapy for Wegener's granulomatosis: a report of 2 cases.

Cyclophosphamide has been used to treat a variety of malignant and nonmalignant diseases. The association of this agent with the development of urothelial tumors has been well documented. Although most bladder cancers associated with prior cyclophosphamide therapy are transitional cell carcinoma, to our knowledge there have been 6 reports of cyclophosphamide-induced squamous cell carcinoma of the bladder. We report 2 additional cases of squamous cell carcinoma of the bladder that occurred in patients after cyclophosphamide treatment for Wegener's granulomatosis. Any patient with a history of prolonged cyclophosphamide ingestion needs careful long-term monitoring of the lower urinary tract, since there is at least a 9-fold increase in the incidence of lower urinary tract malignancy in such patients.

Adult↗

Prevention of cyclophosphamide cystitis with 2-mercaptoethane sodium sulfonate: a histologic study.

The ability of 2-mercaptoethane sodium sulfonate to prevent histologic damage to the bladder from cyclophosphamide was studied. Male rats receiving 2-mercaptoethane sodium sulfonate in conjunction with cyclophosphamide had a statistically significant decrease in ulceration, inflammation and edema of the bladder compared to those treated with cyclophosphamide alone. Most bladders of animals given prophylactic 2-mercaptoethane sodium sulfonate with a dose of cyclophosphamide were histologically indistinguishable from controls receiving neither drug. The relevance of these findings to the short and long-term effects of cyclophosphamide on the urothelium is discussed.

Animals↗

Adjuvant vinblastine, actinomycin D, bleomycin, cyclophosphamide and cis-platinum chemotherapy regimen with and without maintenance in patients with resected stage IIB testis cancer.

A total of 42 patients with stage IIB nonseminomatous germ cell tumors of the testis after orchiectomy and retroperitoneal lymph node dissection received adjuvant chemotherapy with the modified vinblastine, actinomycin D, bleomycin, cyclophosphamide and cis-platinum regimen. Of the patients 29 had N2B and 13 had N3 nodal categories. Adjuvant vinblastine, actinomycin D, bleomycin, cyclophosphamide and cis-platinum chemotherapy was given with maintenance in the first 24 patients and without maintenance (2 months of chemotherapy) in the subsequent 18. Chemotherapy with maintenance was given for 1 year and began with 2 inductions 3 to 4 weeks apart: 600 mg./m.2 intravenous cyclophosphamide, 30 mg. intravenous bleomycin, 1 mg./m.2 intravenous actinomycin D and 4 mg./m.2 intravenous vinblastine on day 1, 20 mg./m.2 bleomycin daily by continuous 24-hour induction on days 1 to 3 and 120 mg./m.2 intravenous cis-platinum with mannitol-induced diuresis on day 4. Maintenance with 6 mg./m.2 intravenous vinblastine and 1 mg./m.2 intravenous actinomycin D every 3 weeks was initiated 3 weeks after the second induction for the remainder of the year. Adjuvant vinblastine, actinomycin D, bleomycin, cyclophosphamide and cis-platinum chemotherapy without maintenance was given for 2 months and used 3 inductions identical to those described previously. Complete remission has been maintained in 41 of 42 patients: all 24 who received maintenance chemotherapy and 17 of 18 who did not. One patient had a relapse with sarcoma and 6 required broad-spectrum antibiotics for fever during myelosuppression. A temporary increase in the serum creatinine of more than 2 mg. per cent occurred in 1 patient. Chronic renal failure or pulmonary fibrosis was not seen. Our results show that vinblastine, actinomycin D, bleomycin, cyclophosphamide and cis-platinum chemotherapy is effective in the prevention of recurrences in patients with resected stage IIB disease, and suggest that adjuvant chemotherapy is equally effective with or without maintenance.

Adolescent↗

Cyclophosphamide, methotrexate and 5-fluorouracil combination chemotherapy versus chloroethyl-cyclohexy-nitrosourea in the treatment of metastatic prostatic cancer.

In a prospective, randomized study the effect of cyclophosphamide, methotrexate and 5-fluorouracil combination chemotherapy was compared to the single agent, chloroethyl-cyclohexy-nitrosourea, in the treatment of hormonally refractive metastatic prostatic carcinoma. All patients could be evaluated and were followed for at least 2 years or until death. Responses were defined by the National Prostatic Cancer Project criteria. Of 20 patients who received cyclophosphamide, methotrexate and 5-fluorouracil 3 (15 per cent) had partial (median duration of 2.5 months), 4 (20 per cent) had stable (median duration of 5 months) and 13 had progression of the disease. Of 20 patients who received chloroethyl-cyclohexy-nitrosourea none had a partial response, 6 (30 per cent) had stability (median duration of 6.2 months) and 13 had progression of the disease. The over-all response rate for patients receiving cyclophosphamide, methotrexate and 5-fluorouracil was 35 per cent (stable plus partial regressions) and it was 30 per cent for those receiving chloroethyl-cyclohexy-nitrosourea (stable only). Subjective improvement was noted in all 7 patients who responded to combination chemotherapy and in 3 of the 6 patients who responded to the single agent. After 2 courses resistant patients were crossed over to the opposite regimen and none had an objective, stable or subjective response. Although the duration of response was short (2 to 6 months) patients with partial regressions or stabilized disease survived longer (p less than 0.05) than patients whose disease progressed (52 versus 24 weeks, respectively). The mean interval from diagnosis to chemotherapy (lead time) was 40 months for patients who responded to chemotherapy compared to 19 months for those with progression, which suggested a slower growing pattern of disease in those who did respond. There was no improvement in cohort survival with either treatment regimen. Over-all response rates to cyclophosphamide, methotrexate and 5-fluorouracil were not superior to reported responses to cyclophosphamide alone, and both treatment regimens appeared to be only marginally effective in the treatment of endocrine-resistant, advanced prostatic cancer.

Aged↗

Return of spermatogenesis after stopping cyclophosphamide therapy.

A follow-up of twenty-six male patients with azoospermia after stopping cyclophosphamide treatment showed a return of spermatogenesis in twelve patients within 15-49 months (mean 31 months). In one patient spermatogenesis returned despite 34 months of treatment with 100 mg. of cyclophosphamide daily. The period of follow-up after stopping cyclophosphamide therapy varied from 5 months to 4 years. After 6 months on cyclophosphamide all patients remained azoospermic while taking the drug. Return of spermatogenesis was not significantly associated with age, duration of cyclophosphamide therapy, total dose, or time of follow-up after stopping treatment; however, the number of patients in the study was small.

Adult↗

Cyclophosphamide induces dose- and time-dependent elevations in spleen norepinephrine levels of BALB/c mice.

Chemotherapeutic drugs may not only kill rapidly dividing cells but may also alter the extracellular environment of surviving cells. We investigated the possibility that cyclophosphamide might alter the noradrenergic environment of the spleen. Male BALB/cByJ mice were administered a single injection of cyclophosphamide (0, 15, 50, or 100 mg/kg). Seventy-two hours after injection animals receiving 50 or 100 but not 15 mg/kg experienced elevated norepinephrine concentrations (pmol/mg) compared to animals given 0 mg/kg. The time course of changes in norepinephrine concentration was investigated 24-216 h after administration of 50 mg/kg cyclophosphamide; norepinephrine took 48 h to elevate, remained elevated for 48-96 h, and returned to vehicle-treated levels by 120 h. Cyclophosphamide in both experiments reduced spleen mass but did not alter total norepinephrine/spleen. These results suggest that low doses of cyclophosphamide can increase the norepinephrine available to influence cell-cell interactions in the spleen.

Animals↗

Synthesis and antitumor properties of activated cyclophosphamide analogues.

A series of 5- and 6-substituted cyclophosphamide analogues has been prepared, and their 31P NMR kinetics of phosphoramide mustard (PDA) release and in vitro and in vivo cytotoxicity have been evaluated. cis-4-Hydroxy-5-methoxycyclophosphamide equilibrated very slowly and to a minor extent with the ring-opened aldophosphamide analogues in aqueous buffer; release of PDA was observed to a minor extent and only at high (1 M) buffer concentrations. This analogue was essentially inactive in vitro against L1210 and P388 leukemia cells. 6-Phenylcyclophosphamide and its 4-hydroperoxy derivative were potent inhibitors of blood acetylcholinesterase and were lethal at therapeutic doses in mice. In contrast, 4-hydroperoxy-6-(4-pyridyl)cyclophosphamide did not inhibit acetylcholinesterase and showed significant antitumor activity in vitro and in vivo against both wild-type and cyclophosphamide-resistant L1210 leukemia. The 4-hydroperoxy-6-arylcyclophosphamides were generally active in vitro against both wild-type and cyclophosphamide-resistant L1210 and P388 cells, and several analogues showed significant activity in vivo. Surprisingly, there was no correlation between antitumor activity in vitro and the rate of PDA release in aqueous buffer. Several compounds that showed essentially no release of PDA in aqueous buffer over several hours were highly cytotoxic to leukemia cells following a 1-h exposure in vitro. These results show that activated cyclophosphamide analogues substituted at the 6-position are not cross-resistant in these leukemia cell lines, and that a specific intracellular activation mechanism may be catalyzing PDA release in these analogues.

Acetylcholinesterase↗

Identification of cyclophosphamide-DNA adducts in rat embryos exposed in vitro to 4-hydroperoxycyclophosphamide.

Cyclophosphamide and other bifunctional alkylating agents are potent animal teratogens inducing a variety of malformations. Although cyclophosphamide-induced DNA damage is implicated as a primary mechanism underlying the teratogenesis initiated by cyclophosphamide, additional insights into the complex nature of the teratogenic process have been hampered by the inability to analyze the primary teratogenic lesions, i.e., cyclophosphamide-DNA adducts. Using tandem mass spectrometry, we show that the monofunctional adduct N-(2-chloroethyl)-N-[2-(7-guaninyl)ethyl]amine (NOR-G) and bifunctional adduct N,N-bis[2-(7-guaninyl)ethyl]amine (G-NOR-G) can be detected in the DNA of organogenesis-stage rat embryos after an in vitro exposure to an embryotoxic concentration of activated cyclophosphamide, i.e., 4-hydroperoxycyclophosphamide.

Animals↗

Phase I study of liposomal doxorubicin (Doxil) and cyclophosphamide in solid tumors.

INTRODUCTION: The purpose of this study was to determine the recommended phase II dose (RPTD) of the combination of cyclophosphamide and liposomal doxorubicin (Doxil). PATIENTS AND METHODS: Eligibility criteria included: a diagnosis of non-hematologic cancer with no conventional effective therapy, normal renal, liver and bone marrow function, and ECOG performance status of 0-2. Both drugs were administered intravenously on day 1 of a 21-day cycle. The following doses (mg/m2) of Doxil and cyclophosphamide were tested: 30/500, 40/600, and 48/600. RESULTS: Thirty-seven patients with a median age of 62 years (male:female 21:16) received 119 cycles of Doxil and cyclophosphamide. Hand-foot syndrome and mucositis were the dose limiting toxicities for this combination. Other major toxicities included neutropenia. The side effects to the combination were cumulative. The RPTD of Doxil and cyclophosphamide was 48 mg/m2 and 600 mg/m2, respectively. Three patients with adenocarcinoma of the stomach, fibrosarcoma of the stomach and renal cell carcinoma showed objective antitumor responses. CONCLUSION: The toxicity profile of the combination of Doxil/cyclophosphamide differs significantly from that of non-liposomal doxorubicin plus cyclophosphamide. Major toxicities of the combination include the hand-foot syndrome, stomatitis and neutropenia.

Adult↗

Protective effects of D-Trp6-luteinising hormone-releasing hormone microcapsules against cyclophosphamide-induced gonadotoxicity in female rats.

The possible protective effect of an agonist of luteinising hormone-releasing hormone (LH-RH) against the ovarian damage caused by cyclophosphamide was investigated in rats. D-Trp6-LH-RH microcapsules were injected once a month for 3 months, in a dose calculated to release 25 micrograms day-1. Control animals received the injection vehicle. Sixty days after the first injection of microcapsules, cyclophosphamide was given at a loading dose of 50 mg kg-1 followed by 5 mg kg-1 day-1 for 30 days, while the treatment with D-Trp6-LH-RH was continued. When the ovaries were examined 3 months and 5 months after discontinuation of treatment, a significant reduction in the total number of follicles (P less than 0.01) was found in non-pretreated animals given cyclophosphamide. This reduction affected mainly follicles larger than 100 microns. An irreversible disintegration and destruction of granulosa cells was also observed in this group. In animals pretreated with D-Trp6-LH-RH, administration of cyclophosphamide caused no reduction in the number and diameter of follicles. Thus, the treatment with D-Trp6-LH-RH microcapsules before and during chemotherapy prevented the ovarian injury inflicted by cyclophosphamide. The suppression of gonadal function by LH-RH analogues could be possibly utilised for the protection of the ovaries against damage caused by cytotoxic drugs.

Animals↗

Clearance and recovery calculations in hemodialysis: application to plasma, red blood cells, and dialysate measurements for cyclophosphamide.

The hemodialyzability of cyclophosphamide was investigated in four patients on long-term hemodialysis. Cyclophosphamide 100 mg was given intravenously over 10 min before hemodialysis. Blood and dialysate samples were collected periodically during the 4 hr dialysis and measured by gas-liquid chromatography (GLC) for cyclophosphamide. Dialysis clearance calculated by arterial-venous difference and actual drug recovery in dialysate averaged 104 ml/min, which is in the range of the metabolic clearance of 95 ml/min for the drug. The extraction efficiency of the hollow-fiber dialyzers averaged 40% for plasma and red blood cell (RBC) samples. A mean of 37% of the administered dose of cyclophosphamide was removed during hemodialysis. The half-life (t 1/2) of the beta phase was 3.3 hr in our patients during hemodialysis, a 49% reduction of the 6.5 hr to t 1/2 reported in uremic patients. Because of the reduction in elimination t 1/2, larger dialysis clearance than metabolic clearance, high extraction efficiency, and significant drug removal during dialysis, we conclude that cyclophosphamide is dialyzable.

Adult↗